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猕猴(食蟹猴)视杆细胞的光电流、噪声和光谱敏感性。

The photocurrent, noise and spectral sensitivity of rods of the monkey Macaca fascicularis.

作者信息

Baylor D A, Nunn B J, Schnapf J L

出版信息

J Physiol. 1984 Dec;357:575-607. doi: 10.1113/jphysiol.1984.sp015518.

Abstract

Visual transduction in rods of the cynomolgus monkey, Macaca fascicularis, was studied by recording membrane current from single outer segments projecting from small pieces of retina. Light flashes evoked transient outward-going photocurrents with saturating amplitudes of up to 34 pA. A flash causing twenty to fifty photoisomerizations gave a response of half the saturating amplitude. The response-stimulus relation was of the form 1-e-x where x is flash strength. The response to a dim flash usually had a time to peak of 150-250 ms and resembled the impulse response of a series of six low-pass filters. From the average spectral sensitivity of ten rods the rhodopsin was estimated to have a peak absorption near 491 nm. The spectral sensitivity of the rods was in good agreement with the average human scotopic visibility curve determined by Crawford (1949), when the human curve was corrected for lens absorption and self-screening of rhodopsin. Fluctuations in the photocurrent evoked by dim lights were consistent with a quantal event about 0.7 pA in peak amplitude. A steady light causing about 100 photoisomerizations s-1 reduced the flash sensitivity to half the dark-adapted value. At higher background levels the rod rapidly saturated. These results support the idea that dim background light desensitizes human scotopic vision by a mechanism central to the rod outer segments while scotopic saturation may occur within the outer segments. Recovery of the photocurrent after bright flashes was marked by quantized step-like events. The events had the properties expected if bleached rhodopsin in the disks occasionally caused an abrupt blockage of the dark current over about one-twentieth of the length of the outer segment. It is suggested that superposition of these events after bleaching may contribute to the threshold elevation measured psychophysically. The current in darkness showed random fluctuations which disappeared in bright light. The continuous component of the noise had a variance of about 0.03 pA2 and a power spectrum that fell to half near 3 Hz. A second component, consisting of discrete events resembling single-photon responses, was estimated to occur at a rate of 0.006 s-1. It is suggested that the continuous component of the noise may be removed from scotopic vision by a thresholding operation near the rod output.

摘要

通过记录从视网膜小块组织伸出的单个视杆细胞外段的膜电流,对食蟹猴(猕猴属)视杆细胞中的视觉转导进行了研究。光脉冲诱发瞬态外向光电流,饱和幅度高达34 pA。引起20至50次光异构化的光脉冲产生的响应幅度为饱和幅度的一半。响应 - 刺激关系呈1 - e - x形式,其中x为光脉冲强度。对暗光脉冲的响应通常峰值时间为150 - 250毫秒,类似于一系列六个低通滤波器的脉冲响应。根据十个视杆细胞的平均光谱敏感度,估计视紫红质的峰值吸收在491纳米附近。对视杆细胞的光谱敏感度与克劳福德(1949年)测定的人类暗视觉平均可见度曲线高度一致,前提是对人类曲线进行晶状体吸收和视紫红质自我屏蔽校正。暗光诱发的光电流波动与峰值幅度约为0.7 pA的量子事件一致。每秒引起约100次光异构化的稳定光使光脉冲敏感度降至暗适应值的一半。在更高背景水平下,视杆细胞迅速饱和。这些结果支持这样的观点,即暗光背景通过视杆细胞外段核心机制使人类暗视觉脱敏,而暗视觉饱和可能发生在外段内。强光脉冲后光电流的恢复以量子化的阶梯状事件为特征。这些事件具有预期的特性,即如果盘状结构中的漂白视紫红质偶尔导致外段长度约二十分之一范围内的暗电流突然阻断。有人认为,漂白后这些事件的叠加可能导致心理物理学测量的阈值升高。黑暗中的电流显示出随机波动,在强光下消失。噪声的连续成分方差约为0.03 pA2,功率谱在3 Hz附近降至一半。第二个成分由类似于单光子响应的离散事件组成,估计发生率为0.006 s -1。有人认为,通过视杆细胞输出端附近的阈值操作,可以从暗视觉中去除噪声的连续成分。

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