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Ashmore, J (1987). A fast motile response in guinea pig outer hair cells: the cellular basis of cochlear amplifier. J. Physiol 388, 323-347.

Canlon, B., Brundin, L. and Flock, \201 (1988). Acoustic stimulation causes tonotopic alteration in the length of isolated outer hair cells from guinea pig hearing organ. Proc. Nat. Acad. Sci. USA 85, 7033-7035.[Abstract/Free Full Text]

Canlon, B. and Brundin, L (1991). Mechanically-induced length changes of isolated outer hair cells are metabolically dependent. Hear. Res 53, 7-16.[Medline]

Crawford, A. C. and Fettiplace, R (1985). The mechanical properties of ciliary bundles of turtle cochlear hair cells. J. Physiol 364, 359-379.

Decory, L., Hiel, H. and Aran, J.-M (1991). In vivo noise exposure alters the in vitro motility and viability of outer hair cells. Hear. Res 52, 81-88.[Medline]

Dulon, D., Aran, J. M. and Schacht, J (1988). Potassium-depolarization induces motility in isolated outer hair cells by an osmotic mechanism. Hear. Res 32, 123-130.[Medline]

Dulon, D., Zajic, G. and Schacht, J (1989). Aminoglycoside antibiotics impair calcium entry but not viability and motility in isolated outer hair cells. J. Neurosci. Res 24, 338-346.[Medline]

Dulon, D., Zajic, G. and Schacht, J (1990). Increasing intracellular free calcium induced circumferential contractions in isolated cochlear outer hair cells. J. Neurosci 10, 1388-1397.[Abstract]

Evans, B., Hallworth, R. and Dallos, P (1991). Outer hair cell motility: The sensitivity and vulnerability of the DC component. Hear. Res 52, 288-304.[Medline]

Flock, \201., Flock B. and Ulfendahl, M (1986). Mechanisms of movement in outer hair cell and a possible structural basis. Arch. Otorhinolaryngol 243, 83-90.[Medline]

Kalinec, F., Holley, M., Iwasa, K. H., Lim, D. and Kachar, B (1992). A membrane-based force generation mechanism in auditory sensory cells. Proc. Nat. Acad. Sci. USA 89, 8671-8675.[Abstract/Free Full Text]

Holley, M. C. and Ashmore, J. F (1988). A cytoskeletal spring in cochlear outer hair cells. Nature 335, 635-637.[Medline]

Kachar, B., Brownell, W. E., Altschuler, R. and Fex, J (1986). Electrokinetic shape changes of cochlear outer hair cells. Nature 322, 365-367.[Medline]

Mountain, D. C (1980). Changes in endolymphatic potential and crossed olivocochlear bundle stimulation alter cochlear mechanics. Science 210, 71-72.[Abstract/Free Full Text]

Neely, S. T. and Kim, D. O (1986). A model for active elements in cochlear biomechanics. J. Acoust. Soc. Am 79, 1472-1480.[Medline]

Pujol, R., Zajic, G., Dulon, D., Raphael, Y., Altschuler, R. A. and Schacht, J (1991). First appearance and development of motile properties in outer hair cells from guinea pig cochlea. Hear. Res 57, 129-141.[Medline]

Saito, K (1983). Fine structure of the sensory epithelium of guinea pig organ of Corti: Subsurface cisternae and lamellar bodies in the outer hair cells. Cell Tiss.Res 229, 467-481.[Medline]

Santos-Sacchi, J (1992). On the frequency limit and phase of outer hair cell motility: Effects of the membrane filter. J. Neurosci 12, 1906-1916.[Abstract]

Schacht, J. and Zenner, H. P (1986). The phosphoinositide cascade in isolated outer hair cells: possible role as second messenger for motile responses. Hear. Res 22, 94-.

Wit, H. P. and Nijdam, H. F (1984). Relationship of gross cochlear potentials to hair cell pathology in the waltzing guinea pig. Hear. Res 15, 159-172.[Medline]

Zenner, H. P (1986). Motile responses in outer hair cells. Hear. Res 22, 83-90.[Medline]


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