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United States
Department of
Agriculture

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Forest Service

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Intermountain
Forest and Range
Experiment Station
Ogden, UT 84401

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Research Note
INT-333

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July 1983

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<::logo: United States Department of Agriculture Forest Service
FOREST SERVICE
UAS
DEPARTMENT OF AGRICULTURE
A brown shield-shaped logo with a stylized tree in the center and text around it.::>

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Forest Service
Intermountain
Forest and Range
Experiment Station
Ogden, UT 84401

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Research Note
INT-333

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July 1983

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<::logo: USDA Forest Service
FOREST SERVICE
UAS
DEPARTMENT OF AGRICULTURE
A shield logo with a stylized tree in the center and text around the perimeter.::>

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Readable Text: USDA Forest Service
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186153
Harvesting
Strategies for
Management of
Mountain Pine
Beetle Infestations
USA(-
in Lodgepole Pine:

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Preliminary Evaluation, East Long Creek
Demonstration Area, Shoshone National
Forest, Wyoming

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## ABSTRACT

Diameter-limit and leave-tree cuts were tested as ways to reduce or minimize lodgepole pine losses to the mountain pine beetle. In the first year after treatment, loss reductions were proportional to the intensity of cut. According to the Rate of Loss Model, the 100-leave-tree cut was the best deterrent of recurring infestation, measured as amount of losses and length of time. The 100-leave-tree cut also should provide the best regeneration and has the added benefit of reducing dwarf mistletoe infection.

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KEYWORDS: mountain pine beetle, Dendroctonus
ponderosae, lodgepole pine, Pinus contor-
ta var. latifolia, harvest strategies

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'Principal Entomologist, Population Dynamics of the Mountain Pine
Beetle Research Work Unit, Intermountain Forest and Range Experi-
ment Station, Ogden, Utah.

CANUSA Entomologist, Forest Pest Management, Boise Zone Office,
Intermountain Region, USDA Forest Service, Boise, Idaho.

Entomologist, Forest Pest Management, Rocky Mountain Region,
USDA Forest Service, Lakewood, Colo.

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Walter E. Cole,¹ Donn B. Cahill,²
and Gene D. Lessard³

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East Long Creek in the Shoshone National Forest is one of a series of demonstration area projects that used management alternatives derived from research (Cole and Cahill 1976) and small-scale tests (Cahill 1978; McGregor and Cole, in press) in an attempt to reduce or minimize lodgepole pine (_Pinus contorta_ var. _latifolia_ Engelm.) losses to the mountain pine beetle (_Dendroctonus ponderosae_ Hopkins).

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The objective of this initial large-scale application of management alternatives was to prevent undue losses of lodgepole pine by changing or reducing the food supply of the mountain pine beetle, and also to manipulate the stand to grow at or near optimum site capacity with continued prevention of large losses to the beetle.

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Some constraints on the project were to protect or enhance key resource values, remove merchantable material through a commercial timber sale, develop permanent access roads for general land use and management, improve forest cover growing conditions through disease control and stocking to attain timber production potentials on regulated lands, and develop a cost-benefit analysis for each strategy. This report is limited to the reaction of the mountain pine beetle and tree growth response the first year after cutting.

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Future efforts to manage stands to prevent losses to
the beetle must be made before the beetle epidemic
cycle. East Long Creek Demonstration Area provided
this opportunity.

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1

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40 TSR 21

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## STUDY AREA

The East Long Creek Demonstration Area lies between 7,600 and 8,800 ft (2 317 and 2 683 m) elevation, which is the lower half of the forested zone in the Wind River Drainage. The climate is cool and dry; moisture availability is the most limiting growth factor during the season.

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Soils are derived from sedimentary formations and
glacial moraines derived from the Wiggins formation.
The clay content of the soils and seasonal distribution
of precipitation make natural regeneration difficult on
southerly and westerly aspects and flats, especially
below 8,500 ft (2 591 m).

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Cover types change with aspect and elevation; coni-
ferous trees grow only on favorable aspects below
7,600 ft (2 317 m), and seldom occur on more adverse
aspects at higher elevations.

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Reestablishment of conifers following fire is extreme-
ly slow on adverse aspects. Recovery from any drastic
disturbance on this area can be expected to be slow
unless seedlings are planted as the regeneration
method. On some of the adverse aspects, the scattered
limber pine (P. flexilis James) and lodgepole pine trees
appear to be pioneers of a first generation forest.

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The lower part of the coniferous cover could be
classed as *Abies lasiocarpa-Arnica cordifolia* habitat
type, milk vetch phase. This habitat type on the Wind
River District has almost no potential to be dominated
by *Abies lasiocarpa* because the development of the
climax community requires more time than is permitted
by the natural fire cycle.

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Inland Douglas-fir (*Pseudotsuga menziesii* [Mirb.] Franco) predominates in an alternative seral community on this habitat type where soils are basic. At this elevation, the inland Douglas-fir/mountain snowberry habitat is present on soils derived from limestone formations.

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Aspen (_Populus tremuloides_ Michx.) is a short-lived
seral community replaced by limber pine or lodgepole
pine in the first generation. Retention of aspen as a
cover type requires a reduction in competition for
moisture and cutting the live aspen to break the auxin
flow so sprouting can occur.

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In most of the stands in this zone, the lodgepole pine component of the stand is 150 to 200 years old and dying out rapidly. Younger stands are still dominated by lodgepole pine and have a manageable pole and small-size sawtimber component. This zone of the coniferous forest is an _Abies lasiocarpa-Vaccinium scoparium_ habitat type.

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Regeneration following disturbance is more rapid in
this habitat and will tend to be mixed aged, with some
tolerant species seedlings and saplings present in the
first 50 years of stand development. The number of
spruce and fir trees present during early stand develop-
ment probably depends on seed source, once the
lodgepole pine component accomplishes the necessary
site modification. In some cases, competition by density
stocked lodgepole pine may reduce spruce and fir
regeneration.

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Site index values for lodgepole pine are 30 to 35 ft (9.1
to 10.7 m) in 50 years in the _Abies lasiocarpa-Arnica_
cordifolia-milk vetch phase habitat, increasing to 45 to 50

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ft (13.7 to 15.2 m) in 50 years in the Abies lasiocarpa-
Vaccinium scoparium habitats.

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Throughout this area of the forest, basal area in
natural stands follows the site index values, with basal
areas as low as 65 ft/acre (14.4 m/ha) on the lower site
index areas and increasing to 140 ft/acre (31.1 m/ha) on
the most productive sites. Total live conifer trees over 2
inches (5.08 cm diameter at breast height) (d.b.h.) on the
1,789 acres (724 ha) cruised rarely exceeded 400 per acre
(988 per ha).

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The demonstration area contained approximately 1,898
acres (768 ha). Before harvesting, the area contained
3,777 board feet (bd.ft.) of gross green volume per acre
and 1,664 bd.ft. of dead standing volume per acre. Net
volumes were 3,397 bd.ft. of green volume per acre and
1,332 bd.ft. of dead volume per acre, or 4,729 bd.ft. total
net volume per acre.

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## STAND PRESCRIPTIONS
Three general prescriptions were applied: (1) cutting
levels based on diameters, (2) leave-tree cuts, and (3)
clearcuts. In each case, the primary purpose was to
remove the food supply from the beetle; the larger
diameter trees generally contain the thicker phloem.
However, other criteria were considered in each case.
Each prescription required retention of adequate forest
cover to promote natural regeneration, wildlife needs,
and visual qualities, and was designed to fit the condi-
tion of the stand and its ecology to promote future
development under natural conditions.
The prescriptions and their applications were:

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1. Diameter cuts.
a. Cut all lodgepole pine 7 inches (17.78 cm) d.b.h. and larger and salvage dead trees 8 inches (20.32 cm) d.b.h. and larger. This prescription was applied to three different stand conditions:
   (1) Late transitional stands that had converted to the spruce-fir type. The lodgepole pine component was decadent or dying rapidly. In this case, adequate lodgepole pine growing stock was to be retained. Lodgepole pine regeneration could be expected to fill in openings created by logging.
   (2) Two-aged lodgepole pine stands that contained very few tolerant trees. The understory was primarily lodgepole pine, and the residual stand of seedlings and saplings would be understocked. Trees less than 7 inches (17.78 cm) d.b.h. down to the seedling-sapling understory were not suitable growing stock because of disease—dwarf mistletoe (Arceuthobium americanum) and comandra blister rust (Cronartium comandrae). It was necessary on these sites to retain the undesirable pole timber to protect the site until natural regeneration occurs to bring the seedling-sapling stand up to 300 per acre (121 per ha). Timely removal of mistletoe-infected trees will be required.

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2

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In some cases where stocking was inade-quate and residual trees were sparse—less than 100 per acre (40 per ha)—planting would be necessary. Lodgepole pine or in-land Douglas-fir containerized stock should be planted at 200 to 400 trees per acre (81 to 162 per ha) depending on the number and size of residual growing stock trees.
(3) Heavily stocked lodgepole pine pole timber stands where the age and disease condi-tions made regeneration of the stand desirable, and enough trees less than 7 inches (17.78 cm) d.b.h. were present to fur-nish adequate cover to meet forest cover objectives, including site protection. Ade-quate natural regeneration was expected in these stands.
b. Cut all lodgepole pine trees 10 inches (25.40 cm) d.b.h. and larger and salvage all dead or at-tacked trees 8 inches (20.32 cm) d.b.h. and larger. This prescription was applied to isolated stands in the unthinned component where forest cover was not maintained for production of wood products, but primarily where lodge-pole pine was the principal component and cover objectives required retaining forest cover to protect other values.
Site potential was low in these stands, eco-systems were exceptionally fragile, and values other than timber were paramount. The prescrip-tion was applied to stands that were sparsely stocked and on adverse aspects. These stands were suspected to be first-generation coni-ferous forests, hence were fragile ecotones, and disruption could reverse ecologic trends. Subse-quent treatments on regulated lands will be overstory removal in one or two steps, depend-ing on disease conditions, regeneration suc-cess, and visual quality needs.
c. Cut all lodgepole pine trees 12 inches (30.48 cm) d.b.h. and larger and salvage all dead or at-tacked trees 8 inches (20.32 cm) and larger. This prescription was applied to stands where lodge-pole pine was the principal component, site potential was extremely low, stands were sparsely stocked, aspects were adverse, and stands contained trees exceeding this diameter limit.

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2. Leave-tree cuts.
The leave-tree prescription was applied to two stands and required leaving 100 trees per acre (40 trees per ha), while removing the balance of the lodgepole pine component of the stand. All selected leave trees were the largest, most desirable lodgepole pine, growing stock, and sufficient desirable growing stock trees of other

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species were retained to result in an average stock-
ing of 100 trees per acre (40 per ha) over 7 inches
(17.78 cm) d.b.h.

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Because of small islands of old lodgepole pine that escaped the fire that regenerated these two stands, and because these stands contained mistletoe infection centers, small clearcuts also were required. Natural regeneration could be expected in 5 years if these clearcuts did not exceed 5 acres (2 ha).

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3. Clearcuts.
Six areas, averaging 14 acres (5.7 ha) each, were clearcut. These were in fire-regenerated pole timber stands. There were small islands of old-aged, larger diameter lodgepole pine trees that were diseased and decadent. Some of these islands had lodge-pole pine and/or spruce-fir understories. Because of the heavy fuel accumulations in the pockets of old growth, bulldozer piling and slash burning were desirable to meet fuel management objectives.

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# METHODS

A total of 37 cutting units and one check block unit
were laid out in the demonstration area:

  10 units in the 7-inch (17.78-cm) cutting block
  17 units in the 10-inch (25.40-cm) cutting
  block
  2 units in the 12-inch (30.48-cm) cutting
  block
  2 units in the 100-leave-tree cutting block
  6 units in the clearcut block
  1 check block unit

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Harvesting began in January 1979 and was completed
in February 1981, well before the 1981 beetle flight. A
summary of the pretreatment stand structure and pro-
posed cuts is shown in table 1.

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A survey of the demonstration area was made in the
spring of 1982 to determine tree loss to the mountain
pine beetle. A 20-percent survey was conducted in 22 of
the 38 units:

  6 of 10 units in the 7-inch (17.78-cm) cutting
  block
  11 of 27 units in the 10-inch (25.40-cm) cutting
  block
  2 of 2 units in the 12-inch (30.48-cm) cutting
  block
  2 of 2 units in the 100-leave-tree block
  1 check block unit

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The 20-percent survey used a 1-chain-wide strip (20 m)
every 5 chains (100 m) and recorded beetle-killed trees in
1979, 1980, and 1981, other causes of death, and
diameter.

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Tree growth data were collected during the loss surveys. Basal area and radial growth measurements were taken at 5-chain (100 m) intervals along the cruise strip, using a 10 BAF gage. Unfortunately, similar data were not taken before the harvest for comparison.

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3

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Table 1.—Summary of stand data and proposed cuts for East Long Creek Demonstration Area

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<table id="3-1">
<tr><td id="3-2"></td><td id="3-3" colspan="5">Treatment</td></tr>
<tr><td id="3-4">Stand structure and volumes</td><td id="3-5">7-inch</td><td id="3-6">10-inch</td><td id="3-7">12-inch</td><td id="3-8">100-leave-tree</td><td id="3-9">Clearcut</td></tr>
<tr><td id="3-a" colspan="6">Acres</td></tr>
<tr><td id="3-b">Total</td><td id="3-c">1,132.0</td><td id="3-d">581.0</td><td id="3-e">60.0</td><td id="3-f">39.0</td><td id="3-g">86.0</td></tr>
<tr><td id="3-h">Mean</td><td id="3-i">113.2</td><td id="3-j">34.2</td><td id="3-k">30.0</td><td id="3-l">19.5</td><td id="3-m">14.3</td></tr>
<tr><td id="3-n">Live lodgepole/acre</td><td id="3-o"></td><td id="3-p"></td><td id="3-q"></td><td id="3-r"></td><td id="3-s"></td></tr>
<tr><td id="3-t">Total</td><td id="3-u">1,633.0</td><td id="3-v">3,668.0</td><td id="3-w">686.0</td><td id="3-x">428.0</td><td id="3-y">1,475.0</td></tr>
<tr><td id="3-z">Mean</td><td id="3-A">163.3</td><td id="3-B">215.7</td><td id="3-C">343.0</td><td id="3-D">214.0</td><td id="3-E">245.8</td></tr>
<tr><td id="3-F">&lt; 7-inch</td><td id="3-G">864.0</td><td id="3-H">1.925.0</td><td id="3-I">458.0</td><td id="3-J">242.0</td><td id="3-K">769.0</td></tr>
<tr><td id="3-L">Mean</td><td id="3-M">86.4</td><td id="3-N">113.2</td><td id="3-O">229.0</td><td id="3-P">121.0</td><td id="3-Q">128.2</td></tr>
<tr><td id="3-R">&gt; 7-inch</td><td id="3-S">769.0</td><td id="3-T">1,743.0</td><td id="3-U">228.0</td><td id="3-V">186.0</td><td id="3-W">706.0</td></tr>
<tr><td id="3-X">Mean</td><td id="3-Y">76.9</td><td id="3-Z">102.5</td><td id="3-10">114.0</td><td id="3-11">93.0</td><td id="3-12">117.7</td></tr>
<tr><td id="3-13">&gt; 10-inch</td><td id="3-14">352.0</td><td id="3-15">656.0</td><td id="3-16">88.0</td><td id="3-17">62.0</td><td id="3-18">271.0</td></tr>
<tr><td id="3-19">Mean</td><td id="3-1a">35.2</td><td id="3-1b">38.6</td><td id="3-1c">44.0</td><td id="3-1d">31.0</td><td id="3-1e">45.2</td></tr>
<tr><td id="3-1f">&gt;12-inch</td><td id="3-1g">166.0</td><td id="3-1h">282.0</td><td id="3-1i">14.0</td><td id="3-1j">24.0</td><td id="3-1k">156.0</td></tr>
<tr><td id="3-1l">Mean</td><td id="3-1m">16.6</td><td id="3-1n">16.6</td><td id="3-1o">7.0</td><td id="3-1p">12.0</td><td id="3-1q">26.0</td></tr>
<tr><td id="3-1r">Live species/acre</td><td id="3-1s"></td><td id="3-1t"></td><td id="3-1u"></td><td id="3-1v"></td><td id="3-1w"></td></tr>
<tr><td id="3-1x">Subalpine fir and other</td><td id="3-1y">768.0</td><td id="3-1z">699.0</td><td id="3-1A">66.0</td><td id="3-1B">30.0</td><td id="3-1C">1,006.0</td></tr>
<tr><td id="3-1D">Mean</td><td id="3-1E">76.8</td><td id="3-1F">41.1</td><td id="3-1G">33.0</td><td id="3-1H">15.0</td><td id="3-1I">167.7</td></tr>
<tr><td id="3-1J">Engelmann spruce</td><td id="3-1K">194.0</td><td id="3-1L">47.2</td><td id="3-1M">0</td><td id="3-1N">2.4</td><td id="3-1O">248.0</td></tr>
<tr><td id="3-1P">Mean</td><td id="3-1Q">19.4</td><td id="3-1R">2.8</td><td id="3-1S">0</td><td id="3-1T">1.2</td><td id="3-1U">41.3</td></tr>
<tr><td id="3-1V">Aspen</td><td id="3-1W">1,683.0</td><td id="3-1X">232.0</td><td id="3-1Y">0</td><td id="3-1Z">64.0</td><td id="3-20">34.0</td></tr>
<tr><td id="3-21">Mean</td><td id="3-22">168.3</td><td id="3-23">13.6</td><td id="3-24">0</td><td id="3-25">32.0</td><td id="3-26">5.7</td></tr>
<tr><td id="3-27">Proposed cut</td><td id="3-28"></td><td id="3-29"></td><td id="3-2a"></td><td id="3-2b"></td><td id="3-2c"></td></tr>
<tr><td id="3-2d">T/A</td><td id="3-2e">769.0</td><td id="3-2f">656.0</td><td id="3-2g">14.0</td><td id="3-2h">228.0</td><td id="3-2i">1,475.0</td></tr>
<tr><td id="3-2j">Mean</td><td id="3-2k">76.9</td><td id="3-2l">38.6</td><td id="3-2m">7.0</td><td id="3-2n">114.0</td><td id="3-2o">245.8</td></tr>
<tr><td id="3-2p">Gross volume/acre</td><td id="3-2q"></td><td id="3-2r"></td><td id="3-2s"></td><td id="3-2t"></td><td id="3-2u"></td></tr>
<tr><td id="3-2v">Live cut</td><td id="3-2w">4,468.0</td><td id="3-2x">3,518.0</td><td id="3-2y">3,683.0</td><td id="3-2z">3,205.0</td><td id="3-2A">4,093.0</td></tr>
<tr><td id="3-2B">Mean</td><td id="3-2C">4,468.0</td><td id="3-2D">3,518.0</td><td id="3-2E">3.683.0</td><td id="3-2F">3,205.0</td><td id="3-2G">4,093.0</td></tr>
<tr><td id="3-2H">Salvage cut</td><td id="3-2I">2,290.0</td><td id="3-2J">1,480.0</td><td id="3-2K">1,583.0</td><td id="3-2L">1,231.0</td><td id="3-2M">2,337.0</td></tr>
<tr><td id="3-2N">Mean</td><td id="3-2O">2,290.0</td><td id="3-2P">1,480.0</td><td id="3-2Q">1,583.0</td><td id="3-2R">1,231.0</td><td id="3-2S">2,337.0</td></tr>
<tr><td id="3-2T">Gross volume (M)</td><td id="3-2U"></td><td id="3-2V"></td><td id="3-2W"></td><td id="3-2X"></td><td id="3-2Y"></td></tr>
<tr><td id="3-2Z">Green</td><td id="3-30">5,058.0</td><td id="3-31">2,044.0</td><td id="3-32">221.0</td><td id="3-33">125.0</td><td id="3-34">352.0</td></tr>
<tr><td id="3-35">Mean</td><td id="3-36">505.8</td><td id="3-37">120.2</td><td id="3-38">110.5</td><td id="3-39">62.5</td><td id="3-3a">58.7</td></tr>
<tr><td id="3-3b" colspan="2">Dead (≥8&quot;) 2,592.0</td><td id="3-3c">860.0</td><td id="3-3d">95.0</td><td id="3-3e">48.0</td><td id="3-3f">201.0</td></tr>
<tr><td id="3-3g">Mean</td><td id="3-3h">259.2</td><td id="3-3i">50.6</td><td id="3-3j">47.5</td><td id="3-3k">24.0</td><td id="3-3l">33.5</td></tr>
<tr><td id="3-3m" colspan="2">Uncut per acre</td><td id="3-3n"></td><td id="3-3o"></td><td id="3-3p"></td><td id="3-3q"></td></tr>
<tr><td id="3-3r">Lodgepole pine (≥2&quot;)</td><td id="3-3s">891.0</td><td id="3-3t">2,916.0</td><td id="3-3u">558.0</td><td id="3-3v">39.0</td><td id="3-3w">877.0</td></tr>
<tr><td id="3-3x">Mean</td><td id="3-3y">89.1</td><td id="3-3z">171.5</td><td id="3-3A">279.0</td><td id="3-3B">19.5</td><td id="3-3C">146.2</td></tr>
<tr><td id="3-3D">Total trees (≥2&quot;)</td><td id="3-3E">1,602.0</td><td id="3-3F">3,661.0</td><td id="3-3G">624.0</td><td id="3-3H">43.0</td><td id="3-3I">2,132.0</td></tr>
<tr><td id="3-3J">Mean</td><td id="3-3K">160.2</td><td id="3-3L">215.4</td><td id="3-3M">312.0</td><td id="3-3N">21.5</td><td id="3-3O">355.3</td></tr>
<tr><td id="3-3P" colspan="2">Average gross volume</td><td id="3-3Q"></td><td id="3-3R"></td><td id="3-3S"></td><td id="3-3T"></td></tr>
<tr><td id="3-3U" colspan="2">per acre (M)</td><td id="3-3V"></td><td id="3-3W"></td><td id="3-3X"></td><td id="3-3Y"></td></tr>
<tr><td id="3-3Z">Green</td><td id="3-40">4.468</td><td id="3-41">3.518</td><td id="3-42">3.683</td><td id="3-43">3.205</td><td id="3-44">4.093</td></tr>
<tr><td id="3-45">Dead</td><td id="3-46">2.290</td><td id="3-47">1.480</td><td id="3-48">1.583</td><td id="3-49">1.231</td><td id="3-4a">2.337</td></tr>
<tr><td id="3-4b" colspan="2">Average net volume</td><td id="3-4c"></td><td id="3-4d"></td><td id="3-4e"></td><td id="3-4f"></td></tr>
<tr><td id="3-4g">per acre (M)</td><td id="3-4h"></td><td id="3-4i"></td><td id="3-4j"></td><td id="3-4k"></td><td id="3-4l"></td></tr>
<tr><td id="3-4m">Green</td><td id="3-4n">4.023</td><td id="3-4o">3.166</td><td id="3-4p">3.315</td><td id="3-4q">2.885</td><td id="3-4r">3.684</td></tr>
<tr><td id="3-4s">Dead</td><td id="3-4t">1.832</td><td id="3-4u">1.184</td><td id="3-4v">1.267</td><td id="3-4w">.985</td><td id="3-4x">1.870</td></tr>
<tr><td id="3-4y">Total adjusted net volume</td><td id="3-4z"></td><td id="3-4A"></td><td id="3-4B"></td><td id="3-4C"></td><td id="3-4D"></td></tr>
<tr><td id="3-4E">Volume per acre</td><td id="3-4F">5.855</td><td id="3-4G">4.350</td><td id="3-4H">4.582</td><td id="3-4I">3.870</td><td id="3-4J">5.554</td></tr>
<tr><td id="3-4K">Net volume</td><td id="3-4L">6.628</td><td id="3-4M">2.528</td><td id="3-4N">.275</td><td id="3-4O">.151</td><td id="3-4P">.478</td></tr>
</table>

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4

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## RESULTS
The stand structure changed proportionally to the intensity of harvest cut used in each block (table 2). Stand average diameter (d.b.h.) changes were:

<a id='9f64d17c-014a-4e3f-9cda-6539136128e5'></a>

<table id="4-1">
<tr><td id="4-2">Treatment</td><td id="4-3" colspan="2">Original
diameter</td><td id="4-4" colspan="2">Diameter
after harvest</td></tr>
<tr><td id="4-5"></td><td id="4-6">Inches</td><td id="4-7">cm</td><td id="4-8">Inches</td><td id="4-9">cm</td></tr>
<tr><td id="4-a">7-inch (17.78-cm) cut</td><td id="4-b">7.8</td><td id="4-c">19.81</td><td id="4-d">7.0</td><td id="4-e">17.78</td></tr>
<tr><td id="4-f">10-inch (25.40-cm) cut</td><td id="4-g">7.7</td><td id="4-h">19.56</td><td id="4-i">7.0</td><td id="4-j">17.78</td></tr>
<tr><td id="4-k">12-inch (30.48-cm) cut</td><td id="4-l">7.4</td><td id="4-m">18.80</td><td id="4-n">7.3</td><td id="4-o">18.54</td></tr>
<tr><td id="4-p">100-leave-tree cut</td><td id="4-q">7.5</td><td id="4-r">19.05</td><td id="4-s">8.0</td><td id="4-t">20.32</td></tr>
</table>

<a id='0b1d5933-907b-4a58-b6cb-b085d098cab4'></a>

Considering only the kill by the mountain pine beetle,
the trend for the 3 years (2 years before the cut was com-
pleted and 1 year after completed cuts) is rather
dramatic (table 3 and fig. 1). In all cutting blocks, the
number of trees infested dropped considerably after
harvesting; the check block continued to lose trees to
the beetle at about the same rate.

<a id='49ecd1a8-3b65-4420-9aa9-7d593832bda6'></a>

It is evident that tree loss to secondary insects, such as *Ips*, *Pityophthorus*, *Pityogenes*, and *Pityokteines*, and comandra rust lessened after treatment (table 4). However, this apparent reduction of loss may be an artificial effect of sampling, because the check areas also showed no loss due to these factors in 1981 (the year after cutting was completed).

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Table 2.—Stand structure before and after cutting

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<table id="4-u">
<tr><td id="4-v"></td><td id="4-w" colspan="11">Live lodgepole pine per acre by diameter class</td></tr>
<tr><td id="4-x">Treatment</td><td id="4-y" colspan="5">Before cut</td><td id="4-z" rowspan="2">Trees
cut per
acre</td><td id="4-A" colspan="5">After cut</td></tr>
<tr><td id="4-B"></td><td id="4-C">Total</td><td id="4-D">&lt;7 inches</td><td id="4-E">7-9 inches</td><td id="4-F">10-11 inches</td><td id="4-G">&gt;12 inches</td><td id="4-H">Total</td><td id="4-I">&lt;7 inches</td><td id="4-J">7-9 inches</td><td id="4-K">10-11
inches</td><td id="4-L">&gt;12
inches</td></tr>
<tr><td id="4-M">7-inch cut</td><td id="4-N">163.3</td><td id="4-O">86.4</td><td id="4-P">41.7</td><td id="4-Q">18.6</td><td id="4-R">16.6</td><td id="4-S">76.9</td><td id="4-T">86.4</td><td id="4-U">86.4</td><td id="4-V">0</td><td id="4-W">0</td><td id="4-X">0</td></tr>
<tr><td id="4-Y">10-inch cut</td><td id="4-Z">215.7</td><td id="4-10">113.2</td><td id="4-11">63.9</td><td id="4-12">22.0</td><td id="4-13">16.6</td><td id="4-14">38.6</td><td id="4-15">177.1</td><td id="4-16">113.2</td><td id="4-17">63.9</td><td id="4-18">0</td><td id="4-19">0</td></tr>
<tr><td id="4-1a">12-inch cut</td><td id="4-1b">343.0</td><td id="4-1c">229.0</td><td id="4-1d">70.0</td><td id="4-1e">37.0</td><td id="4-1f">7.0</td><td id="4-1g">7.0</td><td id="4-1h">336.0</td><td id="4-1i">229.0</td><td id="4-1j">70.0</td><td id="4-1k">37.0</td><td id="4-1l">0</td></tr>
<tr><td id="4-1m">100-leave-tree cut</td><td id="4-1n">214.0</td><td id="4-1o">121.0</td><td id="4-1p">62.0</td><td id="4-1q">19.0</td><td id="4-1r">12.0</td><td id="4-1s">114.0</td><td id="4-1t">100.0</td><td id="4-1u">—</td><td id="4-1v">—</td><td id="4-1w">—</td><td id="4-1x">—</td></tr>
<tr><td id="4-1y">Clearcut</td><td id="4-1z">245.8</td><td id="4-1A">128.2</td><td id="4-1B">72.5</td><td id="4-1C">19.2</td><td id="4-1D">26.0</td><td id="4-1E">245.0</td><td id="4-1F">0</td><td id="4-1G">0</td><td id="4-1H">9</td><td id="4-1I">0</td><td id="4-1J">0</td></tr>
<tr><td id="4-1K">Check area</td><td id="4-1L">251.0</td><td id="4-1M">255.0</td><td id="4-1N">196.0</td><td id="4-1O">91.0</td><td id="4-1P">42.0</td><td id="4-1Q">0</td><td id="4-1R">251.0</td><td id="4-1S">55.0</td><td id="4-1T">196.0</td><td id="4-1U">91.0</td><td id="4-1V">42</td></tr>
</table>

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'Data not available on distribution.
²Include only 4- to 6-inch trees.

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Table 3.—Tree mortality due to the mountain pine beetle \n <table id="4-1W">
<tr><td id="4-1X" colspan="5">Number of trees killed per acre</td></tr>
<tr><td id="4-1Y">Treatment</td><td id="4-1Z">1979</td><td id="4-20">1980</td><td id="4-21"></td><td id="4-22">1981</td></tr>
<tr><td id="4-23">7-inch cut</td><td id="4-24">0.72</td><td id="4-25">0.51</td><td id="4-26">ed</td><td id="4-27">0.09</td></tr>
<tr><td id="4-28">10-inch cut</td><td id="4-29">.35</td><td id="4-2a">.66</td><td id="4-2b">et</td><td id="4-2c">.07</td></tr>
<tr><td id="4-2d">12-inch cut</td><td id="4-2e">.19</td><td id="4-2f">5.00</td><td id="4-2g">np</td><td id="4-2h">1.15</td></tr>
<tr><td id="4-2i">100-leave-tree cut</td><td id="4-2j">.20</td><td id="4-2k">.10</td><td id="4-2l">cut con</td><td id="4-2m">0</td></tr>
<tr><td id="4-2n">Check area</td><td id="4-2o">2.53</td><td id="4-2p">5.77</td><td id="4-2q">cut</td><td id="4-2r">4.23</td></tr>
</table>

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5

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<::bar chart
: Y-axis: MORTALITY, (TREES PER ACRE) BY YEAR AND CUT, ranging from 0 to 6.
X-axis: Years 1979, 1980, 1981.

Legend:
- 7 INCH CUT (horizontal lines)
- 10 INCH CUT (diagonal lines)
- 12 INCH CUT (dots)
- 100-LEAVE-TREE CUT (cross-hatch)
- CHECK AREA (solid black)

Data points:
- **1979**
  - 7 INCH CUT: ~0.7 trees per acre
  - 10 INCH CUT: ~0.3 trees per acre
  - 12 INCH CUT: ~0.1 trees per acre
  - 100-LEAVE-TREE CUT: ~0.1 trees per acre
  - CHECK AREA: ~2.5 trees per acre
- **1980**
  - 7 INCH CUT: ~0.5 trees per acre
  - 10 INCH CUT: ~0.6 trees per acre
  - 12 INCH CUT: ~5.0 trees per acre
  - 100-LEAVE-TREE CUT: ~0.1 trees per acre
  - CHECK AREA: ~5.7 trees per acre
- **1981**
  - 7 INCH CUT: ~0.05 trees per acre
  - 10 INCH CUT: ~0.05 trees per acre
  - 12 INCH CUT: ~1.1 trees per acre
  - 100-LEAVE-TREE CUT: ~0.05 trees per acre
  - CHECK AREA: ~4.2 trees per acre

A vertical dashed line labeled "CUT COMPLETED" is placed between the 1980 and 1981 data groups.

Figure 1.—Tree loss due to the mountain beetle within the demonstration areas.::>

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Table 4.—Trees killed per acre by cutting block, year, cause, and diameter
<table id="6-1">
<tr><td id="6-2" rowspan="2">Treat-
ment</td><td id="6-3" rowspan="2">Year
of
kill</td><td id="6-4" rowspan="2">Cause
of
death</td><td id="6-5" colspan="6">Diameter of tree</td><td id="6-6" colspan="6">killed (inches)</td><td id="6-7" rowspan="2">Total
trees
killed</td><td id="6-8" rowspan="2">Trees
killed
per acre</td></tr>
<tr><td id="6-9">6</td><td id="6-a">7</td><td id="6-b">8</td><td id="6-c">9</td><td id="6-d">10</td><td id="6-e">11</td><td id="6-f">12</td><td id="6-g">13</td><td id="6-h">14</td><td id="6-i">15</td><td id="6-j">16</td><td id="6-k">&gt;17</td></tr>
<tr><td id="6-l" rowspan="2">7-inch
cut</td><td id="6-m">1979</td><td id="6-n">MPB¹</td><td id="6-o">2</td><td id="6-p">3</td><td id="6-q">3</td><td id="6-r">3</td><td id="6-s">7</td><td id="6-t">4</td><td id="6-u">1</td><td id="6-v">1</td><td id="6-w"></td><td id="6-x"></td><td id="6-y"></td><td id="6-z"></td><td id="6-A">24</td><td id="6-B">0.72</td></tr>
<tr><td id="6-C"></td><td id="6-D">Pity&#x27;s²</td><td id="6-E">1</td><td id="6-F"></td><td id="6-G">1</td><td id="6-H">1</td><td id="6-I"></td><td id="6-J"></td><td id="6-K"></td><td id="6-L"></td><td id="6-M"></td><td id="6-N"></td><td id="6-O"></td><td id="6-P"></td><td id="6-Q">3</td><td id="6-R">.09</td></tr>
<tr><td id="6-S"></td><td id="6-T"></td><td id="6-U">Total</td><td id="6-V"></td><td id="6-W">3</td><td id="6-X">3</td><td id="6-Y">4</td><td id="6-Z">4</td><td id="6-10">7</td><td id="6-11">4</td><td id="6-12">1</td><td id="6-13">1</td><td id="6-14"></td><td id="6-15"></td><td id="6-16"></td><td id="6-17">27</td><td id="6-18">.81</td></tr>
<tr><td id="6-19"></td><td id="6-1a">1980</td><td id="6-1b">MPB</td><td id="6-1c"></td><td id="6-1d">2</td><td id="6-1e">3</td><td id="6-1f">5</td><td id="6-1g">1</td><td id="6-1h">2</td><td id="6-1i">3</td><td id="6-1j">1</td><td id="6-1k"></td><td id="6-1l"></td><td id="6-1m"></td><td id="6-1n"></td><td id="6-1o">17</td><td id="6-1p">.51</td></tr>
<tr><td id="6-1q"></td><td id="6-1r"></td><td id="6-1s">Pity&#x27;s</td><td id="6-1t"></td><td id="6-1u"></td><td id="6-1v">1</td><td id="6-1w">1</td><td id="6-1x"></td><td id="6-1y"></td><td id="6-1z"></td><td id="6-1A"></td><td id="6-1B"></td><td id="6-1C"></td><td id="6-1D"></td><td id="6-1E"></td><td id="6-1F">2</td><td id="6-1G">.06</td></tr>
<tr><td id="6-1H"></td><td id="6-1I"></td><td id="6-1J">Comandra</td><td id="6-1K">1</td><td id="6-1L"></td><td id="6-1M"></td><td id="6-1N"></td><td id="6-1O"></td><td id="6-1P"></td><td id="6-1Q"></td><td id="6-1R"></td><td id="6-1S"></td><td id="6-1T"></td><td id="6-1U"></td><td id="6-1V"></td><td id="6-1W">1</td><td id="6-1X">.03</td></tr>
<tr><td id="6-1Y"></td><td id="6-1Z"></td><td id="6-20">Total</td><td id="6-21">1</td><td id="6-22">2</td><td id="6-23">4</td><td id="6-24">6</td><td id="6-25">1</td><td id="6-26">2</td><td id="6-27">3</td><td id="6-28">1</td><td id="6-29"></td><td id="6-2a"></td><td id="6-2b"></td><td id="6-2c"></td><td id="6-2d">20</td><td id="6-2e">.60</td></tr>
<tr><td id="6-2f"></td><td id="6-2g">1981</td><td id="6-2h">MPB</td><td id="6-2i"></td><td id="6-2j"></td><td id="6-2k"></td><td id="6-2l"></td><td id="6-2m"></td><td id="6-2n"></td><td id="6-2o"></td><td id="6-2p">1</td><td id="6-2q"></td><td id="6-2r"></td><td id="6-2s">1</td><td id="6-2t">1</td><td id="6-2u">3</td><td id="6-2v">.09</td></tr>
<tr><td id="6-2w"></td><td id="6-2x"></td><td id="6-2y">Total</td><td id="6-2z"></td><td id="6-2A"></td><td id="6-2B"></td><td id="6-2C"></td><td id="6-2D"></td><td id="6-2E"></td><td id="6-2F"></td><td id="6-2G">1</td><td id="6-2H"></td><td id="6-2I"></td><td id="6-2J">1</td><td id="6-2K">1</td><td id="6-2L">3</td><td id="6-2M">.09</td></tr>
<tr><td id="6-2N"></td><td id="6-2O">All years</td><td id="6-2P"></td><td id="6-2Q">4</td><td id="6-2R">5</td><td id="6-2S">8</td><td id="6-2T">10</td><td id="6-2U">8</td><td id="6-2V">6</td><td id="6-2W">4</td><td id="6-2X">3</td><td id="6-2Y"></td><td id="6-2Z"></td><td id="6-30">1</td><td id="6-31">1</td><td id="6-32">50</td><td id="6-33">1.51</td></tr>
<tr><td id="6-34" rowspan="2">10-inch
cut</td><td id="6-35">1979</td><td id="6-36">MPB</td><td id="6-37">1</td><td id="6-38">2</td><td id="6-39">2</td><td id="6-3a">10</td><td id="6-3b">2</td><td id="6-3c">2</td><td id="6-3d"></td><td id="6-3e"></td><td id="6-3f"></td><td id="6-3g"></td><td id="6-3h"></td><td id="6-3i"></td><td id="6-3j">21</td><td id="6-3k">.35</td></tr>
<tr><td id="6-3l"></td><td id="6-3m">Ips spp.</td><td id="6-3n">1</td><td id="6-3o">3</td><td id="6-3p">2</td><td id="6-3q"></td><td id="6-3r"></td><td id="6-3s"></td><td id="6-3t"></td><td id="6-3u"></td><td id="6-3v"></td><td id="6-3w"></td><td id="6-3x"></td><td id="6-3y"></td><td id="6-3z">6</td><td id="6-3A">.10</td></tr>
<tr><td id="6-3B"></td><td id="6-3C"></td><td id="6-3D">Pity&#x27;s</td><td id="6-3E">6</td><td id="6-3F">8</td><td id="6-3G">3</td><td id="6-3H">5</td><td id="6-3I"></td><td id="6-3J"></td><td id="6-3K"></td><td id="6-3L"></td><td id="6-3M"></td><td id="6-3N"></td><td id="6-3O"></td><td id="6-3P"></td><td id="6-3Q">22</td><td id="6-3R">.36</td></tr>
<tr><td id="6-3S"></td><td id="6-3T"></td><td id="6-3U">Comandra</td><td id="6-3V"></td><td id="6-3W">1</td><td id="6-3X">1</td><td id="6-3Y"></td><td id="6-3Z"></td><td id="6-40"></td><td id="6-41"></td><td id="6-42"></td><td id="6-43"></td><td id="6-44"></td><td id="6-45"></td><td id="6-46"></td><td id="6-47">2</td><td id="6-48">.03</td></tr>
<tr><td id="6-49"></td><td id="6-4a"></td><td id="6-4b">Total</td><td id="6-4c">8</td><td id="6-4d">15</td><td id="6-4e">9</td><td id="6-4f">15</td><td id="6-4g">2</td><td id="6-4h">2</td><td id="6-4i"></td><td id="6-4j"></td><td id="6-4k"></td><td id="6-4l"></td><td id="6-4m"></td><td id="6-4n"></td><td id="6-4o">51</td><td id="6-4p">.84</td></tr>
<tr><td id="6-4q"></td><td id="6-4r">1980</td><td id="6-4s">MPB</td><td id="6-4t">1</td><td id="6-4u">6</td><td id="6-4v">12</td><td id="6-4w">9</td><td id="6-4x">4</td><td id="6-4y">3</td><td id="6-4z">2</td><td id="6-4A">1</td><td id="6-4B">1</td><td id="6-4C"></td><td id="6-4D"></td><td id="6-4E">1</td><td id="6-4F">40</td><td id="6-4G">.66</td></tr>
<tr><td id="6-4H"></td><td id="6-4I"></td><td id="6-4J">Pity&#x27;s</td><td id="6-4K">4</td><td id="6-4L">3</td><td id="6-4M">4</td><td id="6-4N">1</td><td id="6-4O"></td><td id="6-4P"></td><td id="6-4Q"></td><td id="6-4R"></td><td id="6-4S"></td><td id="6-4T"></td><td id="6-4U"></td><td id="6-4V"></td><td id="6-4W">12</td><td id="6-4X">.20</td></tr>
<tr><td id="6-4Y"></td><td id="6-4Z"></td><td id="6-50">Comandra</td><td id="6-51"></td><td id="6-52">2</td><td id="6-53">2</td><td id="6-54">1</td><td id="6-55"></td><td id="6-56"></td><td id="6-57"></td><td id="6-58"></td><td id="6-59"></td><td id="6-5a"></td><td id="6-5b"></td><td id="6-5c"></td><td id="6-5d">5</td><td id="6-5e">.08</td></tr>
<tr><td id="6-5f"></td><td id="6-5g"></td><td id="6-5h">Total</td><td id="6-5i">5</td><td id="6-5j">11</td><td id="6-5k">18</td><td id="6-5l">11</td><td id="6-5m">4</td><td id="6-5n">3</td><td id="6-5o">2</td><td id="6-5p">1</td><td id="6-5q">1</td><td id="6-5r"></td><td id="6-5s"></td><td id="6-5t">1</td><td id="6-5u">57</td><td id="6-5v">.94</td></tr>
<tr><td id="6-5w"></td><td id="6-5x">1981</td><td id="6-5y">MPB</td><td id="6-5z"></td><td id="6-5A"></td><td id="6-5B">1</td><td id="6-5C">1</td><td id="6-5D">1</td><td id="6-5E"></td><td id="6-5F"></td><td id="6-5G"></td><td id="6-5H"></td><td id="6-5I"></td><td id="6-5J">1</td><td id="6-5K"></td><td id="6-5L">4</td><td id="6-5M">.07</td></tr>
<tr><td id="6-5N"></td><td id="6-5O"></td><td id="6-5P">Total</td><td id="6-5Q"></td><td id="6-5R"></td><td id="6-5S">1</td><td id="6-5T">1</td><td id="6-5U">1</td><td id="6-5V"></td><td id="6-5W"></td><td id="6-5X"></td><td id="6-5Y"></td><td id="6-5Z"></td><td id="6-60">1</td><td id="6-61"></td><td id="6-62">4</td><td id="6-63">.07</td></tr>
<tr><td id="6-64"></td><td id="6-65">All years</td><td id="6-66"></td><td id="6-67">13</td><td id="6-68">26</td><td id="6-69">28</td><td id="6-6a">27</td><td id="6-6b">7</td><td id="6-6c">5</td><td id="6-6d">2</td><td id="6-6e">1</td><td id="6-6f">1</td><td id="6-6g"></td><td id="6-6h">1</td><td id="6-6i">1</td><td id="6-6j">112</td><td id="6-6k">1.78</td></tr>
<tr><td id="6-6l" rowspan="2">12-inch
cut</td><td id="6-6m">1979</td><td id="6-6n">MPB</td><td id="6-6o"></td><td id="6-6p"></td><td id="6-6q"></td><td id="6-6r"></td><td id="6-6s"></td><td id="6-6t"></td><td id="6-6u"></td><td id="6-6v"></td><td id="6-6w"></td><td id="6-6x"></td><td id="6-6y">1</td><td id="6-6z"></td><td id="6-6A">1</td><td id="6-6B">.19</td></tr>
<tr><td id="6-6C"></td><td id="6-6D">Comandra</td><td id="6-6E">2</td><td id="6-6F"></td><td id="6-6G">1</td><td id="6-6H"></td><td id="6-6I">1</td><td id="6-6J"></td><td id="6-6K"></td><td id="6-6L"></td><td id="6-6M"></td><td id="6-6N"></td><td id="6-6O">1</td><td id="6-6P"></td><td id="6-6Q">4</td><td id="6-6R">.77</td></tr>
<tr><td id="6-6S"></td><td id="6-6T"></td><td id="6-6U">Total</td><td id="6-6V">2</td><td id="6-6W"></td><td id="6-6X">1</td><td id="6-6Y"></td><td id="6-6Z">1</td><td id="6-70"></td><td id="6-71"></td><td id="6-72"></td><td id="6-73"></td><td id="6-74"></td><td id="6-75">1</td><td id="6-76"></td><td id="6-77">5</td><td id="6-78">.96</td></tr>
<tr><td id="6-79"></td><td id="6-7a">1980</td><td id="6-7b">MPB</td><td id="6-7c">1</td><td id="6-7d">1</td><td id="6-7e">4</td><td id="6-7f">5</td><td id="6-7g">5</td><td id="6-7h">7</td><td id="6-7i">3</td><td id="6-7j"></td><td id="6-7k"></td><td id="6-7l"></td><td id="6-7m"></td><td id="6-7n"></td><td id="6-7o">26</td><td id="6-7p">5.00</td></tr>
<tr><td id="6-7q"></td><td id="6-7r"></td><td id="6-7s">Pity&#x27;s</td><td id="6-7t"></td><td id="6-7u"></td><td id="6-7v"></td><td id="6-7w"></td><td id="6-7x">1</td><td id="6-7y"></td><td id="6-7z"></td><td id="6-7A"></td><td id="6-7B"></td><td id="6-7C"></td><td id="6-7D"></td><td id="6-7E"></td><td id="6-7F">1</td><td id="6-7G">.19</td></tr>
<tr><td id="6-7H"></td><td id="6-7I"></td><td id="6-7J">Comandra</td><td id="6-7K"></td><td id="6-7L">1</td><td id="6-7M"></td><td id="6-7N"></td><td id="6-7O"></td><td id="6-7P"></td><td id="6-7Q"></td><td id="6-7R"></td><td id="6-7S"></td><td id="6-7T"></td><td id="6-7U">1</td><td id="6-7V"></td><td id="6-7W">1</td><td id="6-7X">.19</td></tr>
<tr><td id="6-7Y"></td><td id="6-7Z"></td><td id="6-80">Total</td><td id="6-81">1</td><td id="6-82">2</td><td id="6-83">4</td><td id="6-84">5</td><td id="6-85">6</td><td id="6-86">7</td><td id="6-87">3</td><td id="6-88"></td><td id="6-89"></td><td id="6-8a"></td><td id="6-8b"></td><td id="6-8c"></td><td id="6-8d">28</td><td id="6-8e">5.38</td></tr>
<tr><td id="6-8f"></td><td id="6-8g">1981</td><td id="6-8h">MPB</td><td id="6-8i"></td><td id="6-8j">1</td><td id="6-8k">2</td><td id="6-8l"></td><td id="6-8m"></td><td id="6-8n">3</td><td id="6-8o"></td><td id="6-8p"></td><td id="6-8q"></td><td id="6-8r"></td><td id="6-8s"></td><td id="6-8t"></td><td id="6-8u">6</td><td id="6-8v">1.15</td></tr>
<tr><td id="6-8w"></td><td id="6-8x"></td><td id="6-8y">Total</td><td id="6-8z"></td><td id="6-8A">1</td><td id="6-8B">2</td><td id="6-8C"></td><td id="6-8D"></td><td id="6-8E">3</td><td id="6-8F"></td><td id="6-8G"></td><td id="6-8H"></td><td id="6-8I"></td><td id="6-8J"></td><td id="6-8K"></td><td id="6-8L">6</td><td id="6-8M">1.15</td></tr>
<tr><td id="6-8N"></td><td id="6-8O">All years</td><td id="6-8P"></td><td id="6-8Q">3</td><td id="6-8R">3</td><td id="6-8S">7</td><td id="6-8T">5</td><td id="6-8U">7</td><td id="6-8V">10</td><td id="6-8W">3</td><td id="6-8X"></td><td id="6-8Y"></td><td id="6-8Z"></td><td id="6-90">1</td><td id="6-91"></td><td id="6-92">39</td><td id="6-93">7.50</td></tr>
<tr><td id="6-94" rowspan="2">100-leave
tree cut</td><td id="6-95">1979</td><td id="6-96">MPB</td><td id="6-97">1</td><td id="6-98"></td><td id="6-99">1</td><td id="6-9a"></td><td id="6-9b"></td><td id="6-9c"></td><td id="6-9d"></td><td id="6-9e"></td><td id="6-9f"></td><td id="6-9g"></td><td id="6-9h"></td><td id="6-9i"></td><td id="6-9j">2</td><td id="6-9k">.20</td></tr>
<tr><td id="6-9l"></td><td id="6-9m">Ips spp.</td><td id="6-9n">1</td><td id="6-9o"></td><td id="6-9p"></td><td id="6-9q">1</td><td id="6-9r"></td><td id="6-9s">1</td><td id="6-9t"></td><td id="6-9u"></td><td id="6-9v"></td><td id="6-9w"></td><td id="6-9x"></td><td id="6-9y"></td><td id="6-9z">3</td><td id="6-9A">.30</td></tr>
<tr><td id="6-9B"></td><td id="6-9C"></td><td id="6-9D">Total</td><td id="6-9E">2</td><td id="6-9F"></td><td id="6-9G">1</td><td id="6-9H">1</td><td id="6-9I"></td><td id="6-9J">1</td><td id="6-9K"></td><td id="6-9L"></td><td id="6-9M"></td><td id="6-9N"></td><td id="6-9O"></td><td id="6-9P"></td><td id="6-9Q">5</td><td id="6-9R">.50</td></tr>
<tr><td id="6-9S"></td><td id="6-9T">1980</td><td id="6-9U">MPB</td><td id="6-9V"></td><td id="6-9W">1</td><td id="6-9X"></td><td id="6-9Y"></td><td id="6-9Z"></td><td id="6-a0"></td><td id="6-a1"></td><td id="6-a2"></td><td id="6-a3"></td><td id="6-a4"></td><td id="6-a5"></td><td id="6-a6"></td><td id="6-a7">1</td><td id="6-a8">.10</td></tr>
<tr><td id="6-a9"></td><td id="6-aa"></td><td id="6-ab">Ips spp.</td><td id="6-ac">1</td><td id="6-ad">1</td><td id="6-ae"></td><td id="6-af"></td><td id="6-ag"></td><td id="6-ah"></td><td id="6-ai"></td><td id="6-aj"></td><td id="6-ak"></td><td id="6-al"></td><td id="6-am"></td><td id="6-an"></td><td id="6-ao">2</td><td id="6-ap">.20</td></tr>
<tr><td id="6-aq"></td><td id="6-ar"></td><td id="6-as">Total</td><td id="6-at">1</td><td id="6-au">2</td><td id="6-av"></td><td id="6-aw"></td><td id="6-ax"></td><td id="6-ay"></td><td id="6-az"></td><td id="6-aA"></td><td id="6-aB"></td><td id="6-aC"></td><td id="6-aD"></td><td id="6-aE"></td><td id="6-aF">3</td><td id="6-aG">.30</td></tr>
<tr><td id="6-aH"></td><td id="6-aI">1981</td><td id="6-aJ">MPB</td><td id="6-aK">1</td><td id="6-aL"></td><td id="6-aM"></td><td id="6-aN"></td><td id="6-aO"></td><td id="6-aP"></td><td id="6-aQ"></td><td id="6-aR"></td><td id="6-aS"></td><td id="6-aT"></td><td id="6-aU"></td><td id="6-aV"></td><td id="6-aW">1</td><td id="6-aX">.10</td></tr>
<tr><td id="6-aY"></td><td id="6-aZ"></td><td id="6-b0">Total</td><td id="6-b1">1</td><td id="6-b2"></td><td id="6-b3"></td><td id="6-b4"></td><td id="6-b5"></td><td id="6-b6"></td><td id="6-b7"></td><td id="6-b8"></td><td id="6-b9"></td><td id="6-ba"></td><td id="6-bb"></td><td id="6-bc"></td><td id="6-bd">1</td><td id="6-be">.10</td></tr>
<tr><td id="6-bf"></td><td id="6-bg">All years</td><td id="6-bh"></td><td id="6-bi">4</td><td id="6-bj">2</td><td id="6-bk">1</td><td id="6-bl">1</td><td id="6-bm"></td><td id="6-bn"></td><td id="6-bo">1</td><td id="6-bp"></td><td id="6-bq"></td><td id="6-br"></td><td id="6-bs"></td><td id="6-bt"></td><td id="6-bu">9</td><td id="6-bv">.90</td></tr>
<tr><td id="6-bw" rowspan="3">Check
area</td><td id="6-bx">1979</td><td id="6-by">MPB</td><td id="6-bz"></td><td id="6-bA">4</td><td id="6-bB"></td><td id="6-bC">9</td><td id="6-bD">5</td><td id="6-bE">9</td><td id="6-bF">1</td><td id="6-bG">5</td><td id="6-bH">1</td><td id="6-bI">1</td><td id="6-bJ"></td><td id="6-bK"></td><td id="6-bL">36</td><td id="6-bM">2.53</td></tr>
<tr><td id="6-bN"></td><td id="6-bO">Pity&#x27;s</td><td id="6-bP"></td><td id="6-bQ">3</td><td id="6-bR"></td><td id="6-bS"></td><td id="6-bT"></td><td id="6-bU"></td><td id="6-bV"></td><td id="6-bW"></td><td id="6-bX"></td><td id="6-bY"></td><td id="6-bZ"></td><td id="6-c0"></td><td id="6-c1">3</td><td id="6-c2">.21</td></tr>
<tr><td id="6-c3"></td><td id="6-c4">Total</td><td id="6-c5"></td><td id="6-c6">4</td><td id="6-c7">3</td><td id="6-c8">9</td><td id="6-c9">5</td><td id="6-ca">9</td><td id="6-cb">1</td><td id="6-cc">5</td><td id="6-cd">1</td><td id="6-ce">1</td><td id="6-cf"></td><td id="6-cg"></td><td id="6-ch">39</td><td id="6-ci">2.74</td></tr>
<tr><td id="6-cj" rowspan="4"></td><td id="6-ck">1980</td><td id="6-cl">MPB</td><td id="6-cm">1</td><td id="6-cn">1</td><td id="6-co">4</td><td id="6-cp">11</td><td id="6-cq">14</td><td id="6-cr">18</td><td id="6-cs">10</td><td id="6-ct">8</td><td id="6-cu">6</td><td id="6-cv">1</td><td id="6-cw">2</td><td id="6-cx">6</td><td id="6-cy">82</td><td id="6-cz">5.77</td></tr>
<tr><td id="6-cA"></td><td id="6-cB">Pity&#x27;s</td><td id="6-cC"></td><td id="6-cD"></td><td id="6-cE"></td><td id="6-cF">1</td><td id="6-cG"></td><td id="6-cH"></td><td id="6-cI"></td><td id="6-cJ"></td><td id="6-cK"></td><td id="6-cL"></td><td id="6-cM"></td><td id="6-cN"></td><td id="6-cO">1</td><td id="6-cP">.07</td></tr>
<tr><td id="6-cQ"></td><td id="6-cR">Comandra</td><td id="6-cS"></td><td id="6-cT"></td><td id="6-cU"></td><td id="6-cV"></td><td id="6-cW">1</td><td id="6-cX"></td><td id="6-cY"></td><td id="6-cZ"></td><td id="6-d0"></td><td id="6-d1"></td><td id="6-d2"></td><td id="6-d3"></td><td id="6-d4">1</td><td id="6-d5">.07</td></tr>
<tr><td id="6-d6"></td><td id="6-d7">Total</td><td id="6-d8">1</td><td id="6-d9">1</td><td id="6-da">4</td><td id="6-db">12</td><td id="6-dc">15</td><td id="6-dd">18</td><td id="6-de">10</td><td id="6-df">8</td><td id="6-dg">6</td><td id="6-dh">1</td><td id="6-di">2</td><td id="6-dj">6</td><td id="6-dk">84</td><td id="6-dl">5.91</td></tr>
<tr><td id="6-dm" rowspan="2"></td><td id="6-dn">1981</td><td id="6-do">MPB</td><td id="6-dp"></td><td id="6-dq"></td><td id="6-dr">6</td><td id="6-ds">5</td><td id="6-dt">9</td><td id="6-du">11</td><td id="6-dv">13</td><td id="6-dw">6</td><td id="6-dx">5</td><td id="6-dy"></td><td id="6-dz">4</td><td id="6-dA">1</td><td id="6-dB">60</td><td id="6-dC">4.23</td></tr>
<tr><td id="6-dD"></td><td id="6-dE">Total</td><td id="6-dF"></td><td id="6-dG"></td><td id="6-dH">6</td><td id="6-dI">5</td><td id="6-dJ">9</td><td id="6-dK">11</td><td id="6-dL">13</td><td id="6-dM">6</td><td id="6-dN">5</td><td id="6-dO"></td><td id="6-dP">4</td><td id="6-dQ">1</td><td id="6-dR">60</td><td id="6-dS">4.23</td></tr>
<tr><td id="6-dT"></td><td id="6-dU">All years</td><td id="6-dV"></td><td id="6-dW">1</td><td id="6-dX">5</td><td id="6-dY">13</td><td id="6-dZ">26</td><td id="6-e0">29</td><td id="6-e1">38</td><td id="6-e2">24</td><td id="6-e3">19</td><td id="6-e4">12</td><td id="6-e5">2</td><td id="6-e6">6</td><td id="6-e7">7</td><td id="6-e8">183</td><td id="6-e9">12.88</td></tr>
</table>

<a id='01134089-d179-425b-89f8-ec0301156416'></a>

¹MPB = Mountain pine beetle.
²*Pityophthorus*, *Pityogenes*, and *Pityokteines*.

<a id='e2745e0a-cbe1-46c4-a046-ae68cc6d3211'></a>

7

<!-- PAGE BREAK -->

<a id='baa71641-f742-49db-ae11-b7f83d913d57'></a>

Adding the loss due to the mountain pine beetle,
secondary insects, and comandra rust to the trees cut
per acre gives the gross number of trees removed and
thus the residual trees per acre (table 5). All cutting
blocks now contain almost the same number of trees per
acre, which is about one-half the number per acre now in
the check area, although the average stand diameter is
different.

<a id='3fd32cd3-b559-40c7-9ebb-6eeee01bf870'></a>

Residual basal area followed the level of cut as would
be expected (fig. 2). Using the check blocks as a base,
then 66 percent of the basal area was removed in the
7-inch (17.78-cm) blocks; 55 percent in the 10-inch
(25.40-cm) blocks; 45 percent in the 12-inch (30.48-cm)
blocks; and 63 percent in the 100-leave-tree blocks.

<a id='a8b5ed18-396c-4eab-aaa8-c2c0d26b9e65'></a>

There was an apparent and slightly greater radial
growth, of those residual trees measured, in the 12-inch
(30.48-cm), 100-leave-tree, and check blocks as compared
to the 7-inch (17.78-cm) and 10-inch (25.40-cm) blocks
(fig. 3). This does not necessarily reflect release by cut-
ting, because only 1 to 2 years of growth occurred since
cutting was started.

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Table 5.—Net effects to the stands from cutting levels and mortality factors

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<table id="7-1">
<tr><td id="7-2"></td><td id="7-3" colspan="6">Trees per acre</td><td id="7-4"></td></tr>
<tr><td id="7-5" rowspan="2">Treatment</td><td id="7-6" rowspan="2" colspan="2">Before Number
cut cut</td><td id="7-7" colspan="4">Trees Killed by</td><td id="7-8" rowspan="2">Residual</td></tr>
<tr><td id="7-9">MPB&#x27;</td><td id="7-a">Ips spp.</td><td id="7-b">Pity&#x27;s²</td><td id="7-c">Comandra</td></tr>
<tr><td id="7-d">7-inch cut</td><td id="7-e">163.3</td><td id="7-f">76.9</td><td id="7-g">1.32</td><td id="7-h">0</td><td id="7-i">0.15</td><td id="7-j">0.03</td><td id="7-k">84.90</td></tr>
<tr><td id="7-l">10-inch cut</td><td id="7-m">215.7</td><td id="7-n">113.2</td><td id="7-o">11.08</td><td id="7-p">0.10</td><td id="7-q">.56</td><td id="7-r">.11</td><td id="7-s">90.76</td></tr>
<tr><td id="7-t">12-inch cut</td><td id="7-u">343.0</td><td id="7-v">229.0</td><td id="7-w">6.34</td><td id="7-x">0</td><td id="7-y">.19</td><td id="7-z">.96</td><td id="7-A">88.66</td></tr>
<tr><td id="7-B">100-leave- tree cut</td><td id="7-C">214.0</td><td id="7-D">114.0</td><td id="7-E">.30</td><td id="7-F">.60</td><td id="7-G">50</td><td id="7-H">0</td><td id="7-I">99.70</td></tr>
<tr><td id="7-J">Check area</td><td id="7-K">196.0</td><td id="7-L">0</td><td id="7-M">12.53</td><td id="7-N">0</td><td id="7-O">.28</td><td id="7-P">.07</td><td id="7-Q">183.12</td></tr>
</table>
¹MPB = Mountain pine beetle.
²Pityophthorus, Pityogenes, and Pityokteines.

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<::bar chart
Y-axis: BASAL AREA PER CUTTING BLOCK, POSTHARVEST (values from 0 to 90 in increments of 10)
X-axis: CUTTING BLOCKS

Data:
- 7 inch: approximately 28
- 10 inch: approximately 37
- 12 inch: approximately 45
- 100 - leave-tree: approximately 30
- check: approximately 82

Figure 2.—Residual basal area of cutting blocks.
: bar chart::>

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¹MPB = Mountain pine beetle.
²Pityophthorus, Pityogenes, and Pityokteines.
<::line chart
Y-axis: AVERAGE RADIAL GROWTH (IN)
X-axis: YEAR (1972 to 1981)

Lines:
- 100-leave-tree (solid line): Shows average radial growth starting around 0.035 in 1972, generally stable with slight fluctuations, then increasing from 1979 to approximately 0.048 in 1981.
- 10 inch (dashed line): Shows average radial growth starting around 0.032 in 1972, reaching a peak of approximately 0.06 in 1978, then decreasing to around 0.03 in 1979 before rising to approximately 0.045 in 1981.
- 12 inch (dot-dash line): Shows average radial growth starting around 0.033 in 1972, generally fluctuating between 0.025 and 0.037, with a dip in 1977 and then rising to approximately 0.04 in 1981.
- check area (long dash-dot line): Shows average radial growth starting around 0.032 in 1972, generally fluctuating between 0.028 and 0.037, with a dip in 1977 and then rising to approximately 0.033 in 1981.
- 7 inch (dotted line): Shows average radial growth starting around 0.028 in 1972, generally fluctuating between 0.024 and 0.029, remaining the lowest growth among the series, ending around 0.028 in 1981.
: chart::>


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Figure 3.—Average radial growth of stand per year for last 10 years by cutting block.

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8

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AVERAGE RADIAL GROWTH (IN)

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## DISCUSSION
Having seen the immediate results of the cutting
levels, the question now is of the future of these stands,
with respect to the activity of the beetle and stand
development. The harvest levels reduced the current
level of loss somewhat proportionally, but will the beetle
resume killing trees at the same ratio as before treat-
ment or has a change been induced in the course of the
infestation? To project an answer to this question, these
mortality trend data were used in the Rate of Loss Model
(Cole and McGregor, in press) to predict the rate of
future tree loss and number of years of such an infesta-
tion (fig. 4).

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<::Line chart showing "Predicted Trees Per Acre Killed" on the y-axis (ranging from 0 to 50 in increments of 5) against "Year of Kill" on the x-axis (ranging from 1980 to 2010 in increments of 10). Five distinct lines are plotted:

1.  **check area**: A dashed line (alternating long and short dashes) that starts near 0 in 1980, sharply rises to a peak of approximately 47 trees per acre around 1982-1983, then sharply declines to about 18 by 1985, and continues to decrease, reaching near 0 by 1995.
2.  **12 inch**: A dashed line (long dashes) that starts near 0 in 1980, peaks at approximately 22 trees per acre around 1982-1983, then declines to about 18 by 1985, and further decreases to near 0 by 1995.
3.  **7 inch**: A dotted line that starts near 0 in 1980, peaks at approximately 12 trees per acre around 1982-1983, and then declines to near 0 by 1988.
4.  **10 inch**: A dashed line (short dashes) that starts near 0 in 1980, peaks at approximately 5 trees per acre around 1985, and then declines to near 0 by 1990.
5.  **100 - leave - tree**: A solid line that stays very close to 0 throughout the entire period from 1980 to 2010, showing a minimal number of trees killed.
: chart::>

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Figure 4.—Predicted trees per acre killed by mountain pine beetle, postharvest by cutting levels.

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9

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This projection showed that the infestation within the check area should peak in 1981, with 46.9 trees killed per acre (19 per ha), and subside to 1.1 trees per acre (0.44 per ha) by 1989, tailing to 0.02 tree per acre (0.008 per ha) by 1993. The diameter-limit cuts reduced the peak loss rather proportionally to the extent of cutting; for example, peak kill was greater in the 12-inch (30.48-cm) cuts than in the 7-inch (17.78-cm) cuts. The expected length of infestation changed accordingly, with the longest period of outbreak expected for the 7-inch (17.78-cm) cut. The exception was the 100-leave-tree cut. This cut extended the predicted life of the infestation to the year 2012, with peak tree loss of only 1.5 trees per acre (0.61 per ha) in the year 1993 (table 6).

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Table 6.-Predicted peak loss, length of infestation, and annual
drain from the mountain pine beetle by cutting level
(trees per acre)
<table id="9-1">
<tr><td id="9-2">Treatment</td><td id="9-3">Peak
loss</td><td id="9-4">Peak
year</td><td id="9-5">Years of
infestation</td><td id="9-6">Total
loss</td><td id="9-7">Annual drain</td></tr>
<tr><td id="9-8">Check area</td><td id="9-9">46.9</td><td id="9-a">1981</td><td id="9-b">14</td><td id="9-c">180.5</td><td id="9-d">12.9</td></tr>
<tr><td id="9-e">12-inch cut</td><td id="9-f">22.1</td><td id="9-g">1981</td><td id="9-h">18</td><td id="9-i">80.1</td><td id="9-j">4.4</td></tr>
<tr><td id="9-k">10-inch cut</td><td id="9-l">10.3</td><td id="9-m">1982</td><td id="9-n">26</td><td id="9-o">62.5</td><td id="9-p">2.4</td></tr>
<tr><td id="9-q">7-inch cut</td><td id="9-r">12.3</td><td id="9-s">1982</td><td id="9-t">13</td><td id="9-u">32.8</td><td id="9-v">2.5</td></tr>
<tr><td id="9-w">100-leave-tree cut</td><td id="9-x">1.5</td><td id="9-y">1993</td><td id="9-z">33</td><td id="9-A">23.6</td><td id="9-B">.7</td></tr>
</table>

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The 100-leave-tree cut, according to these predictions,
would reduce tree loss from the mountain pine beetle to
a low amount. This cut would also be advantageous in
reducing or minimizing dwarf mistletoe occurrence
(Wicker 1967; Wicker and Shaw 1967). Once the area is
reseeded and the regeneration height exceeds snow
depth, the leave trees should be removed. The small
target area of the regeneration, the washing action of the
snow in removing dwarf mistletoe seeds, and the young
stand being immune to the mountain pine beetle may
well be the keys to producing a healthy new stand of
lodgepole pine.

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## SUMMARY
The demonstration area on which diameter-limit and leave-tree cuts were applied to reduce or minimize lodgepole pine losses to the mountain pine beetle was evaluated the first year after cutting. First-year losses were reduced proportionally to the intensity of cut. Projected losses and continuation of the mountain pine beetle infestation were derived from the predictive Rate of Loss Model. The best deterrent of recurring infestation—amount of losses and length of time—was the 100-leave-tree cut. The 100-leave-tree cut also was the best in encouraging regeneration and reducing dwarf mistletoe infection.

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10

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## PUBLICATIONS CITED
Cahill, Donn B. Cutting strategies as control measures of the mountain pine beetle in lodgepole pine in Colorado. In: Berryman, Alan A.; Amman, Gene D.; Stark, Ronald W., tech. eds. Theory and practice of mountain pine beetle management in lodgepole pine forests: symposium proceedings; 1978 April 25-27; Pullman, WA. Moscow, ID: University of Idaho, Forest, Wildlife and Range Experiment Station; 1978: 188-191.
Cole, Walter E.; Cahill, Donn B. Cutting strategies can reduce probabilities of mountain pine beetle epidemics in lodgepole pine. J. For. 74: 294-297; 1976.
Cole, Walter E.; McGregor, Mark D. Estimating the rate and amount of tree loss from a mountain pine beetle infestation. In press.
McGregor, Mark D.; Cole, Walter E. Harvesting strategies for management of mountain pine beetle infestations in lodgepole pine. In press.
Wicker, Ed F. Seed destiny as a klendusic factor of infection and its impact upon propagation of Arceuthobium spp. Phytopathology. 57(11): 1164-1168; 1967.
Wicker, Ed F.; Shaw, C. Gardner. Target area as a klendusic factor in dwarf mistletoe infections. Phytopathology. 57(11): 1161-1163; 1967.

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11

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The Intermountain Station, headquartered in Ogden, Utah, is one
of eight regional experiment stations charged with providing scien-
tific knowledge to help resource managers meet human needs and
protect forest and range ecosystems.

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The Intermountain Station includes the States of Montana,
Idaho, Utah, Nevada, and western Wyoming. About 231 million
acres, or 85 percent, of the land area in the Station territory are
classified as forest and rangeland. These lands include grass-
lands, deserts, shrublands, alpine areas, and well-stocked forests.
They supply fiber for forest industries; minerals for energy and in-
dustrial development; and water for domestic and industrial con-
sumption. They also provide recreation opportunities for millions
of visitors each year.
Field programs and research work units of the Station are main-
tained in:

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Boise, Idaho
Bozeman, Montana (in cooperation with Montana State University)
Logan, Utah (in cooperation with Utah State University)
Missoula, Montana (in cooperation with the University of Montana)
Moscow, Idaho (in cooperation with the University of Idaho)
Provo, Utah (in cooperation with Brigham Young University)
Reno, Nevada (in cooperation with the University of Nevada)

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<::logo: US Forest Service
FOREST SERVICE
UAS
DEPARTMENT OF AGRICULTURE
A shield-shaped logo with a pine tree silhouette between the letters "U" and "S".::>

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U.S. GOVERNMENT PRINTING OFFICE: 1983-676-032/1021 REGION NO. 8