Cohen S M
Acta Neurobiol Exp (Wars). 1972;32(2):211-33.
The anterodorsal head of the caudate nucleus is the recipient of efferent projections from the dorsolateral prefrontal cortex while the tail of the caudate receives fibers originating in inferotemporal cortex. In order to investigate whether anatomically related members of these two systems are also functionally related, monkeys were trained on a delayed successive visual discrimination task. Electrical stimulation was administered during varied portions of individual trials to determine when in each trial performance was most disturbed as a function of the structure stimulated. Comparisons of stimulation effects allowed for examination of both functional dissociation and functional equivalence. Performance was maximally impaired when a 2 sec train of stimulation was applied to the principal sulcus region of dorsolateral prefrontal cortex or to the anterodorsal head of the caudate nucleus early during the delay or was delivered to posterior inferotemporal cortex or the tail of the caudate during cue presentation. No significant differences were seen between stimulation performance curves drawn for two members of each anatomically related system. Thus it appears that the anatomical systems may be functionally dissociated while the anatomically related structures within these systems show a functional equivalence; however the nature of this equivalence is uncertain. The theoretical functional relationship of the cortical-caudate pairs is also considered.
尾状核的前背侧头部是背外侧前额叶皮质传出投射的接受者,而尾状核的尾部则接收起源于颞下皮质的纤维。为了研究这两个系统在解剖学上相关的部分在功能上是否也相关,对猴子进行了延迟连续视觉辨别任务的训练。在各个试验的不同时间段施加电刺激,以确定在每个试验中,随着所刺激结构的不同,何时性能受到的干扰最大。通过比较刺激效果,可以检验功能分离和功能等效性。当在延迟早期对背外侧前额叶皮质的主沟区域或尾状核的前背侧头部施加2秒的刺激序列,或者在提示呈现期间将刺激传递到颞下皮质后部或尾状核的尾部时,性能会受到最大程度的损害。在为每个解剖学相关系统的两个部分绘制的刺激性能曲线之间没有观察到显著差异。因此,似乎解剖学系统可能在功能上是分离的,而这些系统内解剖学相关的结构表现出功能等效性;然而,这种等效性的确切性质尚不确定。还考虑了皮质 - 尾状核配对的理论功能关系。