Yanagida T, Tomita T
Jpn J Ophthalmol. 1984;28(3):215-21.
The field potentials induced by intraretinal injection of K+-free Ringer's were studied in the isolated frog retina. The response to K+-free Ringer's was a positive potential, which was maximum near the depth of injection, and decreased in both directions, proximally and distally. The receptor side was made positive relative to the vitreal side, irrespective of the depth of injection, excepting for the innermost retinal layer bordering the inner limiting membrane. The response at the site of injection and the transretinal potential were dependent upon the depth of injection, being largest when the K+-free Ringer's was injected in or near the inner plexiform layer. Thus, the field potentials induced by K+-free Ringer's were similar in depth profile but opposite in polarity to those induced by high K+-Ringer's. The results were consistent with the previous conclusion that the proximal end region of the Müller cell is far more permeable to K+ than any other part of the cell.
在离体青蛙视网膜中研究了视网膜内注射无钾林格液所诱发的场电位。对无钾林格液的反应是一个正电位,在注射深度附近最大,并向近端和远端两个方向降低。除了与内界膜相邻的最内层视网膜外,无论注射深度如何,感受器侧相对于玻璃体侧均呈正电位。注射部位的反应和跨视网膜电位取决于注射深度,当无钾林格液注射到内网状层或其附近时最大。因此,无钾林格液诱发的场电位在深度分布上与高钾林格液诱发的场电位相似,但极性相反。这些结果与先前的结论一致,即米勒细胞的近端区域对钾的通透性远高于细胞的其他任何部分。