Rao S C, Toth L J, Sur M
Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139, USA.
J Comp Neurol. 1997 Oct 27;387(3):358-70. doi: 10.1002/(sici)1096-9861(19971027)387:3<358::aid-cne3>3.3.co;2-v.
Feature maps in the cerebral cortex constitute orderly representations of response features created within the cortex; an example is the mapping of orientation-selective neurons in visual cortex. We have compared the properties of orientation maps in area 17 of cats and ferrets, obtained by optical imaging of intrinsic signals. Orientation maps in both species contain a quasi-periodic distribution of iso-orientation domains that are organized into a lattice of pinwheels. However, the spatial density of orientation domains and of pinwheels in ferret area 17 is nearly twice that in cat area 17. The ferret map also contains more discontinuities, or fractures, where orientation changes abruptly. The size of orientation domains scales with interdomain spacing, so that the ratio of the two is approximately the same in both species. Consistent with this finding, the orientation tuning width of individual pixels is similar in the two. The magnitude of orientation preference, however, is much lower in ferret compared to cat. The greater incidence of fractures in ferret appears to be due to proportionately greater overlap between domains of different orientations, particularly along fracture lines that link pinwheel centers. We hypothesize that a key determinant of orientation maps, the relationship between orientation domain size and spacing, expresses an anatomical link between sizes of thalamocortical arbors and horizontal intracortical connections in area 17.
大脑皮层中的特征图构成了皮层内产生的反应特征的有序表征;一个例子是视觉皮层中方向选择性神经元的映射。我们比较了通过内在信号光学成像获得的猫和雪貂17区方向图的特性。两个物种的方向图都包含等方向域的准周期性分布,这些等方向域被组织成风车状晶格。然而,雪貂17区方向域和风车状结构的空间密度几乎是猫17区的两倍。雪貂的图谱还包含更多的不连续性或断裂,即方向突然变化的地方。方向域的大小与域间间距成比例,因此两个物种中两者的比例大致相同。与此发现一致,两个物种中单个像素的方向调谐宽度相似。然而,与猫相比,雪貂的方向偏好幅度要低得多。雪貂中骨折发生率较高似乎是由于不同方向的域之间比例上更大的重叠,特别是沿着连接风车状中心的骨折线。我们假设,方向图的一个关键决定因素,即方向域大小与间距之间的关系,表达了丘脑皮质树突大小与17区水平皮质内连接大小之间的解剖学联系。