Suppr超能文献

虎螈视网膜视杆细胞和视锥细胞中光诱导的电阻变化。

Light-induced resistance changes in retinal rods and cones of the tiger salamander.

作者信息

Lasansky A, Marchiafava P L

出版信息

J Physiol. 1974 Jan;236(1):171-91. doi: 10.1113/jphysiol.1974.sp010429.

Abstract
  1. The electrical properties of retinal rods and cones of the larval tiger salamander were investigated with intracellular electrodes, and the cells identified by means of dye injections.2. Both types of photoreceptors are hyperpolarized by illumination. Following stimulation with brief flashes of dim light, rod responses show a slower time course than cone responses; with bright flashes, rod responses can be recognized because of their long recovery time.3. Values of input resistance were derived from the voltage displacement induced by constant current pulses in darkness or at the peak of the photoresponse. The input resistance following illumination was also calculated from the effect of steady polarizing currents on the amplitude of the photoresponse.4. In darkness, the input resistance of the rod cells is time- and voltage-dependent, but the voltage-current relations of most cells have a linear region which includes the physiological limits of membrane potential. At the peak of the photoresponse, the input resistance (slope of the linear region of the v-i relations) is decreased.5. Cone cells show approximately linear v-i relations. As reported by previous authors, illumination increases the input resistance.6. These results support the current view that the cone photoresponse is the consequence of a reduction in the permeability of channels which in darkness shunt the membrane. In rods, however, it appears that the main effect of illumination is to increase the permeability of the membrane to ions for which the equilibrium potential is more negative than the membrane potential in darkness.
摘要
  1. 用细胞内电极研究了幼体虎螈视网膜视杆细胞和视锥细胞的电特性,并通过染料注射对细胞进行了鉴定。

  2. 两种类型的光感受器在光照下都会发生超极化。用昏暗光的短暂闪光刺激后,视杆细胞的反应比视锥细胞的反应具有更慢的时间进程;对于明亮闪光,视杆细胞的反应因其长恢复时间而得以识别。

  3. 输入电阻值由黑暗中或光反应峰值时恒定电流脉冲引起的电压位移得出。光照后的输入电阻也根据稳定极化电流对光反应幅度的影响来计算。

  4. 在黑暗中,视杆细胞的输入电阻与时间和电压有关,但大多数细胞的电压 - 电流关系有一个线性区域,该区域包括膜电位的生理极限。在光反应峰值时,输入电阻(v - i关系线性区域的斜率)降低。

  5. 视锥细胞显示出近似线性的v - i关系。如先前作者所报道,光照会增加输入电阻。

  6. 这些结果支持了当前的观点,即视锥细胞的光反应是黑暗中使膜分流的通道通透性降低的结果。然而,在视杆细胞中,光照的主要作用似乎是增加膜对离子的通透性,这些离子的平衡电位比黑暗中的膜电位更负。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7387/1350833/eeef42803a61/jphysiol00941-0199-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验