Shortleaf research, newspaper articles, fact sheets, conference proceedings, literature reviews, and brochures.
Thinning![]() Stevenson, D. J., Lynch, T. B., & Guldin, J. M. (2012). Blue storms depress growth of shortleaf pine in western Arkansas and eastern Oklahoma. Proceedings of the 16th biennial southern silvicultural research conference. e-Gen. Tech. Rep. SRS-156. Asheville, NC: U.S. Department of Agriculture Forest Service, Southern Research Station. 318-319. Retrieved from http://www.treesearch.fs.fed.us/pubs/41516 ![]() Sabatia, C. O., Lynch, T. B., & Will, R. E. (2007). Branch and foliage biomass relations for shortleaf pine in southeast Oklahoma. Proceedings of a symposium; 2006 November 7-9; Springfield, MO. Gen. Tech. Rep. NRS-P-15. Newtown Square, PA: U.S. Department of Agriculture, Forest Service, Northern Research Station: 192-193. Retrieved from https://www.nrs.fs.fed.us/pubs/gtr/gtr_p-15%20papers/35sabatia-p-15.pdf ![]() Granskog, J. E., & Anderson, W. C. (1981). Dense undergrowth reduces feller-buncher productivity in shortleaf pine plantations. Southern Forest Experiment Station, Research Note SO-274. Retrieved from https://www.srs.fs.usda.gov/pubs/rn/rn_so274.pdf ![]() Somes, H., & Moorhead, G. (1954). Do thinning and prescribed burning affect the growth of shortleaf pine? Northeastern Research Station, Forest Research Note NE-34. Retrieved from http://www.treesearch.fs.fed.us/pubs/12910 ![]() Sabatia, C. O., Will, R. E., & Lynch, T. B. (2009). Effect of thinning on aboveground biomass accumulation and distribution in naturally regenerated shortleaf pine. Southern Journal of Applied Forestry, 33(4), 188-192. Retrieved from http://www.ingentaconnect.com/content/saf/sjaf/2009/00000033/00000004/art00006 ![]() Sabatia, C. O. (2007). Effect of Thinning on Partitioning of Aboveground Biomass in Naturally Regenerated Shortleaf Pine (Pinus Echinata Mill.). Proceedings of the 14th biennial southern silvicultural research conference. Gen. Tech. Rep. SRS–121. Asheville, NC: U.S. Department of Agriculture, Forest Service, Southern Research Station. 577-578. Retrieved from https://www.srs.fs.fed.us/pubs/gtr/gtr_srs121/gtr_srs121_577.pdf ![]() Cain, M. D., & Shelton, M. G. (2003). Effects of Alternative Thinning Regimes and Prescribed Burning in Natural, Even-Aged Loblolly–Shortleaf Pine Stands: 25 Year Results. Southern Journal of Applied Forestry, 27(1), 18-29. Retrieved from http://www.ingentaconnect.com/content/saf/sjaf/2003/00000027/00000001/art00003 ![]() Guldin, J. M., & Shelton, M. G. (2010). Effects of precommercial thinning in naturally regenerated loblolly-shortleaf pine stands in the upper west gulf coastal plain: results after two growing seasons. Southern Research Station, General Technical Report SRS-121. Retrieved from https://www.srs.fs.fed.us/pubs/gtr/gtr_srs121/gtr_srs121_055.pdf ![]() Phipps, H. M. (1973). Effects of thinning on young shortleaf pine plantations in Indiana. North Central Research Station, Research Paper NC-93. Retrieved from http://www.treesearch.fs.fed.us/pubs/10614 ![]() Lynch, T. B., Nkouka, J., Huebschmann, M. M., & Guldin, J. M. (2002). Estimating The Probability Of Achieving Shortleaf Pine Regeneration At Variable Specified Levels. Southern Research Station, General Technical Report SRS-48. Retrieved from https://www.fs.usda.gov/treesearch/pubs/3133 |