The silent period in the stretch response of ia-activated dorsal spino-cerebellar tract neurons to sinusoidal muscle stretch in cats
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Computer Science,Biotechnology
Link
http://link.springer.com/content/pdf/10.1007/BF00318087.pdf
Reference24 articles.
1. Eysel, U.Th.: Computer simulation of the impulse patterns of muscle spindle afferents. Kybernetik8, 171–179 (1971)
2. Goodwin, G.M., Hulliger, M., Matthews, P.B.C.: The effect of fusimotor stimulation during small amplitude stretching on the frequency-response of the primary ending of the mammalian muscle spindle. J. Physiol. (London)253, 175–206 (1975)
3. Grüsser, O.J., Kröller, J.: Responses of dorsal spinocerebellar tract neurons to signals from muscle spindle afferents. In: Progress in Brain Research, Vol. 50. Reflex control of posture and movement. Granit, R., Pompeiano, O. (eds.), pp. 91–104. Elsevier/North-Holland 1979
4. Grüsser, O.J., Thiele, B.: Reaktionen primärer und sekundärer Muskelspindelafferenzen auf sinusförmige mechanische Reizung. I. Variation der Sinusfrequenz. Pflügers Arch.300, 161–184 (1968)
5. Gustafsson, B., Zangger, P.: Effect of repetitive activation on the afterhyperpolarization in dorsal spinocerebellar tract neurons. J. Physiol. (London)275, 303–319 (1978)
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3. Band-limited white noise stimulation and reverse correlation analysis in the prediction of impulse responses of encoder models;Biological Cybernetics;1992-07
4. Activity Patterns of Spinocerebellar Neurons during Normal Locomotion;Neurobiology of Vertebrate Locomotion;1986
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