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猫后内侧外侧上薛氏回皮层中神经元对空间和时间频率处理的传入基础:去除17、18和19区的影响

Afferent bases of spatial- and temporal-frequency processing by neurons in the cat's posteromedial lateral suprasylvian cortex: effects of removing areas 17, 18, and 19.

作者信息

Guido W, Tong L, Spear P D

机构信息

Department of Psychology, University of Wisconsin, Madison 53706.

出版信息

J Neurophysiol. 1990 Nov;64(5):1636-51. doi: 10.1152/jn.1990.64.5.1636.

Abstract
  1. We investigated whether spatial- and temporal-frequency processing by neurons in the cat's posteromedial lateral suprasylvian (PMLS) extrastriate cortex depends on inputs from ipsilateral areas 17, 18, and 19 (visual cortex; VC) or occurs in parallel with those cortical areas. 2. Single neurons were recorded in PMLS cortex of normal adult cats and adult cats that had ipsilateral VC removed within 24 h before recording. Receptive-field properties were characterized, and responses to sine-wave gratings of different spatial frequencies, contrasts, and temporal frequencies were measured and Fourier analyzed. 3. As in previous studies, removing inputs from VC led to a reduction in the proportion of direction-selective PMLS cells. In addition there were statistically significant reductions in response amplitude and variability, although signal-to-noise ratios were unchanged. Contrast sensitivity also was reduced at all spatial frequencies. Spatial resolution was reduced slightly; however, this reduction appears to be secondary to the overall reduction in response amplitude and sensitivity. 4. The shape of the spatial-frequency contrast-sensitivity functions and the distribution of optimal spatial frequencies were unaffected by removing inputs from VC. In addition, once response threshold was reached, the slope of the contrast-response function (contrast gain) at the optimal spatial frequency was similar for PMLS cells in normal cats and cats with a VC lesion. 5. When tested at the optimal spatial frequency, temporal-frequency bandwidths, high and low temporal-frequency cutoffs, and optimal temporal frequencies were similar for PMLS cells in normal cats and cats with VC removed. 6. The results thus indicate that inputs from VC are important for the elaboration of direction selectivity and affect response amplitude and contrast sensitivity among PMLS neurons. However, visual-cortical inputs have little or no influence on spatial- and temporal-frequency processing by PMLS neurons. These properties depend on inputs from other cortical areas or the thalamus and are processed in parallel with areas 17, 18, and 19.
摘要
  1. 我们研究了猫的后内侧外侧上薛氏回(PMLS)纹外皮层神经元的空间和时间频率处理是否依赖于来自同侧17区、18区和19区(视觉皮层;VC)的输入,或者是否与这些皮层区域并行发生。2. 在正常成年猫以及在记录前24小时内切除同侧VC的成年猫的PMLS皮层中记录单个神经元。对感受野特性进行了表征,并测量了对不同空间频率、对比度和时间频率的正弦波光栅的反应,并进行了傅里叶分析。3. 与之前的研究一样,去除来自VC的输入导致方向选择性PMLS细胞的比例降低。此外,尽管信噪比不变,但反应幅度和变异性在统计学上有显著降低。所有空间频率下的对比敏感度也降低了。空间分辨率略有降低;然而,这种降低似乎是反应幅度和敏感度整体降低的继发结果。4. 去除来自VC的输入不会影响空间频率对比敏感度函数的形状和最佳空间频率的分布。此外,一旦达到反应阈值,正常猫和患有VC损伤的猫的PMLS细胞在最佳空间频率下的对比反应函数斜率(对比增益)相似。5. 在最佳空间频率下进行测试时,正常猫和切除VC的猫的PMLS细胞的时间频率带宽、高时间频率截止和低时间频率截止以及最佳时间频率相似。6. 因此,结果表明来自VC的输入对于方向选择性的细化很重要,并影响PMLS神经元之间的反应幅度和对比敏感度。然而,视觉皮层输入对PMLS神经元的空间和时间频率处理几乎没有影响。这些特性依赖于来自其他皮层区域或丘脑的输入,并与17区、18区和19区并行处理。

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