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猫视觉皮层17区和18区神经元的时空对比敏感度

Spatial and temporal contrast sensitivity of neurones in areas 17 and 18 of the cat's visual cortex.

作者信息

Movshon J A, Thompson I D, Tolhurst D J

出版信息

J Physiol. 1978 Oct;283:101-20. doi: 10.1113/jphysiol.1978.sp012490.

Abstract
  1. We have examined the spatial and temporal tuning properties of 238 cortical neurones, recorded using conventional techniques from acutely prepared anaesthetized cats. We determined spatial and temporal frequency tuning curves using sinusoidal grating stimuli presented to each neurone's receptive field by a digital computer on a cathode ray tube. 2. We measured tuning curves either by determining response amplitude as a function of spatial or temporal frequency, or by measuring contrast sensitivity (the inverse of the contrast of the grating that just elicited a detectable response). The two measures give very similar tuning curves in all cases. 3. We recorded from 184 neurones in area 17; of these 156 had receptive fields within 5 degrees of the area centralis. The range of preferred spatial frequency for these neurones was 0.3--3 c/deg, and their spatial frequency tuning band widths varied from 0.7 to 3.2 octaves at half-amplitude. The most common band width was roughly 1.3 octaves. Simple and complex cells in area 17 did not differ in their distributions of preferred spatial frequency, although complex cells were, on average, slightly less selective for spatial frequency than simple cells. 4. We recorded from fifty-four neurones from area 18, and performed several experiments in which we recorded from corresponding portions of both area 17 and area 18 in the same electrode penetration. Neurones in area 18 preferred spatial frequencies that were, on average, one third as high as those preferred by area 17 neurones at the same retinal eccentricity. Thus the range of preferred spatial frequency in area eighteen cells having receptive fields within 5 deg of the area centralis was between less than 0.1 and 0.5 c/deg. The distributions of optimum spatial frequency in the two areas were practically non-overlapping at eccentricities as high as 15 deg, the greatest eccentricity we examined. Neurones in area 18 were about as selective for spatial frequency as were neurones in area 17. 5. We determined temporal frequency tuning characteristics for some neurones from each area, using gratings that moved steadily across the screen. Neurones from area 17 all responded well to low temporal frequencies, and less well to higher frequencies (in excess of, usually, 2 or 4 Hz). In contrast, neurones recorded from area 18 sometimes had similar tuning properties, but more commonly showed a pronounced reduction in response as the temporal frequency was moved either above or below some optimum value (usually 2--8 Hz). 6. We conclude from these results that areas 17 and 18 act in parallel to process different aspects of the visual information relayed from the retina via the lateral geniculate complex. Some or all of the differences between the areas may be attributable to the predominance of Y cell input to area 18 and the predominance of X cell input to area 17...
摘要
  1. 我们使用传统技术,从急性制备的麻醉猫身上记录了238个皮层神经元,研究了它们的空间和时间调谐特性。我们通过数字计算机在阴极射线管上向每个神经元的感受野呈现正弦光栅刺激,来确定空间和时间频率调谐曲线。2. 我们通过确定作为空间或时间频率函数的响应幅度,或者通过测量对比敏感度(刚好引发可检测响应的光栅对比度的倒数)来测量调谐曲线。在所有情况下,这两种测量方法给出的调谐曲线非常相似。3. 我们从17区的184个神经元进行了记录;其中156个的感受野在中央凹5度范围内。这些神经元的最佳空间频率范围是0.3 - 3周/度,它们的空间频率调谐带宽在半幅度时从0.7到3.2倍频程不等。最常见的带宽约为1.3倍频程。17区的简单细胞和复杂细胞在最佳空间频率分布上没有差异,尽管复杂细胞平均而言对空间频率的选择性略低于简单细胞。4. 我们从18区的54个神经元进行了记录,并进行了几项实验,在同一电极穿刺中从17区和18区的相应部分进行记录。在相同视网膜偏心度下,18区的神经元偏好的空间频率平均只有17区神经元偏好频率的三分之一。因此,在中央凹5度范围内有感受野的18区细胞的最佳空间频率范围在小于0.1到0.5周/度之间。在高达15度(我们研究的最大偏心度)的偏心度下,两个区域的最佳空间频率分布实际上没有重叠。18区的神经元对空间频率的选择性与17区的神经元相当。5. 我们使用在屏幕上稳定移动的光栅,确定了每个区域一些神经元的时间频率调谐特性。17区的神经元对低时间频率都有良好反应,对较高频率(通常超过2或4赫兹)反应较差。相比之下,从18区记录的神经元有时具有类似的调谐特性,但更常见的是,当时间频率高于或低于某个最佳值(通常为2 - 8赫兹)时,反应会明显降低。6. 我们从这些结果得出结论,17区和18区并行运作,处理从视网膜经外侧膝状体复合体中继的视觉信息的不同方面。两个区域之间的一些或所有差异可能归因于Y细胞输入在18区占主导,而X细胞输入在17区占主导……

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[On the structure and segmentation of the cortical center of vision in the cat].[关于猫视觉皮层中枢的结构与分区]
Arch Psychiatr Nervenkr Z Gesamte Neurol Psychiatr. 1962;203:212-34. doi: 10.1007/BF00352744.
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