Fitzgerald Paul J, Lane John W, Thakur Pramodsingh H, Hsiao Steven S
Zanvyl Krieger Mind/Brain Institute, Department of Neuroscience, Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Neurosci. 2006 Jun 14;26(24):6485-95. doi: 10.1523/JNEUROSCI.5061-05.2006.
The detailed structure of multidigit receptive fields (RFs) in somatosensory cortical areas such as the SII region has not been investigated previously using systematically controlled stimuli. Recently (Fitzgerald et al., 2004), we showed that the SII region comprises three adjoining fields: posterior, central, and anterior. Here we characterize the RF structures of the 928 neurons that were reported in that study using a motorized oriented bar that was indented into the 12 finger pads of digits 2-5. Most (81%) of the neurons were responsive to the oriented bar stimuli, and 81% of those neurons had RFs that spanned multiple digits. Furthermore, the RFs varied greatly in size, shape, and complexity. Some RFs contained only excitatory finger pads, some contained only inhibitory pads, and some contained both types of pads. A subset of the neurons (23%) showed orientation tuning within one or more pads. The RFs spread across different digits more than within individual digits, and the responsive finger pads for a given neuron tended to cluster together within the hand. Distal and lateral finger pads were better represented than proximal and medial finger pads. Furthermore, neurons in the posterior, central, and anterior SII region fields contained different proportions of RF types. These results collectively indicate that most SII region neurons are selective for different stimulus forms either within single finger pads or across multiple pads. We hypothesize that these RFs represent the kernels underlying the representation of tactile shape.
体感皮层区域(如第二体感区,SII)中多位数感受野(RFs)的详细结构此前尚未通过系统控制的刺激进行研究。最近(菲茨杰拉德等人,2004年),我们发现SII区域由三个相邻的区域组成:后部、中部和前部。在此,我们使用一个电动定向棒对该研究中报告的928个神经元的感受野结构进行了表征,该定向棒压入第2至5指的12个指尖。大多数(81%)神经元对定向棒刺激有反应,其中81%的神经元感受野跨越多个手指。此外,感受野在大小、形状和复杂性上差异很大。一些感受野仅包含兴奋性指尖,一些仅包含抑制性指尖,还有一些同时包含这两种类型的指尖。一部分神经元(23%)在一个或多个指尖内表现出方向调谐。感受野在不同手指间的分布比在单个手指内更广泛,并且给定神经元的反应性指尖倾向于在手部内聚集在一起。远端和外侧指尖比近端和内侧指尖有更好的表征。此外,SII区域后部、中部和前部的神经元包含不同比例的感受野类型。这些结果共同表明,大多数SII区域神经元对单个指尖内或多个指尖间的不同刺激形式具有选择性。我们推测这些感受野代表了触觉形状表征的核心。