Biomedical Engineering Reference
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[21] T.J. Jacob, M.M. Civan, Role of ion channels in aqueous humor formation, Am. J. Physiol. 271 (1996) C703.
[22] G.H. Jacobs, Primate photopigments and primate color vision, Proc. Natl. Acad. Sci U.S.A 93 (1-23-1996) 577.
[23] M. Johnson, K. Erickson, Mechanisms and routes of aqueous humor drainage, (2000) 2577.
[24] M.C. Johnson, R.D. Kamm, The role of Schlemm's canal in aqueous outflow from the human eye, Invest.
Ophthalmol. Vis. Sci. 24 (1983) 320.
[25] O. Maepea, A. Bill, Pressures in the juxtacanalicular tissue and Schlemm's canal in monkeys, Exp. Eye Res.
54 (1992) 879.
[26] R.T. Mathias, J.L. Rae, G.J. Baldo, Physiological properties of the normal lens, Physiol. Rev. 77 (1997) 21.
[27] J.L. Miller, A. Picones, J.I. Korenbrot, Differences in transduction between rod and cone photoreceptors: an
exploration of the role of calcium homeostasis, Curr. Opin. Neurobiol. 4 (1994) 488.
[28] W.G. Owen, Ionic conductances in rod photoreceptors, Annu. Rev. Physiol. 49 (1987) 743.
[29] C.D. Phelps, M.F. Armaly, Measurement of episcleral venous pressure, Am. J. Ophthalmol. 85 (1978) 35.
[30] J.L. Rae, R.T. Mathias, R.S. Eisenberg, Physiological role of the membranes and extracellular space with the
ocular lens, Exp. Eye Res. 35 (1982) 471.
[31] E.M. Schottenstein, Intraocular Pressure in: R. Ritch, M.B. Shields, T. Krupin (Eds.), The Glaucomas, CV
Mosby Co., St. Louis, 1989, 301.
[32] H. Wassle, B.B. Boycott, Functional architecture of the mammalian retina, Physiol. Rev. 71 (1991) 447.
[33] S.M. Wu, Synaptic transmission in the outer retina, Annu. Rev. Physiol. 56 (1994) 141.
[34] S. Zhao, L.J. Rizzolo, C.J. Barnstable, Differentiation and transdifferentiation of the retinal pigment epithe-
lium, Int. Rev. Cytol. 171 (1997) 225.
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