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猫外侧上薛氏视觉皮层中的刺激选择性与功能组织

Stimulus selectivity and functional organization in the lateral suprasylvian visual cortex of the cat.

作者信息

Blakemore C, Zumbroich T J

机构信息

University Laboratory of Physiology, Oxford.

出版信息

J Physiol. 1987 Aug;389:569-603. doi: 10.1113/jphysiol.1987.sp016673.

Abstract
  1. We have examined the responses of cells in the postero-medial and postero-lateral lateral suprasylvian areas (p.m.l.s./p.l.l.s.) in the medial and lateral banks of the middle suprasylvian sulcus of the anaesthetized, paralysed cat. 2. Visual responses were assessed qualitatively (for projected spot and bar stimuli) and quantitatively (for drifting, high-contrast gratings of optimum spatial and temporal frequencies, but varying in orientation and direction of drift). There was excellent agreement between qualitative and quantitative estimates of preferred direction of motion. 3. Comparison of responses to motion in the preferred direction and the opposite direction confirmed that the percentage of units with strong directional preference is higher in this region of cortex than in other cortical and subcortical visual structures so far investigated. 4. Cells were comparatively well 'tuned' for the direction of motion of a grating: on average the half-width at half-amplitude for the variation in response around the principal preferred direction was 23.2 deg for p.m.l.s. and 25.3 deg for p.l.l.s., thus falling within the range found for complex cells in area 17. In this and other aspects of their direction selectivity, neurones in p.m.l.s. and p.l.l.s. were very similar to each other. 5. Quantitative analysis of the direction-response functions revealed them frequently to be more complex than previously described. For many cells there were subsidiary response peaks in addition to the main peak at the principal preferred direction. Often there was an accessory peak 180 deg from the optimum direction (i.e. directional preference was incomplete), but there was also a clear tendency for responses to be specifically elevated for directions orthogonal to the principal direction. 6. Tests with stationary, contrast-modulated gratings of the optimum spatial frequency, but differing in orientation, revealed that neurones responsive to such stimuli (though limited to about half the population) were orientation selective, their preferred orientations for stationary and drifting gratings being very similar. 7. The functional architecture of the lateral suprasylvian cortex was studied by means of single and multiple penetrations at different angles to the cortical surface: in most penetrations in p.m.l.s. the preferred directions of cells tended to shift progressively in small steps across the cortex, at a maximum rate of about 360 deg mm-1. However, there were occasional 180 deg differences between neighbouring recording sites or between cells recorded at different depths within a single radial column.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们研究了麻醉、麻痹猫大脑中薛氏沟内侧和外侧壁后内侧和后外侧上薛氏区(p.m.l.s./p.l.l.s.)细胞的反应。2. 视觉反应通过定性(针对投射光斑和光条刺激)和定量(针对具有最佳空间和时间频率、但漂移方向和取向不同的高对比度漂移光栅)评估。在运动偏好方向的定性和定量估计之间存在极好的一致性。3. 对偏好方向和相反方向运动反应的比较证实,与迄今研究的其他皮质和皮质下视觉结构相比,该皮质区域中具有强烈方向偏好的神经元比例更高。4. 细胞对光栅运动方向的“调谐”相对较好:平均而言,p.m.l.s. 中围绕主要偏好方向的反应变化半高宽为23.2度,p.l.l.s.为25.3度,因此落在17区复杂细胞的范围内。在方向选择性的这一方面和其他方面,p.m.l.s.和p.l.l.s.中的神经元彼此非常相似。5. 对方向反应函数的定量分析表明,它们通常比先前描述的更为复杂。对于许多细胞,除了主要偏好方向的主峰外,还有辅助反应峰。通常在与最佳方向相差180度处有一个辅助峰(即方向偏好不完全),但对于与主要方向正交的方向,反应也有明显的特异性升高趋势。6. 用具有最佳空间频率、但取向不同的静止、对比度调制光栅进行测试,发现对这种刺激有反应的神经元(尽管仅限于约一半的群体)具有取向选择性,它们对静止和漂移光栅的偏好取向非常相似。7. 通过以不同角度对皮质表面进行单重和多重穿刺研究了外侧上薛氏皮质的功能结构:在p.m.l.s.的大多数穿刺中,细胞的偏好方向往往在皮质上以小步长逐渐移动,最大速率约为360度/毫米。然而,相邻记录位点之间或单个放射状柱内不同深度记录的细胞之间偶尔存在180度的差异。(摘要截断于400字)

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