Braitenberg V, Braitenberg C
Biol Cybern. 1979 Aug 1;33(3):179-86. doi: 10.1007/BF00337296.
The optimal direction of lines in the visual field to which neurons in the visual cortex respond changes in a regular way when the recording electrode progresses tangentially through the cortex (Hubel and Wiesel, 1962). It is possible to reconstruct the field of orientations from long, sometimes multiple parallel penetrations (Hubel and Wiesel, 1974; Albus, 1975) by assuming that the orientations are arranged radially around centers. A method is developed which makes it possible to define uniquely the position of the centers in the vicinity of the electrode track. They turn out to be spaced at distances of about 0.5 mm and may be tentatively identified with the positions of the giant cells of Meynert.
当记录电极沿切线方向穿过视皮层时,视皮层中神经元做出反应的视野内线条的最佳方向会以规则的方式发生变化(休伯尔和威塞尔,1962年)。通过假设方向围绕中心呈放射状排列,有可能从长的、有时是多个平行的穿透中重建方向场(休伯尔和威塞尔,1974年;阿尔布斯,1975年)。开发了一种方法,该方法可以唯一地定义电极轨迹附近中心的位置。结果发现它们的间距约为0.5毫米,并且可以初步认定为迈内特巨细胞的位置。