EchtelerSM, FayRR, PopperAN. Structure of the mammalian cochlea, in FayRR, PopperAN (eds): Comparative Hearing: Mammals. New York, Springer Verlag, 1994; 134–71.
2.
LimDJ. Functional structure of the organ of Corti: A review. Hearing Res1986; 22:117–46.
3.
SlepeckyNB. Structure of the mammalian cochlea, in DallosP, PopperAN, FayRR (eds): The Cochlea: Springer Handbook of Auditory Research. New York, Springer Verlag, 1996; 44–129.
4.
NielsenDW, SlepeckyNB. Stereocilia, in AltschulerRA, BobbinRP, HoffmanDW (eds): Neurobiology of Hearing: The Cochlea. New York, Raven Press, 1986; 23–46.
5.
PicklesJO, ComisSD, OsborneMP. Cross-links between stereo-cilia in the guinea pig cochlea. Hearing Res1984; 18:177–88.
6.
HackneyCM, FurnessDN, BenosDJ, Putative immunolocalization of the mechanoelectrical transduction channels in mammalian cochlear hair cells. Projec Royal Soc Lond B1992; 248:215–21.
7.
EybalinM.Neurotransmitters and neuromodulators of the mammalian cochlea. Physiol Rev1993; 73:309–73.
8.
SchwartzAM. Auditory nerve and spiral ganglion cells. Morphology and organization, in AltschulerRA, BobbinRP, HoffmanDW (eds): Neurobiology of Hearing: The Cochlea. New York, Raven Press, 1985; 271–82.
9.
SpoendlinH.The innervation of the cochlear receptor, MollerA (ed): Basic Mechanisms in Hearing. New York, Academic Press, 1983; 182–230.
10.
WarrWB. Organization of olivocochlear efferent systems in mammals, in WebsterDB, PopperAN, FayRR (eds): Mammalian Auditory Pathways: Neuroanatomy. New York, Springer Verlag, 1992; 410–48.
11.
BannisterLH, DodsonHC, AstburyAR, The cortical lattice: A highly ordered system of subsurface filaments in guinea pig cochlear outer hair cells. Prog Brain Res1988; 74:213–19.
12.
DielerR, Shehata-DielerWE, BrownellWE. Concomitant salicylate-induced alterations of outer hair cell subsurface cisternae and electromotility. J Neurocytol1991; 20:637–53.
13.
SlepeckyNB, LigottiP.Characterization of inner ear sensory hair cells after rapid-freezing and freeze-substitution. J Neurocytol1992; 21:374–81.
14.
EvansB.Fatal contractions: Ultrastructural and electromechanical changes in outer hair cells following transmembraneous electrical stimulation. Hear Res1990; 45:265–82.
15.
ArimaT, KuraokaA, ToriyamaR, Quick-freeze, deep-etch visualization of the “cytoskeletal spring” of cochlear outer hair cells. Cell Tiss Res1991; 263:91–7.
16.
ForgeA.Structural features of the lateral walls in mammalian cochlear outer hair cells. Cell Tiss Res1991; 265:473–83.
17.
HolleyMC, AshmoreJF. Spectrin, actin and the structure of the cortical lattice in mammalian cochlear outer hair cells. J Cell Sci1990; 96:283–91.
18.
NishidaY, FujimotoT, TakagiA, Fodrin is a constituent of the cortical lattice in outer hair cells of the guinea pig cochlea. Hear Res1993; 65:274–80.
19.
HolleyMC, AshmoreJF. On the mechanism of a high-frequency force generator in outer hair cells isolated from the guinea pig cochlea. Proc Royal Soc Lond B1988; 232:413–29.
20.
HolleyMC, KalinecF, KacharB.Structure of the cortical cytoskeleton in mammalian outer hair cells. J Cell Sci1992; 102:569–80.
SlepeckyNB, UlfendahlM.Evidence for calcium-binding proteins and calcium-dependent regulatory proteins in sensory cells of the organ of Corti. Hear Res1993; 70:73–84.
24.
KalinecF, HolleyMC, IwasaK, A membrane-based force generation mechanism in auditory sensory cells. Proc Natl Acad Sci USA1992; 89:8671–5.