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06: Anatomy of receptors

Bridgman CF (1968) The structure of tendon organs in the cat: a proposed mechanism for responding muscle tension. Anat Rec 162: 209-220

Brisben AJ, Hsiao SS, Johnson KO (1999) Detection of vibration transmitted through an object grasped in the hand. J Neurophysiol 81: 1548-1558

Bruce MF (1980) The relation of tactile thresholds to histology in the fingers of erderly people. J Neurol Neurosurg Psychiat 43: 730-734

Cahusac PM, Senok SS (2006) Metabotropic glutamate receptor antagonists selectively enhance responses of slowly adapting type I mechanoreceptors. Synapse 59: 235-242

Cahusac PM, Senok SS, Hitchcock IS, Genever PG, Baumann KI (2005) Are unconventional NMDA receptors involved in slowly adapting type I mechanoreceptor responses? Neurosci 133: 763-773

Cazzato G, Walton JN (1968) The pathology of the muscle spindle. A study of biopsy material in various muscular and neuromuscular diseases. J Neurol Sci 7: 15-70

Chambers MR, Andres KH, Duering Mv, Iggo A (1972) The structure and function of the slowly adapting type II mechanoreceptor in hairy skin. Quart J Exp Physiol 57: 417-445

Düring von M, Andres KH (1969) Zur Feinstruktur der Muskelspindel von Mammalia. Anat Anz 124: 566-573

Fagan BM, Cahusac PMB (2001) Evidence for glutamate receptor mediated transmission at mechanoreceptors in the skin. Neuroreport 12: 341-347

Fukami Y, Wilkinson RS (1977) Responses of isolated Golgi tendon organs of the cat. J Physiol 265: 673-689

Goodwin AW, Youl BD, Zimmerman NP (1981) Single quickly adapting mechanoreceptive afferents innervating monkey glabrous skin: response to two vibrating probes. J Neurophysiol 45: 227-242

Haeberle H, Fujiwara M, Chuang J, Medina MM, Panditrao MV, Bechstedt S, Howard J, Lumpkin EA (2004) Molecular profiling reveals synaptic release machinery in Merkel cells. Proc Natl Acad Sci 101: 14503-14508

Halata Z (1993) Sensory innervation of the hairy skin (light- and electronmicroscopic study. J Invest Dermatol 101: 75S-81S

Halata Z, Grim M, Baumann KI (2003) Friedrich Sigmund Merkel and his “Merkel cell”, morphology, development, and physiology: Review and new results. Anat Rec A 271: 225-239

Ide C, Kumagai K, Hayashi S (1985) Freeze-fracture study of mechanoreceptive digital corpuscle of mice. J Neurocytol 14: 1037-1052

Iggo A, Muir AR (1969) The structure and function of a slowly adapting touch corpuscle in hairy skin. J Physiol 200: 763-796

Johansson RS, Landstrom U, Lundstrom R (1982) Responses of mechanoreceptive afferent units in the glabrous skin of the human hand to sinusoidal skin displacements. Brain Res 244: 17-25

Ogawa H (1996) The Merkel cell as a possible mechanoreceptor cell. Prog Neurobiol 49: 317-334

Proske U, Wise AK, Gregory JE (2000) The role of muscle receptors in the detection of movements. Prog Neurobiol 60: 85-96

Robertson JD (1960) Electron microscopy of the motor end-plate and the neuromuscular spindle. Am J Phys Med 39: 1-43

Schimrigk K, Ruttinger H (1980) The touch corpuscles of the plantar surface of the big toe. Eur Neurol 19: 49-60

Senok SS, Baumann KI (1997) Functional evidence for calcium-induced calcium release in isolated rat vibrissal Merkel cell mechanoreceptors. J Physiol 500: 29-37

Steer JC, Horney FD (1968) Evidence for passage of cerebrospinal fluid among spinal nerves. Can Med Assoc J 98: 71-74

Stuart DG, Goslow GE, Mosher CG, Reinking RM (1970) Stretch responsiveness of Golgi tendon organs. Exp Brain Res 10: 463-476

Vallbo AB, Johansson RS (1984) Properties of cutaneous mechanoreceptors in the human hand related to touch sensation. Hum Neurobiol 3: 3-14

Zelena J (ed) (1994) Nerves and mechanoreceptors. Chapmann & Hall, London, New York, Tokyo