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体外培养兔角膜内皮细胞电生理特性的初步研究

7(4):485-495.

[8] Watsky MA, Rae JL. Resting voltage measurements of the rabbit corneal endothelium using patch-current clamp techniques[J]. Invest Ophthalmol Vis Sci,1991,32(1):106-111.

[9] Yang D, MacCallum DK, Ernst SA, et al. Expression of the inwardly rectifying K+ channel Kir2.1 in native bovine corneal endothelial cells[J]. Invest Ophthalmol Vis Sci,2003,44(8):3511-3519.

[10] Watsky MA, Cooper K, Rae JL. Transient outwardly rectifying potassium channel in the rabbit corneal endothelium[J]. J Membr Biol,1992,128(2):123-132.

[11] Rae JL, Shepard AR. Kv3.3 potassium channels in lens epithelium and corneal endothelium[J]. Exp Eye Res,2000,70(3): 339-348.

[12] Yang D, Sun F, Thomas LL, et al. Molecular cloning and expression of an inwardly rectifying K+ channel from bovine corneal endothelial cells[J]. Invest Ophthalmol Vis Sci,2000,41(10):2936-2944.

[13] Watsky MA. Nonselective cat

ion channel activation during wound healing in the corneal endothelium[J]. Am J Physiol,1995,268(5pt1):C1179-C1185.

[14] Coroneo MT, Helbig H, Korbmacher C, et al. Effect of hypotonic memedia on the membrane voltage of cultured bovine endothelial cells[J]. Curr Eye Res,1989,8(9):891-899.

[15] Hodson SC, Wigham. A near-zero membrane potential in transporting corneal endothelial cells of rabbit[J]. Physiol Lond, 1989,412(3):365-374.

[16] Bowman KA, Elijah RD, Cheeks KE, et al. Intracellular potential and pH of rabbit corneal endothelial cells[J]. Curr Eye Res,1984,3(8):991-1000.

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