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Spatial summation in human cone mechanisms from 0° to 20° in the superior retina

机译:视网膜上端从0°到20°的人体锥体机制的空间总和

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摘要

The maximum area of complete spatial summation (i.e., Ricco’s area) for human short-wavelength-sensitive-(S-) and long-wavelength-sensitive- (L-) cone mechanisms was measured psychophysically at the fovea and at 1.5°, 4°, 8°, and 20° along the vertical meridian in the superior retina. Increment thresholds were measured for three observers by a temporal two-alternative forced-choice procedure. Test stimuli ranging from −0.36 to 4.61 log area (min2) were presented on concentric 12.3° adapting and auxiliary fields, which isolated either an S- or an L-cone mechanism on the plateau of its respective threshold versus intensity function. Test flash durations were 50 and 10 ms for the S- and L-cone mechanisms, respectively. The data indicate that, from 0° to 20°, Ricco’s area increases monotonically for the L-cone mechanism, is variable for the S-cone mechanism, and is larger for the S-cone mechanism than for the L-cone mechanism for essentially all retinal locations. This pattern of results most likely reflects differences in ganglion cell density and changes in neural convergence with retinal eccentricity.
机译:对人的短波敏感(S-)和长波敏感(L-)圆锥体机制的完整空间求和的最大面积(即里科面积)在心理上在中央凹和1.5°处测量,4沿视网膜上垂直子午线的角度分别为°,8°和20°。通过三个时间交替的强制选择程序为三个观察者测量了增量阈值。在同心12.3°适应场和辅助场上给出了范围为-0.36至4.61对数范围(min 2 )的测试刺激,这些场在其各自的平台上隔离了S或L锥机制阈值与强度函数。对于S型和L型锥体,测试闪光持续时间分别为50毫秒和10毫秒。数据表明,从0°到20°,Ricco的面积对于L-圆锥体机理单调增加,对于S-圆锥体机理而言是可变的,并且对于S-圆锥体机理而言,其本质上大于L-圆锥体机理。所有视网膜位置。这种结果模式很可能反映了神经节细胞密度的差异以及视网膜偏心率神经融合的变化。

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