1 |
Abgrall JF, Schvester D. Observations on the trapping of Ips typographus L. after windthrow. Revue Forestière Française, 1987, 39: 359-377,
DOI
|
2 |
|
3 |
Arač K, Pernek M. Occurrence and spreading of the large larch bark beetle (Ips cembrae) in Croatia and possiblities of monitoring by using pheromone traps. Šumar List, 2014, 138: 145-154
|
4 |
Bakke A. The recent (Ips typographus) outbreak in Norway—experiences from a control 719 program. Holartic Ecol, 1989, 12: 515-519,
DOI
|
5 |
Besceli O, Ekici M. Control and biology of Ips sexdentatus in the Picea orientalis region. Orm Arast Enst Tek Bult, 1969, 32: 1-32
|
6 |
Byers JA. Behavioral mechanisms involved in reducing competition in bark beetles. Ecography, 1989, 12(4): 466-476,
DOI
|
7 |
|
8 |
|
9 |
Grégoire JC, Evans HF. Lieutier F, Day KR, Battisti A, Grégoire JC, Evans HF. Damage and Control of BAWBILT Organisms—an Overview. Bark and Wood Boring Insects in Living Trees in Europe, a Synthesis, 2004 Dordrecht Springer 19-37,
DOI
|
10 |
Grodzki W. Pityogenes chalcographus (Coleoptera, Scolytidae) –an indicator of man-made changes in Norway spruce stands. Biologia, 1997, 52(2): 217-220
|
11 |
Grodzki W. Some reactions of Ips typographus (L.) (Col.: Scolytidae) to changing breeding conditions in a forest decline area in the Sudeten Mountains. Poland. J Pest Sci, 2004, 77(1): 43-48,
DOI
|
12 |
Grodzki W. Ips cembrae Heer. (Col.: Curculionidae, Scolytinae) in young larch stands – a new problem in Poland. Forstsch Aktuell, 2008, 44: 8-9
|
13 |
Grodzki W. The larch bark beetle Ips cembrae (Heer) (Coleoptera, Curculionidae, Scolytinae) in young and older larch stands of southern Poland. Les Pr Bad, 2009, 70(4): 355-361,
DOI
|
14 |
Grodzki W. Two types of Norway spruce Picea abies (L.) H. Karst. infestation by the double spined bark beetle Ips duplicatus C. R. Sahlb. (Coleoptera: Scolytinae) in southern and north-eastern Poland. Folia For Pol Ser A, 2012, 54(3): 169-174
|
15 |
Grodzki W. On the vertical distribution of Ips duplicatus, I. cembrae and some bark- and longhorn beetles (Col.: Curculionidae, Scolytinae, Col.: Cerambycidae) in the Tatra National Park in Poland. Folia For Pol Ser A, 2020, 62(2): 68-77,
DOI
|
16 |
Grodzki W, Kosibowicz M. Contribution to the recognition of the biology of Ips cembrae (Heer) (Col., Curculionidae, Scolytinae) in the conditions of southern Poland. Sylwan, 2009, 153(9): 587-593
|
17 |
Grucmanová Š, Holuša J, Trombik J, Lukášová K. Large larch bark beetle Ips cembrae (Coleoptera: Curculionidae, Scolytinae) in the Czech Republic: analysis of population development and catches in pheromone traps. For J, 2014, 60: 143-149,
DOI
|
18 |
Holuša J, Lukášová K, Grodzki W, Kula E, Matoušek P. Is Ips amitinus (Coleoptera: Curculionidae) abundant in wide range of altitudes?. Acta Zool Bulgar, 2012, 64(3): 219-228
|
19 |
Holuša J, Kula E, Wewiora F, Lukášová K. Flight activity, within the trap tree abundance and overwintering of the larch bark beetle (Ips cembrae) in Czech Republic. Šumarski List, 2014, 138: 19-27
|
20 |
Holuša J, Resnerová K, Berčák R, Koreň M, Kula E. Optimization of felled trap trees for bark beetles control, 2021 VÚLHM Lesnický průvodce 42
|
21 |
Holuša J, Resnerová K, Kula E. Application of the principles of integrated pest management against large larch bark beetle (Ips cembrae (Heer, 1836)), 2021 VÚLHM Lesnický průvodce 62
|
22 |
Hutchison IK, Reid ML. Phloem and defence traits in relation to tree size and age: implications for host selection by bark beetles. Forest Ecol Manag, 2022,
DOI
|
23 |
Jung P, Rohde M, Lunderstadt J. Induzierte Resistenz im Leitgewebe der Europaischen Larche Larix decidua Mill. nach Befall durch den Grossen Larchenborkenkafer Ips cembrae Heer (Col.: Scol.). J Appl Entomol, 1994, 117: 427-433,
DOI
|
24 |
Knížek M. Large larch bark beetle (Ips cembrae). Lesnická Práce, 2006, 85: 1-4
|
25 |
Krehan H. Data sheet: Ips cembrae (Großer Lärchenborkenkäfer). Forstsch Aktuell, 2004, 32: 9
|
26 |
Krehan H, Cech TL. Larch damage in Upper Styria. An example of the complex effects of damage agents. Forstsch Aktuell, 2004, 32: 4-8
|
27 |
Kula E, Ząbecki W. Attractiveness of spruce for cambioxylophages as related to stand age. J for Sci, 2001, 47: 88-96
|
28 |
Kula E, Ząbecki W. Merocoenoses of cambioxylophagous insect fauna of Norway spruce (Picea abies/L./Karst.) with focus on bark beetles (Coleoptera: Scolytidae) and types of tree damage in different gradation conditions. J For Sci, 2010, 56: 474-484,
DOI
|
29 |
McDowell N, Pockman W, Allen C, Breshears D, Cobb N, Kolb T, Plaut J, Sperry J, West A, William D, Yepez E. Mechanisms of plant survival and mortality during drought: Why do some plants survive while others succumb to drought?. New Phytol, 2008, 178: 719-739,
DOI
|
30 |
Meurisse N, Pawson SM, Somchit C. Bark beetles on pine logs: forecasting winter colonisation dynamics based on trap catches and temperature records. J Pest Sci, 2021, 94(4): 1357-1373,
DOI
|
31 |
Mulock P, Christiansen E. The threshold of successful attack by Ips typographus on Picea abies: A field experiment. Forest Ecol Manag, 1986, 14(2): 125-132,
DOI
|
32 |
OEPP, EPPO. Ips cembrae and Ips subelongatus. EPPO Bulletin, 2005, 35: 445-449,
DOI
|
33 |
Pfeffer A, Knížek M. Coleoptera: Curculionoidea 2 (Scolytidae and Platypodidae). Folia Fac Sci Nat Univ Masaryk Brun Biol, 1996, 94: 601-607
|
34 |
Pfeffer A (1955) Fauna of Czechoslovakia. Bark beetles-Scolytoidea. ČSAV, 324 pp.
|
35 |
Pfeil W. About insect damage in forests, means of preventing it and reducing its damage, 1827 Germany Verlag 72
|
36 |
Postner M. Schwenke W. Ips cembrae. Die Forstschädlinge Europas, 1974 Germany Paul Parey 458-459
|
37 |
Redfern DB, Stoakley JT, Steele H, Minter DW. Dieback and death of larch caused by Ceratocystis laricicola sp. nov. following attack by Ips cembrae. Plant Pathol, 1987, 36: 467-480,
DOI
|
38 |
Resnerová K, Holuša J, Surový P, Trombik J, Kula E. Comparison of Ips cembrae (Coleoptera: Curculionidae) capture methods: small trap trees caught the most beetles. Forests, 2020, 11: 1275,
DOI
|
39 |
Rohde M. Physiological investigations into susceptibility, defense reactions and resistance, in relations between larch and the larch bark beetle (Ips cembrae). M D Gesell Allg Ange, 1995, 10: 51-54
|
40 |
Rohde M, Waldmann R, Lunderstandt J. Induced defence reaction in the phloem of spruce (Picea abies) and larch (Larix decidua) after attack by Ips typographus and Ips cembrae. Forest Ecol Manag, 1996, 86: 51-59,
DOI
|
41 |
Sun XL, Wang QY, Sweeney JD, Gao CQ. A review: chemical ecology of Ips typographus (Coleoptera, Scolytidae). J Forestry Res, 2006, 17(1): 65-75,
DOI
|
42 |
Symonds MRE, Gitau-Clarke CW. The evolution of aggregation pheromone diversity in bark beetles. Adv Insect Physiol, 2016, 50: 195-234,
DOI
|
43 |
Terasaki Y, Yosida N, Fukuyama K, Furuta K. Response of Larix leptolepis to inoculated Ips cembrae. Bul of the Tokyo Univ Forests, 1987, 77: 19-30
|
44 |
Viewegh J. Czech forest (site) ecosystem classification. J For Sci., 2003, 49(2): 74-82,
DOI
|
45 |
Wichmann L, Ravn HP. The spread of Ips typographus (L.) (Coleoptera, Scolytidae) attacks following heavy windthrow in Denmark, analysed using GIS. Forest Ecol Manag, 2001, 148(1–3): 31-39,
DOI
|
46 |
Zahradník P (2014) Methodical manual of integrated plant protection for forest stands. Lesnická práce, 376
|
47 |
Zumr V. Spatial distribution of bark beetles (Coleoptera, Scolytidae) in Norway spruce (Picea excelsa Link) and their indifference in relation to forest belts. Lesnictví, 1984, 30: 509-523
|