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远程模式反转可降低金鱼视网膜的近端负反应。

Remote pattern reversal reduces the proximal negative response of the goldfish retina.

作者信息

Olsen B T, Seim T, Valberg A

出版信息

J Physiol. 1982 Feb;323:463-72. doi: 10.1113/jphysiol.1982.sp014085.

DOI:10.1113/jphysiol.1982.sp014085
PMID:7097582
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1250369/
Abstract
  1. Using the eyecup preparation, proximal negative responses (PNR) to small test spots of different irradiance were recorded with (a) a stationary peripheral black and white grating surrounding the test spot, and (b) with contrast reversal of the same grating. In the latter case, the PNR-amplitude was reduced by a magnitude that was dependent on the frequency of contrast reversal. The reduction was maximum (approximately 50%) for a frequency of 8-10 Hz. 2. The attenuation was constant for PNR-amplitudes greater than half the maximum value, but increased for smaller responses. The fact that the intensity-response curve was not merely shifted towards higher values on the log intensity axis, indicates that the suppression was an effect neither of stray light nor of adaptive processes in the distal retina. 3. The effect of a single shift of the grating (by half a cycle) on the PNR was studied at different delays between grating shift and test spot presentation. Strong suppression of the PNR was found for delays between 100 ms (shift preceding test spot) and -50 ms (test spot preceding grating shift), with a maximum at about 30 ms. 4. This long-range effect of peripheral transient stimulation is of inhibitory nature, and probably related to Werblin's windmill effect.
摘要
  1. 使用眼杯标本,记录对不同辐照度的小测试光斑的近端负反应(PNR),(a)在测试光斑周围有一个固定的外周黑白光栅,以及(b)同一光栅的对比度反转。在后一种情况下,PNR幅度降低的程度取决于对比度反转的频率。对于8 - 10Hz的频率,降低幅度最大(约50%)。2. 对于大于最大值一半的PNR幅度,衰减是恒定的,但对于较小的反应,衰减会增加。强度 - 反应曲线并非仅仅在对数强度轴上向更高值移动,这一事实表明这种抑制既不是由杂散光引起的,也不是由视网膜远端的适应性过程引起的。3. 在光栅移动和测试光斑呈现之间的不同延迟下,研究了光栅单次移动(半个周期)对PNR的影响。在100毫秒(光栅移动先于测试光斑)到 - 50毫秒(测试光斑先于光栅移动)之间的延迟下发现了对PNR的强烈抑制,在约30毫秒时达到最大值。4. 外周瞬态刺激的这种长程效应具有抑制性质,可能与韦尔布林的风车效应有关。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/695f/1250369/564a19142ba9/jphysiol00686-0468-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/695f/1250369/564a19142ba9/jphysiol00686-0468-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/695f/1250369/564a19142ba9/jphysiol00686-0468-a.jpg

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本文引用的文献

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RECEPTIVE FIELDS OF OPTIC TRACT AXONS AND LATERAL GENICULATE CELLS: PERIPHERAL EXTENT AND BARBITURATE SENSITIVITY.视束轴突和外侧膝状体细胞的感受野:外周范围和巴比妥类药物敏感性
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Change of organization in the receptive fields of the cat's retina during dark adaptation.暗适应过程中猫视网膜感受野的组织变化
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The lateral effect of oscillation of peripheral luminance gratings on the foveal increment threshold.
周边亮度光栅振荡对中央凹增量阈值的侧向效应。
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Continuous movement of remote patterns and shift-effect of cat retinal ganglion cells.猫视网膜神经节细胞的远程模式连续运动和移位效应。
Exp Brain Res. 1980;40(2):229-32. doi: 10.1007/BF00237541.
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Some evidence concerning the physiological basis of the periphery effect in the cat's retina.一些关于猫视网膜周边效应生理基础的证据。
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S-potentials from colour units in the retina of fish (Cyprinidae).鱼类(鲤科)视网膜中颜色单元的S电位。
J Physiol. 1966 Aug;185(3):536-55. doi: 10.1113/jphysiol.1966.sp008001.
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Proximal negative response of frog retina.
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Sensitization and centre-surround antagonism in Necturus retina.美西螈视网膜中的致敏作用与中心-外周拮抗作用。
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