PAD patterns of physiologically identified afferent fibres from the medial gastrocnemius muscle
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[1] J. Fitzsimons,et al. The effect on drinking in the rat of intravenous infusion of angiotensin, given alone or in combination with other stimuli of thirst , 1969, The Journal of physiology.
[2] W. Willis,et al. Excitability changes of terminal arborizations of single Ia and Ib afferent fibers produced by muscle and cutaneous conditioning volleys. , 1976, Journal of neurophysiology.
[3] D G Stuart,et al. Responses of Ia and spindle group II afferents to single motor-unit contractions. , 1980, Journal of neurophysiology.
[4] D. R. Curtis,et al. The effect of GABA on lumbar terminations of rubrospinal neurons in the cat spinal cord , 1984, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[5] L. Mendell. Properties and distribution of peripherally evoked presynaptic hyperpolarization in cat lumbar spinal cord , 1972, The Journal of physiology.
[6] J. Munson,et al. On the specificity of sensory reinnervation of cat skeletal muscle. , 1986, The Journal of physiology.
[7] P. Rudomín,et al. Effect of muscle and cutaneous afferent nerve volleys on excitability fluctuations of Ia terminals. , 1969, Journal of neurophysiology.
[8] A. Lundberg,et al. Reflex pathways from group II muscle afferents , 2004, Experimental Brain Research.
[9] R. Schmidt. Presynaptic inhibition in the vertebrate central nervous system. , 1971, Ergebnisse der Physiologie, biologischen Chemie und experimentellen Pharmakologie.
[10] O. Pompeiano,et al. Dorsal root potentials in the lumbar cord evoked from the vestibular system. , 1969, Archives italiennes de biologie.
[11] J. Eccles,et al. DEPOLARIZATION OF CENTRAL TERMINALS OF GROUP Ib AFFERENT FIBERS OF MUSCLE , 1963 .
[12] P Rudomin,et al. PAD and PAH response patterns of group Ia- and Ib-fibers to cutaneous and descending inputs in the cat spinal cord. , 1986, Journal of neurophysiology.
[13] The effect of GABA on the terminations of vestibulospinal neurons in the cat spinal cord , 1984, Brain Research.
[14] P. Matthews,et al. Mammalian muscle receptors and their central actions , 1974 .
[15] Inhibitory Action , 1906, Botanical Gazette.
[16] C. Hunt,et al. RELATION OF FUNCTION TO DIAMETER IN AFFERENT FIBERS OF MUSCLE NERVES , 1954, The Journal of general physiology.
[17] E. Jankowska,et al. The Effect of DOPA on the Spinal Cord 4. Depolarization Evoked in the Central Terminals of Contralateral Ia Afferent Terminals by Volleys in the Flexor Reflex Aflerents , 1966 .
[18] W D Willis,et al. Identification of muscle afferents which activate interneurons in the intermediate nucleus. , 1974, Journal of neurophysiology.
[19] E Jankowska,et al. A comparison of peripheral and rubrospinal synaptic input to slow and fast twitch motor units of triceps surae , 1970, The Journal of physiology.
[20] P. Harrison,et al. Primary afferent depolarization of central terminals of group II muscle afferents in the cat spinal cord. , 1989, The Journal of physiology.
[21] A. Lundberg,et al. The rubrospinal tract. III. Effects on primary afferent terminals , 2004, Experimental Brain Research.
[22] P. Harrison,et al. Sources of input to interneurones mediating group I non‐reciprocal inhibition of motoneurones in the cat. , 1985, The Journal of physiology.
[23] J. Ochoa,et al. Dorsal root reflexes , 1995 .
[24] A. G. Brown,et al. Organization of the spinal cord , 1964 .
[25] B. Holmqvist,et al. Differential supraspinal control of synaptic actions evoked by volleys in the flexion reflex afferents in alpha motoneurones. , 1961, Acta physiologica Scandinavica. Supplementum.
[26] P Rudomin,et al. Synaptic potentials of primary afferent fibers and motoneurons evoked by single intermediate nucleus interneurons in the cat spinal cord. , 1987, Journal of neurophysiology.
[27] J. Eccles,et al. Synaptic actions on motoneurones caused by impulses in Golgi tendon organ afferents , 1957, The Journal of physiology.
[28] A. Lundberg,et al. Inhibitory action from the flexor reflex afferents on transmission to Ia afferents. , 1965, Acta physiologica Scandinavica.
[29] P. Rudomín,et al. Identification of common interneurons mediating pre- and postsynaptic inhibition in the cat spinal cord. , 1984, Science.
[30] P. Harrison,et al. Organization of input to the interneurones mediating group I non‐reciprocal inhibition of motoneurones in the cat. , 1985, The Journal of physiology.
[31] W D Willis,et al. Depolarization of central terminals of Group I afferent fibres from muscle , 1962, The Journal of physiology.
[32] P. Rudomín,et al. Sites of action of segmental and descending control of transmission on pathways mediating PAD of Ia- and Ib-afferent fibers in cat spinal cord. , 1983, Journal of neurophysiology.
[33] E. Jankowska,et al. Convergence onto interneurons subserving primary afferent depolarization of group I afferents. , 1984, Journal of neurophysiology.
[34] J. Eccles,et al. Dorsal root reflexes of muscle Group I afferent fibres , 1961, The Journal of physiology.
[35] L. J. Goldberg,et al. Centrifugal dorsal root discharges induced by motoneurone activation , 1970, The Journal of physiology.
[36] A. Lundberg. SUPRASPINAL CONTROL OF TRANSMISSION IN REFLEX PATHS TO MOTONEURONES AND PRIMARY AFFERENTS. , 1964, Progress in brain research.
[37] Erik Christensson,et al. Different RNA Fractions during Cell Growth and Synchronous Division in Mass Cultures of Tetrahymena Pyriformis , 1962 .
[38] A. Lundberg,et al. The effect of DOPA on the spinal cord. 2. A pharmacological analysis. , 1966, Acta physiologica Scandinavica.
[39] I. Engberg,et al. Primary afferent depolarization evoked from the brain stem and the cerebellum. , 1966, Archives italiennes de biologie.
[40] J. Eccles,et al. Central pathways responsible for depolarization of primary afferent fibres , 1962, The Journal of physiology.
[41] R. Burke,et al. Supraspinal control of a short-latency cutaneous pathway to hindlimb motoneurons , 2004, Experimental Brain Research.
[42] C. Brooks,et al. Origin of the dorsal root reflex. , 1956, Journal of neurophysiology.
[43] I. Engberg,et al. Mechanisms involved in presynaptic depolarization of group I and rubrospinal fibers in cat spinal cord. , 1981, Journal of neurophysiology.
[44] E. Jankowska,et al. Common interneurones in reflex pathways from group 1a and 1b afferents of ankle extensors in the cat. , 1981, The Journal of physiology.
[45] Coppin Cm,et al. Properties of group I afferent fibres from semitendinosus muscle in the cat. , 1969 .