Suppr超能文献

异常视网膜对应机制:斜视猫外侧上薛氏(LS)视觉区域感受野位置改变时双眼视的维持

Mechanism of anomalous retinal correspondence: maintenance of binocularity with alteration of receptive-field position in the lateral suprasylvian (LS) visual area of strabismic cats.

作者信息

Grant S, Berman N E

机构信息

Department of Anatomy and Developmental Biology, University College London, UK.

出版信息

Vis Neurosci. 1991 Sep;7(3):259-81. doi: 10.1017/s0952523800004077.

Abstract

We have examined the effects of rearing kittens with a unilateral convergent strabismus, induced surgically at 3 weeks of age, on the binocularity (ocular dominance) and receptive-field position of neurons in the motion-sensitive lateral suprasylvian (LS) area of cat extrastriate cortex. Data were compared to those obtained from area 17 in the same animals, and from the two areas of cortex in normal adult cats. Interocular alignment of the operated cats was assessed in alert adults using corneal reflex photography and during recording from the positions of retinal landmarks under paralysis. The strabismus magnitude in each operated cat was calculated by comparison with equivalent data from the normal animals. Strabismus always caused a major loss of binocularity in area 17. The remaining binocular neurons had receptive-field (RF) pairs arising from positions of normal correspondence in the two retinae and would thus have been responsive to different regions of visual space through the misaligned eyes in the alert animal. In area LS, the effects were dependent on the strabismus magnitude. In the group of four cats with pronounced strabismus (18-30 deg crossed), a loss of binocularity occurred in area LS equivalent in severity to that in area 17. The majority of the remaining binocular LS neurons possessed RF pairs in normal retinal correspondence and would thus, in the alert animal, have received spatially disparate visual input through the two eyes. This also occurred in three other cats with more moderate strabismus (11-15 deg crossed), although only a small breakdown in the binocularity of area LS was apparent. The group of cats with mild strabismus (less than or equal to 10 deg crossed) had normal proportions of binocular neurons in area LS. In three of these cats, the maintenance of binocularity was accompanied by shifts in RF position, with visual inputs arising from anomalous retinal locations. These shifts compensated, in part, for the strabismus angle present in each cat, so that most of the binocular LS neurons would have received inputs from regions of visual correspondence through the misaligned eyes when the animal was alert. Similar mechanisms could afford a basis for the binocular visual compensations that occur in humans with small-angle strabismus of early onset. If so, anomalous retinal correspondence in such individuals would have as a locus areas of extrastriate cortex with a role in motion perception, and would involve alterations to the neural substrate underlying normal binocular vision.

摘要

我们研究了在3周龄时通过手术诱导产生单侧会聚性斜视的小猫饲养方式,对猫纹外皮层运动敏感的外侧上薛氏回(LS)区域神经元的双眼性(眼优势)和感受野位置的影响。将数据与同一动物的17区以及正常成年猫的两个皮层区域的数据进行比较。使用角膜反射摄影在清醒成年猫中评估手术猫的两眼对齐情况,并在瘫痪状态下从视网膜标志位置进行记录时进行评估。通过与正常动物的等效数据比较,计算每只手术猫的斜视度数。斜视总是导致17区双眼性的严重丧失。其余的双眼神经元具有来自两眼正常对应位置的感受野(RF)对,因此在清醒动物中,通过未对齐的眼睛会对视觉空间的不同区域产生反应。在LS区域,影响取决于斜视度数。在四只斜视明显(交叉18 - 30度)的猫中,LS区域双眼性的丧失程度与17区相当。其余大多数双眼LS神经元具有正常视网膜对应关系的RF对,因此在清醒动物中,会通过两只眼睛接收空间上不同的视觉输入。在另外三只斜视程度较轻(交叉11 - 15度)的猫中也出现了这种情况,尽管LS区域双眼性的破坏仅很轻微。轻度斜视(交叉小于或等于10度)的猫组在LS区域中双眼神经元比例正常。在其中三只猫中,双眼性的维持伴随着RF位置的偏移,视觉输入来自异常视网膜位置。这些偏移部分补偿了每只猫存在的斜视角度,因此当动物清醒时,大多数双眼LS神经元会通过未对齐的眼睛从视觉对应区域接收输入。类似的机制可能为早发性小角度斜视患者发生的双眼视觉补偿提供基础。如果是这样,这些个体中的异常视网膜对应将以纹外皮层中在运动感知中起作用的区域为位点,并且将涉及对正常双眼视觉基础神经基质的改变。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验