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首页> 外文期刊>The Journal of Physiology >Dark adaptation recovery of human rod bipolar cell response kinetics estimated from scotopic b-wave measurements.
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Dark adaptation recovery of human rod bipolar cell response kinetics estimated from scotopic b-wave measurements.

机译:从暗视b波测量估计的人杆双极细胞反应动力学的黑暗适应性恢复。

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We recorded ganzfeld scotopic ERGs to examine the responses of human rod bipolar cells in vivo, during dark adaptation recovery following bleaching exposures, as well as during adaptation to steady background lights. In order to be able to record responses at relatively early times in recovery, we utilized a 'criterion response amplitude' protocol in which the test flash strength was adjusted to elicit responses of nearly constant amplitude. In order to provide accurate and unbiased measures of response kinetics, we utilized a curve-fitting procedure to fit a smooth function to the measured responses in the vicinity of the peak, thereby extracting both the time-to-peak and the amplitude of the responses. Following bleaching exposures, the responses exhibited both desensitization and accelerated kinetics. During early post-bleach recovery, the flash sensitivity and time-to-peak varied according to a power-law expression (with an exponent of 6), as found in the presence of steady background light. This light-like phenomenon, however, appeared to be set against the backdrop of a second, more slowly recovering 'pure' desensitization, most clearly evident at late post-bleach times. The post-bleach 'equivalent background intensity' derived from measurements of flash sensitivity faded initially with an S2 slope of approximately 0.24 decades min(-1), and later as a gentle S3 tail. When calculated from kinetics, the results displayed only the S2 slope. While the recovery of rod bipolar cell response kinetics can be described accurately by a declining level of opsin in the rods, the sensitivity of these cells is reduced further than expected by this mechanism alone.
机译:我们记录了ganzfeld暗室ERGs,以检查体内人双极杆双极细胞在漂白暴露后的暗适应恢复过程以及对稳定背景光的适应过程中的反应。为了能够在恢复的相对较早的时间记录响应,我们使用了“标准响应幅度”协议,其中调整了测试闪光强度以引起接近恒定幅度的响应。为了提供准确而公正的响应动力学测量方法,我们使用了曲线拟合程序,将平滑函数拟合到峰附近的测量响应,从而提取了响应时间和响应峰。漂白暴露后,反应既表现出脱敏作用,又表现出加速的动力学作用。在漂白后的早期恢复过程中,在存在稳定背景光的情况下,闪光灵敏度和达到峰值的时间会根据幂律表达式(指数为6)而变化。然而,这种类似光的现象似乎是在第二次,更缓慢地恢复“纯”脱敏的背景下发生的,最明显的是在漂白后后期。漂白后的“等效背景强度”源自闪光敏感度的测量,其S2斜率大约为0.24十分钟min(-1)时逐渐消失,后来变成柔和的S3尾部。从动力学计算时,结果仅显示S2斜率。虽然棒中视蛋白水平的下降可以准确地描述棒双极细胞反应动力学的恢复,但这些细胞的敏感性比单独通过该机制预期的要低得多。

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