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猴子的外膝体纹状体外视觉。VII. 对比度敏感度函数。

Extrageniculostriate vision in the monkey. VII. Contrast sensitivity functions.

作者信息

Miller M, Pasik P, Pasik T

出版信息

J Neurophysiol. 1980 Jun;43(6):1510-26. doi: 10.1152/jn.1980.43.6.1510.

Abstract
  1. Psychophysical and electrophysiological experiments have indicated the importance of spatial frequency components and their respective contrasts and orientations for the recognition of patterns. It is in the striate cortex where these types of information first converge, a fact that lends support to the accepted crucial role of this structure in pattern discrimination. 2. Monkeys with total bilateral ablation of the striate cortex, however, retain a residual capacity for pattern discrimination and also can differentiate between a vertical and an oblique luminous bar. The present study explores their capacity for spatial frequency detection both as a function of contrast and, by extrapolation, at maximum contrast (visual acuity measure). 3. Monkeys were presented with a forced choice between a homogeneous target and a vertically oriented sinusoidal grating in a pulling-in apparatus. Stimuli were produced by the transillumination of transparencies at spatial frequencies of 0.5, 1.0, 2.0, 4.0, 8.0, 16, and 32 cycles/deg, in 0.1-log unit steps of contrast from 0.79 to 0.006. The stimuli subtended 8 degrees of visual angle and were matched for mean luminance at 20 cd/m2. After mastering the discrimination of one spatial frequency at the highest contrast, contrast thresholds were first estimated by a staircase technique, and then determined by the method of constant stimuli. The procedure was repeated for each spatial frequency before and after histologically verified total bilateral removal of striate cortex and partial damage to circumstriate cortices. 4. Discrimination at all spatial frequencies was mastered by all normal monkeys. Postoperatively, they could solve only problems with frequencies between 0.5 and 4.0 cycles/deg. 5. Contrast sensitivity (threshold-1) functions for normal and destriated monkeys have the characteristic inverted J shape. The high- and low-frequency limbs are related exponentially to spatial frequency, and the peak of the curve is about 2.0 cycles/deg. The dimensions of the functions, however, change significantly following the ablation. Sensitivity is depressed at all spatial frequencies. The mean "visuogram" indicates a 26-dB flat loss. 6. The mean high-frequency cutoff point is 43 cycle/deg preoperatively and 12 cycles/deg postoperatively, equivalent to 0.7' and 2.5' of arc, respectively. The latter value is not worse than 20/80 on the Snellen chart. 7. The variability of the response at each spatial frequency in the staircase method and the slope of the psychometric function derived from the method of constant stimuli provide a measure of "instability" and "precision," respectively, which are inversely related. Preoperatively, precision is significantly greater at high than at low spatial frequencies. Postoperatively, it is similar at all frequencies, and the values are lower than those determined preoperatively. 8. The results demonstrate that destriated monkeys can detect gratings, although to a lesser degree than normal animals...
摘要
  1. 心理物理学和电生理学实验表明,空间频率成分及其各自的对比度和方向对于模式识别至关重要。这些类型的信息首先在纹状皮质汇聚,这一事实支持了该结构在模式辨别中公认的关键作用。2. 然而,双侧纹状皮质完全切除的猴子仍保留模式辨别能力,并且还能区分垂直和倾斜的发光棒。本研究探讨了它们在空间频率检测方面的能力,该能力既是对比度的函数,通过外推,也是最大对比度(视力测量)时的函数。3. 在一个引入装置中,让猴子在均匀目标和垂直方向的正弦光栅之间进行强制选择。通过以0.1对数单位步长从0.79到0.006的对比度对透明片进行透射照明来产生刺激,空间频率分别为0.5、1.0、2.0、4.0、8.0、16和32周/度。刺激物所对视角为8度,平均亮度匹配为20坎德拉每平方米。在掌握了最高对比度下一种空间频率的辨别后,首先通过阶梯技术估计对比度阈值,然后通过恒定刺激法确定。在组织学证实双侧纹状皮质完全切除和纹周皮质部分损伤前后,对每个空间频率重复该过程。4. 所有正常猴子都掌握了所有空间频率的辨别。术后,它们只能解决频率在0.5至4.0周/度之间的问题。5. 正常猴子和去纹状皮质猴子的对比度敏感度(阈值的倒数)函数具有典型的倒J形。高频和低频部分与空间频率呈指数关系,曲线峰值约为2.0周/度。然而,切除后这些函数的参数发生了显著变化。所有空间频率下的敏感度都降低了。平均“视力图”显示有26分贝的平坦损失。6. 术前平均高频截止点为43周/度,术后为12周/度,分别相当于0.7分和2.5分的视角。后一个值在斯内伦视力表上不低于20/80。7. 阶梯法中每个空间频率处反应的变异性以及恒定刺激法得出的心理测量函数的斜率分别提供了“不稳定性”和“精度”的度量,二者呈反比关系。术前,高频处的精度显著高于低频处。术后,各频率处的精度相似,且数值低于术前测定值。8. 结果表明,去纹状皮质的猴子能够检测光栅,尽管程度低于正常动物……

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