Диссертация (1173259), страница 20
Текст из файла (страница 20)
Schilling [et al.]//Stroke. – 2014.- №45(1).- Р.239-247.126185.Shih, P.C. Effects of exercise intensity on spatial memory performance andhippocampal synaptic plasticity in transient brain ischemic rats/P.C. Shih, Y.R.Yang, R.Y. Wang// PLoS One. – 2013.- №8(10).- Р.78163.186.Stein, J. Robot-assisted exercise for hand weakness after stroke: A pilotstudy/ J. Stein, L. Bishop, G.
Gillen, [et al.]// Am J Phys Med Rehabil. – 2011.№90.- Р.887-894.187.Sun, J. Gradually increased training intensity benefits rehabilitation outcomeafter stroke by BDNF upregulation and stress suppression/J. Sun, Z. Ke, S.P. Yip[et al.]// Biomed Res Int.
– 2014.- №2014.- Р.925762.188.Svensson, M. Effects of physical exercise on neuroinflammation,neuroplasticity, neurodegeneration, and behavior: what we can learn from animalmodels in clinical settings/M. Svensson, J. Lexell, T. Deierborg// NeurorehabilNeural Repair. – 2015.- №29(6).- Р.577-589.189.Takahashi, C.D. Robotbased hand motor therapy after stroke/ C.D.Takahashi, L. Der-Yeghiaian, V. Le [et al.]// Brain. – 2008. - №131(pt 2).- Р.425437.190.Tian, S. Early exercise training improves ischemic outcome in rats bycerebral hemodynamics/S.
Tian, Y. Zhang, S. Tian [et al.]// Brain Res. – 2013.№1533.- Р.114-121.191.Timmermans, A. Effects of task-oriented robot training on arm function,activity, and quality of life in chronic stroke patients: a randomized controlled trial/A. Timmermans, R. Lemmens, M. Monfrance [et al.]// J Neuroeng Rehabil. - 2014.- №11.- Р.45.192.Vaynman, S. Exercise induces BDNF and synapsin I to specifichippocampal subfields/S. Vaynman, Z. Ying, F. Gómez-Pinilla// J Neurosci Res. –2004. - №76(3).- Р.356-362.193.Veerbeek, J.
What is the evidence for physical therapy poststroke?/ J.Veerbeek, E. Van Wegen, R. Van Peppen [et al.]// A systematic review and metaanalysis. PLoS One. – 2014.- №9.- Р.87987.127194.Veerbeek, J.M. Effects of Robot-Assisted Therapy for the Upper Limb AfterStroke/ J.M. Veerbeek, A.C.
Langbroek-Amersfoort, E.E. van Wegen [et al.]//Neurorehabil Neural Repair. – 2017.- №31(2).- Р.107-121.195.Volpe, B.T. Intensive sensorimotor arm training mediated by therapist orrobot improves hemiparesis in patients with chronic stroke/ B.T. Volpe, D. Lynch,A. Rykman-Berland, [et al.]// Neurorehabil Neural Repair. – 2008.- №22.- Р.305310.196.Wagner, T.H. An economic analysis of robot-assisted therapy for long-termupperlimb impairment after stroke/ T.H. Wagner, A.C. Lo, P.
Peduzzi [et al.]//Stroke. – 2011.- №42.- Р.2630-2632.197.Wang, R.Y. Treadmill training effects in different age groups followingmiddle cerebral artery occlusion in rats/R.Y. Wang, S.M. Yu, Y.R. Yang//Gerontology. – 2005.- №51(3).- Р.161-165.198.Ward, N.S. Functional reorganization of the cerebral motor system afterstroke/ N.S. Ward // Curr Opin Neurol. – 2004.- №17(6).- Р.725-730.199.Winters, C. Generalizability of the proportional recovery model for theupper extremity after an ischemic stroke/ C.
Winters, E. Van Wegen, A.Daffertshofer, G. Kwakkel // Neurorehabil Neural Repair. – 2015.- №29.- Р.614622.200.Wyller, T. Subjective well-being one year after stroke/ T. Wyller, U. Sveen,K. Sodring, [et al.]// Clin Rehabil. – 1997.- №11.- Р.139-145.201.Yagita, Y.
Postischemic exercise decreases neurogenesis in the adult ratdentate gyrus/Y. Yagita, K. Kitagawa, T. Sasaki [et al.]// Neurosci Lett. -2006.№409(1).- Р.24-29.202.Yamaguchi, T. YM796, a novel muscarinic agonist, improves theimpairment of learning behavior in a rat model of chronic focal cerebral ischemia/T. Yamaguchi, M. Suzuki, M. Yamamoto// Brain Res. – 1995.- №669(1).- Р.107114.128203.Zemke, A.C. Motor cortex organization after stroke is related to side ofstroke and level of recovery/A.C.
Zemke, P.J. Heagerty, C. Lee, S.C. Cramer//Stroke. -2003.- №34(5).- Р.23-28.204.Zhang, L. Physical exercise improves functional recovery through mitigationof autophagy, attenuation of apoptosis and enhancement of neurogenesis afterMCAO in rats/L. Zhang, X. Hu, J. Luo [et al.]// BMC Neurosci. – 2013.- №14.Р.46.205.Zhang, P. Early exercise improves cerebral blood flow through increasedangiogenesis in experimental stroke rat model/P. Zhang, H. Yu, N. Zhou [et al.]// JNeuroeng Rehabil. – 2013.- №10.- Р.43.206.Zhang, P. Early exercise protects against cerebral ischemic injury throughinhibiting neuron apoptosis in cortex in rats/P. Zhang, Y.
Zhang, J. Zhang [et al.]//Int J Mol Sci. – 2013.- №14(3).- Р.6074-6089.207.Zhang, Q. Exercise induces mitochondrial biogenesis after brain ischemia inrats/Q. Zhang, Y. Wu, P. Zhang [et al.]// Neuroscience. – 2012.- №205.- Р.10-17.208.Zhang, Q.W. Exercise promotes axon regeneration of newborn striatonigraland corticonigral projection neurons in rats after ischemic stroke/Q.W. Zhang,X.X. Deng, X. Sun [et al.]// PLoS One. – 2013.- №8(11).- Р.80139.209.Zhang, Y. Early exercise protects the blood-brain barrier from ischemicbrain injury via the regulation of MMP-9 and occludin in rats/Y.
Zhang, P. Zhang,X. Shen [et al.]// Int J Mol Sci. – 2013.- №14(6).- Р.11096-11112.210.Zhao, G. Effects of moderate and high intensity exercise on T1/T2balance/G. Zhao, S. Zhou, A. Davie, Q. Su// Exerc Immunol Rev. – 2012.- №18.Р.98-114.211.Zhao, L.R. Environmental influence on brain-derived neurotrophic factormessenger RNA expression after middle cerebral artery occlusion in spontaneouslyhypertensive rats/L.R. Zhao, B. Mattsson, B.B.
Johansson// Neuroscience. – 2000.№97(1).- Р.177-184.129212.Zheng, Q. Exercise improves recovery after ischemic brain injury byinducing the expression of angiopoietin-1 and Tie-2 in rats/Q. Zheng, D. Zhu, Y.Bai [et al.]// Tohoku J Exp Med. – 2011.- №224(3).- Р.221-228.130.