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Александр Панчин
504. Estrada V. et al.: Long-lasting significant functional improvement in chronic severe spinal cord injury following scar resection and polyethylene glycol implantation. Neurobiol Dis 2014, 67:165–79.
505. Breidenbach W.C. et al.: Outcomes of the first 2 American hand transplants at 8 and 6 years posttransplant. J Hand Surg Am 2008, 33(7):1039–47.
506. Minev I.R. et al.: Biomaterials. Electronic dura mater for longterm multimodal neural interfaces. Science 2015, 347(6218):159–63.
507. Soekadar S.R. et al.: An EEG/EOG-based hybrid brain-neural computer interaction (BNCI) system to control an exoskeleton for the paralyzed hand. Biomed Tech (Berl) 2015, 60(3):199–205.
508. Shih J.J. et al.: Brain-computer interfaces in medicine. Mayo Clin Proc 2012, 87(3):268–79.
509. Wissner-Gross A.D., Freer C.E.: Causal entropic forces. Phys Rev Lett 2013, 110(16):168702.
510. Pietschnig J., Voracek M.: One Century of Global IQ Gains: A Formal Meta-Analysis of the Flynn Effect (1909–2013). Perspect Psychol Sci 2015, 10(3):282–306.mm
511. Prescott V.E. et al: Transgenic expression of bean alpha-amylase inhibitor in peas results in altered structure and immunogenicity. J Agric Food Chem 2005,53(23):9023–30.
512. Genetically modified mush. Nat Biotechnol 2006, 24(1):2.
513. Lee R.Y. et al: Genetically modified alpha-amylase inhibitor peas are not specifically allergenic in mice. PLOS ONE 2013, 8(1):e52972.
514. Campbell P.M. et al: Comparison of the alpha-amylase inhibitor-1 from common bean (Phaseolus vulgaris) varieties and transgenic expression in other legumes – post-translational modifications and immunogenicity. J Agric Food Chem 2011, 59(11): 6047–54.