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Influence of Climatic Factors on the Annual Radial Growth of Scots Pine (Pinus sylvestris L.) in Western Latvia Cover

Influence of Climatic Factors on the Annual Radial Growth of Scots Pine (Pinus sylvestris L.) in Western Latvia

Open Access
|Nov 2008

References

  1. Biondi, F., Waikul, K. (2004). Dendroclim 2002: A C++ program for statistical calibration of climate signals in tree ring chronology. Comput. Geosci., 30, 303-311.10.1016/j.cageo.2003.11.004
  2. Cedro, A. (2001). Dependence of radial growth of Pinus sylvestris L. from western Pomerania on the rainfall and temperature conditions. Geochronometria, 20, 69-74.
  3. Draveniece, A. (2007). Okeāniskās un kontinentālās gaisa masas Latvijā [Maritime and continental air masses in Latvia]. Latvijas Vegetācija, 14, 135 1pp.
  4. Eggertsson, Ó. (2000). Annual growth studies of pines (Pinus sylvestris L.) from the boreal forest of Northern Europe, a preliminary report. In Kolström, T., Lindholm, M., Viinanen, R. (eds.). Conifer growth variability during the Holocene in Northern Europe. Proceedings of the Meeting, 16-19 March 2000 (pp. 15-23). Lund, Sweden: Tiedonantoja/Research Notes 108. University of Joensuu, Faculty of Forestry.
  5. Fritts, H. C. (1996). Growth-rings of trees: Their correlation with climate. Science, 154(3752), 937-979.
  6. Grissino-Mayer, H. D. (2001). Evaluating crossdating accuracy: A manual and tutorial for the computer program COFECHA. Tree-Ring Research, 57(2), 205-221.
  7. Grissino-Mayer, H. D., Holmes, R. L., Fritts, H. C. (1996). User's Manual for the International Tree-Ring Data Bank Program Library Version 2.0. Tucson, Arizona: Laboratory of Tree-Ring Research, University of Arizona. 110 pp.
  8. Helama, S., Holopainen, J., Lindholm, M., Ogurtsov, M. G., Timonen, M., Eronen, M. (2003). Using early meteorological observations from 18th and 19th centuries to test relationship between summer temperature and growth in Northern Finland. In EuroDendro 2003. Conference of the European Working Group for Dendrochronology, 10-14 September 2003 (p. 37). Obergurgl Tyrol, Austria: The Institute of High Mountain Research, Innsbruck.
  9. Jātnieks, J. (1991). Fona monitorings Krustkalnu rezervātā [Background monitoring in the Krustkalns Reserve]. In Teiču rezervāts (2.-29. 1pp.). Rīga: Latvijas informācijas centrs (in Latvian).
  10. Juknys, R., Vencloviene, J. (1998). Quantitative analysis of tree ring series. In Stravinskiene, V., Jyknus, R. (eds.), Dendrochronology and Environmental Trends. Proceedings of the International Conference, 17-21 June 1998, Kaunas, Lithuania. (pp. 237-249). Kaunas: Vytautas Magnus University.
  11. Kirchhefer, A. J. (2001) Reconstruction of summer temperatures from tree-rings of Scot pine (Pinus sylvestris L.) in coastal northern Norway. The Holocene, 11(1), 41-52.
  12. Krąpiec, M. (1998). Oak Dendrochronology of the Neoholocene in Poland. In Krąpiec, M. (ed.), Folia Quaternaria 69: Progress in Dendrochronology of the Last Millenia in Poland (p. 9). Kraków, Polska Akademia Umiejętności.
  13. Krąpiec, M., Szychowska-Krąpiec, E. (2005). Paleoclimatological interpretation of Scots Pine chronology from NE Poland. In Sarlatto, M., Di Filippo, A., Piovesan, G. & Romagnoli, M. (eds.), EuroDendro 2005. Abstract Book of International Conference of Dendrochronology, 28 September - 2 October, Viterbo, Italy (pp. 55-56). Viterbo: Sette Cittą.
  14. Krause, C. (1992). Climate-growth relationships from continuous tree-ring series versus pointer years. In Bartholin, T. S., Berglund, B. E., Eckstein, D., Schweingruber, F. H. (eds.), Eggertsson, Ó. (man. ed.). Tree Rings and Environment. Proceedings of the International Dendrochronological Symposium, 3-9 September 1990 in Ystad, South Sweden. LUNDQUA Report, 34 (pp. 164-167). Lund: Lund University, Department of Quaternary Geology.
  15. Läänelaid, A., Eckstein, D. (2003). Development of a tree-ring chronology of Scots Pine (Pinus sylvestris L.) for Estonia as a dating tool and climatic proxy. Baltic Forestry, 9 (2), 76-82.
  16. Liepa, I. (1972). Vides faktoru ietekmes īpatsvara noteikšana ar multiplās regresijas metodi [The determination of the relative influence of environmental factors by multivariate regression]. Jaunākais Mežsaimniecībā, 14, 47-50. 1pp. (in Latvian).
  17. Linderson, H. (1992). Dendroclimatological investigation in Southern Sweden. In Bartholin, T. S., Berglund, B. E., Eckstein, D., Schweingruber, F. H. (eds.), Eggertsson, Ó. (man. ed.), Tree Rings and Environment. Proceedings of the International Dendrochronological Symposium, 3-9 September 1990 in Ystad, South Sweden. LUNDQUA Report, 34 (pp. 198-201). Lund: Lund University, Department of Quaternary Geology.
  18. Linderson, H. (2000). Conifer growth in boreal forests of northern Sweden related to meteorological data. In Kolström, T., Lindholm, M., Viinanen, R. (eds.) Conifer growth variability during the holocene in Northern Europe. Proceedings of the Meeting 16-19 March, 2000 in Lund, Sweden. Tiedonantoja/Research Notes 108 (pp. 25-35). Joensuu: University of Joensuu.
  19. Linderson, H. (2003). A comparison between tree-ring widths of recent Scots pine (Pinus sylvestris) and Norway spruce (Picea abies) stands and meteorological data from two areas in Sweden—inferences for the use of tree-ring width as climate indicator. In: LUNDQUA Report 38 (pp. 8, 14). Lund: Department of Geology, Quaternary Geology, Lund University.
  20. Lindholm, M., Meriläinen, J., Eronen, M. (1998-1999). A 1,250-year ring-width chronology of Scots pine for south-eastern Finland, in the southern part of the boreal forest belt. Dendrochronologia, 16-17, 183-190.
  21. Lindholm, M., Meriläinen, J. (1998). An over 1000-year ring-width chronology of Scots pine for south-eastern Finland. In Stravinskiene, V., Jyknus, R. (eds.), Dendrochronology and Environmental Trends. Proceedings of the International Conference, 17-21 June, 1998, Kaunas, Lithuania. (pp. 271-276). Kaunas: Vytautas Magnus University.
  22. Morgan, G. A., Leech, N. L., Gloeckner, G. W., Barrett, K. C. (2004). SPSS for introductory statistics—use and interpretation. New Jersey: Lawrence Erlbaum Associates. 211 pp.10.4324/9781410610539
  23. Pärn, H. (2003). Radial growth response of Scots pine to climate under dust pollution in Northeast Estonia. Water, Air and Soil Pollution, 144, 343-361.10.1023/A:1022969301545
  24. Pensa, M., Salminen, H., Jalkanen, R. (2005). A 250-year-long height-increment chronology for Pinus sylvestris at the northern coniferous timberline: A novel tool for reconstructing past summer temperatures? Dendrochronologia, 22(2), 75-81.10.1016/j.dendro.2005.02.005
  25. Rinn, F. (1996). TSAP Reference Manual (version 3.0). Heidelberg: Frank Rinn. 263 pp.
  26. Salminen, H., Jalkanen, R. (2004). Does current summer temperature contribute to the final shoot length on Pinus sylvestris? A case study at the northern conifer timberline. Dendrochronologia, 21(2), 79-83.10.1078/1125-7865-00039
  27. Schweingruber, F. H. (1983). Der Jahrring. Standort, Methodik, Zeit und Klima in der Dendrochronologie. Bern; Stuttgart: Paul Haupt Verlag. S. 93.
  28. Špalte, E. (1975a). Meteorologisko faktoru ietekme uz parastās priedes radiālo pieaugumu [The influence of meteorological factors on the radial increment of Scots pine]. Jaunākais Mežsaimniecībā, 18, 46-53 (in Latvian).
  29. Špalte, E. (1975b). Meteorologisko faktoru ietekme uz parastās priedes gadskārtu platumu [The influence of meteorological factors on the width of tree-rings in Scots pine]. Mežsaimniecība un Mežrūpniecība, 1, 32-35 (in Latvian).
  30. Vitas, A. (2006). Sensitivity of Scots pine trees to winter colds and summer drougthts: Dendroclimatological investigation. Baltic Forestry, 12(2), 220-226.
  31. Vitas, A. (2008). Litpinus-1: Tree-Ring Chronology of Scots Pine (Pinus sylvestris L.) for Lithuania. Baltic Forestry, 15(2), in press.
  32. Zālītis, P., Šitca (1986). Kokaudžu ražība ekstrēmi sausās vasarās [The productivity of tree stands in extremely dry summers]. Jaunākais Mežsaimniecībā, 28, 24-29 (in Latvian).
  33. Zviedris, A. (1950). Piezīmes par klimatisko faktoru ietekmi uz egļu stumbru caurmēra pieaugumu [Notes on the influence of climatic factors on the diameter increment of spruce trunks]. Latvijas PSR Zinātñu Akadēmijas Vēstis, 9(38), 105-108 (in Latvian).
  34. Zviedris, A., Sacenieks, R. (1958). Klimatisko faktoru ietekme uz priežu stumbru caurmēra pieaugumu [Influence of climatic factors on the diameter increment of pine trunks]. Latvijas PSR Zinātñu Akadēmijas Vēstis, 5(130), 37-44 (in Latvian).
  35. Залитис П. П. (1967). Дuнамuка сезонноςо nрuросма ∂ербьеб с осушенньιх сосняках u ельнuках осокво-мросмнuковьιх [Dynamics of seasonal increment in drained forest site type Caricosphragmitosum]. Елгава: ЛСХА. 25 c. (in Russian).
  36. Звиедрс А. И., Сацениекс Р.Я. (1960). О влиянии климатических факторов на шириругодичньіх слоев ели [Influence of climatic factors on the width of annual rings in spruce]. Извесмuя АН Ламв CCP, 3(152), 177-184 (in Russian).
  37. Лиепа, И.Я. (1980). Дuнамuка ∂ревесньιх заnасов: nроςнозuроварuе u эколоςuя [Dynamics of Wood Stocks: Forecasting and Ecology]. Рига: Зиратне, 171 pp. (in Russian).
  38. Скура, П.Я. (1988) Влияние климатических факторов на формирование прироста по запасу хвойньіх древостоев [Influence of climatic factors on the formation of increment in coniferous forest stands]. В кр. Тру∂ьι ЛСХА, Вьіп. 194, Елгава, c. 58-65.
  39. Шпалте, Э.П. (1978). Влияние метеорологических факторов на радиальійприрост сосньі в Латвийской CCP [Influence of meteorological factors on radial increment of Pinus Sylvestris L. in the Latvian SSR]. Лесове∂енuе, 3, 11-18 (in Russian).
DOI: https://doi.org/10.2478/v10046-008-0015-0 | Journal eISSN: 2255-890X | Journal ISSN: 1407-009X
Language: English
Page range: 120 - 128
Published on: Nov 29, 2008
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2008 Māris Zunde, Agrita Briede, Didzis Elferts, published by Latvian Academy of Sciences
This work is licensed under the Creative Commons License.

Volume 62 (2008): Issue 3 (June 2008)