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Effect of growth conditions on wood properties of Scots pine (Pinus sylvestris L.)


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Aleinikovas, M., Grigaliūnas, J. 2006. Differences of pine (Pinus sylvestris L.) wood physical and mechanical properties from different forest site types in Lithuania. – Baltic Forestry, 12(1), 9–13. AleinikovasM. GrigaliūnasJ. 2006 Differences of pine (Pinus sylvestris L.) wood physical and mechanical properties from different forest site types in Lithuania Baltic Forestry 12 1 9 13 Search in Google Scholar

Antonova, G.F., Stasova, V.V. 1993. Effects of environmental factors on wood formation in Scots pine stems. – Trees, 7, 214–219. https://doi.org/10.1007/BF00202076. AntonovaG.F. StasovaV.V. 1993 Effects of environmental factors on wood formation in Scots pine stems Trees 7 214 219 https://doi.org/10.1007/BF00202076. 10.1007/BF00202076 Search in Google Scholar

Bektas, I., Alma, M.H., Goker, Y., Yuksel, A., Gundogan, R. 2003. Influence of site on sapwood and heartwood ratios of Turkish calabrian pine. – Forest Products Journal, 53(4), 48–50. BektasI. AlmaM.H. GokerY. YukselA. GundoganR. 2003 Influence of site on sapwood and heartwood ratios of Turkish calabrian pine Forest Products Journal 53 4 48 50 Search in Google Scholar

Bergès, L., Nepveu, G., Franc, A. 2008. Effects of ecological factors on radial growth and wood density components of sessile oak (Quercus petraea Liebl.) in Northern France. – Forest Ecology and Management, 255(3–4), 567–579. https://doi.org/10.1016/j.foreco.2007.09.027. BergèsL. NepveuG. FrancA. 2008 Effects of ecological factors on radial growth and wood density components of sessile oak (Quercus petraea Liebl.) in Northern France Forest Ecology and Management 255 3–4 567 579 https://doi.org/10.1016/j.foreco.2007.09.027. 10.1016/j.foreco.2007.09.027 Search in Google Scholar

Björklund, L. 1999. Identifying heartwood-rich stands or stems of Pinus sylvestris by using inventory data. – Silva Fennica, 33(2), 119–129. BjörklundL. 1999 Identifying heartwood-rich stands or stems of Pinus sylvestris by using inventory data Silva Fennica 33 2 119 129 10.14214/sf.662 Search in Google Scholar

Björklund, L., Walfridsson, E. 1993. Properties of Scots pine wood in Sweden - Basic density, heartwood, moisture and bark content. (Tallvedens egenskaper i Sverige – Torr-rådensitet, kärnvedhalt, fuktighet och barkhalt). – Report No. 234. Uppsala, Swedish University of Agricultural Sciences, Department of Forest Products, 1–67. (In Swedish with English summary). BjörklundL. WalfridssonE. 1993 Properties of Scots pine wood in Sweden - Basic density, heartwood, moisture and bark content. (Tallvedens egenskaper i Sverige – Torr-rådensitet, kärnvedhalt, fuktighet och barkhalt) – Report No. 234. Uppsala Swedish University of Agricultural Sciences, Department of Forest Products 1 67 (In Swedish with English summary). Search in Google Scholar

Bowyer, J., Shmulsky, R., Haygreen, J.G. 2003. Forest Products and Wood Science: An Introduction, 4th Edition. Ames, Iowa, Iowa State Press. 554 pp. BowyerJ. ShmulskyR. HaygreenJ.G. 2003 Forest Products and Wood Science: An Introduction 4th Edition Ames, Iowa Iowa State Press 554 Search in Google Scholar

Climent, J., Chambel, M.R., Pérez, E., Gil, L., Pardos, J. 2002. Relationship between heartwood radius and early radial growth, tree age, and climate in Pinus canariensis. – Canadian Journal of Forest Research, 32(1), 103–111. https://doi.org/10.1139/x01-178. ClimentJ. ChambelM.R. PérezE. GilL. PardosJ. 2002 Relationship between heartwood radius and early radial growth, tree age, and climate in Pinus canariensis Canadian Journal of Forest Research 32 1 103 111 https://doi.org/10.1139/x01-178. 10.1139/x01-178 Search in Google Scholar

Crivellaro, A., Ruffinatto, F. 2021. From trees to wood and beyond: A brief look into wood structure / Vom Baum zum Wald und darüber hinaus. Ein kurzer Ausflug in die Holzstruktur. – Kaden, T. (ed.). Wood. Rethinking Material. Berlin, JOVIS Verlag GmbH, 202–213. https://doi.org/10.1515/9783868599633-015. CrivellaroA. RuffinattoF. 2021 From trees to wood and beyond: A brief look into wood structure / Vom Baum zum Wald und darüber hinaus. Ein kurzer Ausflug in die Holzstruktur KadenT. (ed.). Wood. Rethinking Material Berlin JOVIS Verlag GmbH 202 213 https://doi.org/10.1515/9783868599633-015. 10.1515/9783868599633-015 Search in Google Scholar

Fries, A., Ericsson, T. 1998. Genetic parameters in diallel-crossed Scots pine favor heartwood formation breeding objectives. – Canadian Journal of Forest Research, 28(6), 937–941. https://doi.org/10.1139/x98-061. FriesA. EricssonT. 1998 Genetic parameters in diallel-crossed Scots pine favor heartwood formation breeding objectives Canadian Journal of Forest Research 28 6 937 941 https://doi.org/10.1139/x98-061. 10.1139/x98-061 Search in Google Scholar

Hakkila, P. 1979. Wood density survey and dry weight tables for pine, spruce and birch stems in Finland. – Communicationes Instituti Forestalis Fenniae, 96, 1–59. HakkilaP. 1979 Wood density survey and dry weight tables for pine, spruce and birch stems in Finland Communicationes Instituti Forestalis Fenniae 96 1 59 Search in Google Scholar

Havimo, M., Rikala, J., Sirviö, J., Sipi, M. 2009. Tracheid cross-sectional dimensions in Scots pine (Pinus sylvestris) – distributions and comparison with Norway spruce (Picea abies). – Silva Fennica, 43(4), 681–688. https://doi.org/10.14214/sf.188. HavimoM. RikalaJ. SirviöJ. SipiM. 2009 Tracheid cross-sectional dimensions in Scots pine (Pinus sylvestris) – distributions and comparison with Norway spruce (Picea abies) Silva Fennica 43 4 681 688 https://doi.org/10.14214/sf.188. 10.14214/sf.188 Search in Google Scholar

ISO 13061-2:2014. 2014. Physical and mechanical properties of wood –Test methods for small clear wood specimens – Part 2: Determination of density for physical and mechanical tests. Geneva, Switzerland, International Organization for Standardization, Switzerland. 5 pp. ISO 13061-2:2014 2014 Physical and mechanical properties of wood –Test methods for small clear wood specimens – Part 2: Determination of density for physical and mechanical tests Geneva, Switzerland International Organization for Standardization, Switzerland 5 Search in Google Scholar

ISO 13061-3:2014. 2014. Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 3: Determination of ultimate strength in static bending. Geneva, Switzerland, International Organization for Standardization. 5 pp. ISO 13061-3:2014 2014 Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 3: Determination of ultimate strength in static bending Geneva, Switzerland International Organization for Standardization 5 Search in Google Scholar

ISO 13061-12:2017. 2017. Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 12: Determination of static hardness. Geneva, Switzerland, International Organization for Standardization. 3 pp. ISO 13061-12:2017 2017 Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 12: Determination of static hardness Geneva, Switzerland International Organization for Standardization 3 Search in Google Scholar

ISO 13061-17:2017. 2017. Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 17: Determination of ultimate stress in compression parallel to grain. Geneva, Switzerland. International Organization for Standardization. 4 pp. ISO 13061-17:2017 2017 Physical and mechanical properties of wood – Test methods for small clear wood specimens – Part 17: Determination of ultimate stress in compression parallel to grain Geneva, Switzerland International Organization for Standardization 4 Search in Google Scholar

Kärenlampi, P.P., Riekkinen, M. 2002. Pine heartwood formation as a maturation phenomenon. – Journal of Wood Science, 48, 467–472. https://doi.org/10.1007/BF00766641. KärenlampiP.P. RiekkinenM. 2002 Pine heartwood formation as a maturation phenomenon Journal of Wood Science 48 467 472 https://doi.org/10.1007/BF00766641. 10.1007/BF00766641 Search in Google Scholar

Kärenlampi, P.P., Riekkinen, M. 2004. Maturity and growth rate effects on Scots pine basic density. – Wood Science and Technology, 38, 465–473. https://doi.org/10.1007/s00226-004-0243-7. KärenlampiP.P. RiekkinenM. 2004 Maturity and growth rate effects on Scots pine basic density Wood Science and Technology 38 465 473 https://doi.org/10.1007/s00226-004-0243-7. 10.1007/s00226-004-0243-7 Search in Google Scholar

Kärkkäinen, M. 1985. Wood science. (Puutiede). Sotkamo, Finland, Sallisen Kustannus Oy. 415 pp. (In Finnish). KärkkäinenM. 1985 Wood science. (Puutiede) Sotkamo, Finland Sallisen Kustannus Oy 415 (In Finnish). Search in Google Scholar

Kask, R. 2015. The influence of growth conditions on physico-mechanical properties of Scots pine (Pinus sylvestris L.) wood in Estonia. – Doctoral thesis. Tartu, Estonian University of Life Sciences. 157 pp. KaskR. 2015 The influence of growth conditions on physico-mechanical properties of Scots pine (Pinus sylvestris L.) wood in Estonia Doctoral thesis. Tartu Estonian University of Life Sciences 157 Search in Google Scholar

Konofalska, E., Kozakiewicz, P., Buraczyk, W., Szeligowski, H., Lachowicz, H. 2021. The technical quality of the wood of Scots pine (Pinus sylvestris L.) of diverse genetic origin. – Forests, 12(5), 619. https://doi.org/10.3390/f12050619. KonofalskaE. KozakiewiczP. BuraczykW. SzeligowskiH. LachowiczH. 2021 The technical quality of the wood of Scots pine (Pinus sylvestris L.) of diverse genetic origin Forests 12 5 619 https://doi.org/10.3390/f12050619. 10.3390/f12050619 Search in Google Scholar

Lagana, R., Mamoňová, M., Haviarova, E. 2008. Quality of scotch pine wood (Pinus sylvestris L.) from sites of different growing conditions. – Proceedings of the 4th International Symposium “Interaction of Wood with Various Forms of Energy”, Slovakia, Sept. 2008. Zvolen, 147–153. LaganaR. MamoňováM. HaviarovaE. 2008 Quality of scotch pine wood (Pinus sylvestris L.) from sites of different growing conditions Proceedings of the 4th International Symposium “Interaction of Wood with Various Forms of Energy” Slovakia Sept. 2008 Zvolen 147 153 Search in Google Scholar

Lappi-Seppälä, M. 1952. Pine heartwood and stem shape. (Männyn sydänpuusta ja runkomuodosta. Referat: Über Verkernung und Stammform der Kiefer). – Communicationes Instituti Forestalis Fenniae, 40(25), 1–26. (In Finnish and German). Lappi-SeppäläM. 1952 Pine heartwood and stem shape. (Männyn sydänpuusta ja runkomuodosta. Referat: Über Verkernung und Stammform der Kiefer) Communicationes Instituti Forestalis Fenniae 40 25 1 26 (In Finnish and German). Search in Google Scholar

Lindeberg, J. 2001. X-ray based dendro-analyses of wood properties. – Report No. 50. Umeå, Swedish University of Agricultural Sciences, Department of Silviculture. (Sveriges lantbruksuniversitet, Institutionen för skogsskötsel). 19 pp. LindebergJ. 2001 X-ray based dendro-analyses of wood properties Report No. 50. Umeå Swedish University of Agricultural Sciences, Department of Silviculture (Sveriges lantbruksuniversitet, Institutionen för skogsskötsel). 19 Search in Google Scholar

Lõhmus, E. 2004. Estonian forest site types. Second Edition. (Eesti metsakasvukohatüübid. Teine trükk). Tartu, Eesti Loodusfoto. 80 pp. (In Estonian). LõhmusE. 2004 Estonian forest site types. Second Edition. (Eesti metsakasvukohatüübid. Teine trükk) Tartu Eesti Loodusfoto 80 (In Estonian). Search in Google Scholar

Mäkinen, H. 1998. The suitability of height and radial increment variation in Pinus sylvestris (L.) for expressing environmental signals. – Forest Ecology and Management, 112(1–2), 191–197. https://doi.org/10.1016/S0378-1127(98)00337-5. MäkinenH. 1998 The suitability of height and radial increment variation in Pinus sylvestris (L.) for expressing environmental signals Forest Ecology and Management 112 1–2 191 197 https://doi.org/10.1016/S0378-1127(98)00337-5. 10.1016/S0378-1127(98)00337-5 Search in Google Scholar

Mattsson, S. 2002. Effects of site preparation on stem growth and clear wood properties in boreal Pinus sylvestris and Pinus condarta. – Doctoral thesis. Umeå, Swedish University of Agricultural Sciences. 240, 1–37. MattssonS. 2002 Effects of site preparation on stem growth and clear wood properties in boreal Pinus sylvestris and Pinus condarta Doctoral thesis. Umeå Swedish University of Agricultural Sciences 240 1 37 Search in Google Scholar

Meerts, P. 2002. Mineral nutrient concentrations in sapwood and heartwood: a literature review. – Annals of Forest Science, 59(7), 713–722. https://doi.org/10.1051/forest:2002059. MeertsP. 2002 Mineral nutrient concentrations in sapwood and heartwood: a literature review Annals of Forest Science 59 7 713 722 https://doi.org/10.1051/forest:2002059. 10.1051/forest:2002059 Search in Google Scholar

Metslaid, S., Hordo, M., Korjus, H., Kiviste, A., Kangur, A. 2018. Spatio-temporal variability in Scots pine radial growth responses to annual climate fluctuations in hemiboreal forests of Estonia. – Agricultural and Forest Meteorology, 252, 283–295. https://doi.org/10.1016/j.agrformet.2018.01.018. MetslaidS. HordoM. KorjusH. KivisteA. KangurA. 2018 Spatio-temporal variability in Scots pine radial growth responses to annual climate fluctuations in hemiboreal forests of Estonia Agricultural and Forest Meteorology 252 283 295 https://doi.org/10.1016/j.agrformet.2018.01.018. 10.1016/j.agrformet.2018.01.018 Search in Google Scholar

Metslaid, S., Sims, A., Kangur, A., Hordo, M., Jõgiste, K., Kiviste, A., Hari, P. 2011. Growth patterns from different forest generations of Scots pine in Estonia. – Journal of Forest Research, 16(3), 237–243. MetslaidS. SimsA. KangurA. HordoM. JõgisteK. KivisteA. HariP. 2011 Growth patterns from different forest generations of Scots pine in Estonia Journal of Forest Research 16 3 237 243 10.1007/s10310-011-0275-4 Search in Google Scholar

Moore, J.R., Cown, D.J. 2015. 2 - Processing of wood for wood composites – Ansell, M.P. (ed.). Wood Composites. Cambridge, UK, Woodhead Publishing, 27–45. https://doi.org/10.1016/B978-1-78242-454-3.00002-0. MooreJ.R. CownD.J. 2015 2 - Processing of wood for wood composites AnsellM.P. (ed.). Wood Composites Cambridge, UK Woodhead Publishing 27 45 https://doi.org/10.1016/B978-1-78242-454-3.00002-0. 10.1016/B978-1-78242-454-3.00002-0 Search in Google Scholar

Mörling, T., Valinger, E., 1999. Effects of fertilization and thinning on heartwood area, sapwood area and growth in Scots pine. – Scandinavian Journal of Forest Research, 14(5), 462–469. https://doi.org/10.1080/02827589950154168. MörlingT. ValingerE. 1999 Effects of fertilization and thinning on heartwood area, sapwood area and growth in Scots pine Scandinavian Journal of Forest Research 14 5 462 469 https://doi.org/10.1080/02827589950154168. 10.1080/02827589950154168 Search in Google Scholar

Nekrasova, A.A. 1994. Properties of wood of conifers as a function of the growth conditions. (Свойства древесины хвойных пород в зависимости от условий произрастания). – Lesnoe hozjaistvo, 2, 22–24. (In Russian). NekrasovaA.A. 1994 Properties of wood of conifers as a function of the growth conditions. (Свойства древесины хвойных пород в зависимости от условий произрастания) Lesnoe hozjaistvo 2 22 24 (In Russian). Search in Google Scholar

Oliva, A.G., Merino, V.B., Seco, J.I.F.-G., García, M.C., Prieto, E.H, 2006. Effect of growth conditions on wood density of Spanish Pinus nigra. – Wood Science and Technology, 40, 190–204. https://doi.org/10.1007/s00226-005-0014-0. OlivaA.G. MerinoV.B. SecoJ.I.F.-G. GarcíaM.C. PrietoE.H 2006 Effect of growth conditions on wood density of Spanish Pinus nigra Wood Science and Technology 40 190 204 https://doi.org/10.1007/s00226-005-0014-0. 10.1007/s00226-005-0014-0 Search in Google Scholar

Osman, K.T. 2013. Forest soils. – Osman, K.T. (ed.). Soils. Principles, Properties and Management. Dordrecht, Springer. 229–251. https://doi.org/10.1007/978-94-007-5663-2_14. OsmanK.T. 2013 Forest soils OsmanK.T. (ed.). Soils. Principles, Properties and Management Dordrecht Springer 229 251 https://doi.org/10.1007/978-94-007-5663-2_14. 10.1007/978-94-007-5663-2_14 Search in Google Scholar

Ots, K. 2002. Impact of air pollution on the growth of conifers in the industrial region of Northeast Estonia. – Doctoral thesis. Tartu, Estonian Agricultural University. 222 pp. OtsK. 2002 Impact of air pollution on the growth of conifers in the industrial region of Northeast Estonia Doctoral thesis. Tartu Estonian Agricultural University 222 Search in Google Scholar

Pikk, J., Kask, R., Kuusepuu, T., Peterson, P. 2004. The effect of growth conditions on Scots pine (Pinus sylvestris L.) wood properties. – Forestry Studies / Metsanduslikud Uurimused, 40, 187–197. PikkJ. KaskR. KuusepuuT. PetersonP. 2004 The effect of growth conditions on Scots pine (Pinus sylvestris L.) wood properties Forestry Studies / Metsanduslikud Uurimused 40 187 197 Search in Google Scholar

Rikala, J. 2003. Spruce and pine on drained peatlands - wood quality and suitability for the sawmill industry. – Doctoral thesis. Helsinki, University of Helsinki, Department of Forest Resource Management, Publications. 35, 147 pp. RikalaJ. 2003 Spruce and pine on drained peatlands - wood quality and suitability for the sawmill industry Doctoral thesis. Helsinki University of Helsinki, Department of Forest Resource Management, Publications 35 147 Search in Google Scholar

Saladis, J., Aleinikovas, M. 2004. Variability and correlation of physical and mechanical properties of pine wood. (Pušų medienos fizinių ir mechaninių savybių kintamumas bei koreliaciniai ryšiai). – Miškininkystė, 1(55), 60–67. (In Lithuanian). SaladisJ. AleinikovasM. 2004 Variability and correlation of physical and mechanical properties of pine wood. (Pušų medienos fizinių ir mechaninių savybių kintamumas bei koreliaciniai ryšiai) Miškininkystė 1 55 60 67 (In Lithuanian). Search in Google Scholar

Savva, Y., Bergeron, Y., Denneler, B., Koubaa, A., Tremblay, F. 2008. Effect of interannual climate variations on radial growth of jack pine provenances in Petawawa, Ontario. – Canadian Journal of Forest Research, 38(3), 619–630. https://doi.org/10.1139/X07-178. SavvaY. BergeronY. DennelerB. KoubaaA. TremblayF. 2008 Effect of interannual climate variations on radial growth of jack pine provenances in Petawawa, Ontario Canadian Journal of Forest Research 38 3 619 630 https://doi.org/10.1139/X07-178. 10.1139/X07-178 Search in Google Scholar

Sazonova, T.A., Pridacha, V.B. 2005. Mineral nutrient contents in pine and spruce organs under different soil conditions. (Содержание минеральных элементов в органах сосны и ели при варьировании почвенных условий). – Lesovedenije 5, 25–31. (In Russian). SazonovaT.A. PridachaV.B. 2005 Mineral nutrient contents in pine and spruce organs under different soil conditions. (Содержание минеральных элементов в органах сосны и ели при варьировании почвенных условий) Lesovedenije 5 25 31 (In Russian). Search in Google Scholar

Seco, J.I.F.-G., Barra, M.R.D. 1996. Growth rate as a predictor of density and mechanical quality of sawn timber from fast growing species. – Holz als Roh- und Werkstoff, 54(3), 171–174. SecoJ.I.F.-G. BarraM.R.D. 1996 Growth rate as a predictor of density and mechanical quality of sawn timber from fast growing species Holz als Roh- und Werkstoff 54 3 171 174 10.1007/s001070050161 Search in Google Scholar

Spława-Neyman, S. 1994. Selected properties of Scots pine (Pinus sylvestris L.) wood in dependence upon forest stand type and age of the trees. – Prace Institutu Technologii Drevna, 137/138, 19–28. Spława-NeymanS. 1994 Selected properties of Scots pine (Pinus sylvestris L.) wood in dependence upon forest stand type and age of the trees Prace Institutu Technologii Drevna 137/138 19 28 Search in Google Scholar

Ståhl, E.G. 1998. Changes in wood and stem properties of Pinus sylvestris caused by provenance transfer. – Silva Fennica, 32(2), 163–172. https://doi.org/10.14214/sf.693. StåhlE.G. 1998 Changes in wood and stem properties of Pinus sylvestris caused by provenance transfer Silva Fennica 32 2 163 172 https://doi.org/10.14214/sf.693. 10.14214/sf.693 Search in Google Scholar

Uusvaara, O. 1974. Wood quality in plantation-grown Scots pine. (Lyhennelmä: Puun laadusta viljelymänniköissä). – Communicationes Instituti Forestalis Fenniae, 80(2), 1–105. UusvaaraO. 1974 Wood quality in plantation-grown Scots pine. (Lyhennelmä: Puun laadusta viljelymänniköissä) Communicationes Instituti Forestalis Fenniae 80 2 1 105 Search in Google Scholar

Varhimo, A., Kojola, S., Penttilä, T., Laiho, R. 2003. Quality and yield of pulpwood in drained peatland forests: pulpwood properties of Scots pine in stands of first commercial thinnings. – Silva Fennica, 37(3), 343–357. https://doi.org/10.14214/sf.494. VarhimoA. KojolaS. PenttiläT. LaihoR. 2003 Quality and yield of pulpwood in drained peatland forests: pulpwood properties of Scots pine in stands of first commercial thinnings Silva Fennica 37 3 343 357 https://doi.org/10.14214/sf.494. 10.14214/sf.494 Search in Google Scholar

Werberg, K. 1930. Sapwood and heartwood relationship in pine. (Lüli- ja maltspuu suhe männil). Tartu, Tartu Ülikooli Metsaosakonna toimetised. 17, 206 pp. (In Estonian). WerbergK. 1930 Sapwood and heartwood relationship in pine. (Lüli- ja maltspuu suhe männil) Tartu Tartu Ülikooli Metsaosakonna toimetised 17 206 (In Estonian). Search in Google Scholar

Wilhelmsson, L., Arlinger, J., Spångberg, K., Lundqvist, S.-O., Grahn, T., Hedenberg, Ö., Olsson, L. 2002. Models for predicting wood properties in stems of Picea abies and Pinus sylvestris in Sweden. – Scandinavian Journal of Forest Research, 17(4), 330–350. https://doi.org/10.1080/02827580260138080. WilhelmssonL. ArlingerJ. SpångbergK. LundqvistS.-O. GrahnT. HedenbergÖ. OlssonL. 2002 Models for predicting wood properties in stems of Picea abies and Pinus sylvestris in Sweden Scandinavian Journal of Forest Research 17 4 330 350 https://doi.org/10.1080/02827580260138080. 10.1080/02827580260138080 Search in Google Scholar

Wimmer, R. 1991. Relations between growth ring parameters and density of Scots pine wood. (Beziehungen zwischen Jahrringparametern und Rohdichte von Kiefernholz). – Holzforschung und Holzverwertung, 43(4), 79–82. (In German). WimmerR. 1991 Relations between growth ring parameters and density of Scots pine wood. (Beziehungen zwischen Jahrringparametern und Rohdichte von Kiefernholz) Holzforschung und Holzverwertung 43 4 79 82 (In German). Search in Google Scholar

Wodzicki, T.J. 2001. Natural factors affecting wood structure. – Wood Science and Technology, 35, 5–26. https://doi.org/10.1007/s002260100085. WodzickiT.J. 2001 Natural factors affecting wood structure Wood Science and Technology 35 5 26 https://doi.org/10.1007/s002260100085. 10.1007/s002260100085 Search in Google Scholar

Yang, K.C., Hazenberg, G. 1991. Relationship between tree age and sapwood/heartwood width in Populus Tremuloides Michx. – Wood and Fiber Science, 23(2), 247–252. YangK.C. HazenbergG. 1991 Relationship between tree age and sapwood/heartwood width in Populus Tremuloides Michx Wood and Fiber Science 23 2 247 252 Search in Google Scholar

Zvirbul, A.P., Nekrasova, G.N., Polubojarinov, O.I. 1976. Effect of urea fertilization on pine stands on the wood quality. (Влияние удобрения сосновых насаждений карбамидом на качество древесины). – Lesnoi Zhurnal, 6, 18–22. ZvirbulA.P. NekrasovaG.N. PolubojarinovO.I. 1976 Effect of urea fertilization on pine stands on the wood quality. (Влияние удобрения сосновых насаждений карбамидом на качество древесины) Lesnoi Zhurnal 6 18 22 Search in Google Scholar

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