Cavada C, Goldman-Rakic P S
Section of Neuroanatomy, Yale University School of Medicine, New Haven, Connecticut 06510.
J Comp Neurol. 1989 Sep 22;287(4):422-45. doi: 10.1002/cne.902870403.
We have examined the circuitry connecting the posterior parietal cortex with the frontal lobe of rhesus monkeys. HRP-WGA and tritiated amino acids were injected into subdivisions 7m, 7a, 7b, and 7ip of the posterior parietal cortex, and anterograde and retrograde label was recorded within the frontal motor and association cortices. Our main finding is that each subdivision of parietal cortex is connected with a unique set of frontal areas. Thus, area 7m, on the medial parietal surface, is interconnected with the dorsal premotor cortex and the supplementary motor area, including the supplementary eye field. Within the prefrontal cortex, area 7m's connections are with the rostral sector of the frontal eye field (FEF), the dorsal bank of the principal sulcus, and the anterior bank of the inferior arcuate sulcus (Walker's area 45). In contrast, area 7a, on the posterior parietal convexity, is not linked with premotor regions but is heavily interconnected with the rostral FEF in the anterior bank of the superior arcuate sulcus, the dorsolateral prefrontal convexity, the rostral orbitofrontal cortex, area 45, and the fundus and adjacent cortex of the dorsal and ventral banks of the principal sulcus. Area 7b, in the anterior part of the posterior parietal lobule, is interconnected with still a different set of frontal areas, which include the ventral premotor cortex and supplementary motor area, area 45, and the external part of the ventral bank of the principal sulcus. The prominent connections of area 7ip, in the posterior bank of the intraparietal sulcus, are with the supplementary eye field and restricted portions of the ventral premotor cortex, with a wide area of the FEF that includes both its rostral and caudal sectors, and with area 45. All frontoparietal connections are reciprocal, and although they are most prominent within a hemisphere, notable interhemispheric connections are also present. These findings provide a basis for a parcellation of the classically considered association cortex of the frontal lobe, particularly the cortex of the principal sulcus, into sectors defined by their specific connections with the posterior parietal subdivisions. Moreover, the present findings, together with those of a companion study (Cavada and Goldman-Rakic: J. Comp. Neurol. this issue) have allowed us to establish multiple linkages between frontal areas and specific limbic and sensory cortices through the posterior parietal cortex. The networks thus defined may form part of the neural substrate of parallel distributed processing in the cerebral cortex.
我们研究了恒河猴后顶叶皮质与额叶之间的连接通路。将辣根过氧化物酶-小麦胚凝集素(HRP-WGA)和氚标记氨基酸注入后顶叶皮质的7m、7a、7b和7ip亚区,并在额叶运动皮质和联合皮质内记录顺行和逆行标记。我们的主要发现是,顶叶皮质的每个亚区都与一组独特的额叶区域相连。因此,位于顶叶内侧表面的7m区与背侧运动前皮质和辅助运动区相互连接,包括辅助眼区。在额叶皮质内,7m区与额叶眼区(FEF)的嘴侧部分、中央沟的背侧缘以及下弓形沟的前缘(沃克45区)相连。相比之下,位于后顶叶凸面的7a区与运动前区没有联系,但与上弓形沟前缘的嘴侧FEF、背外侧额叶凸面、嘴侧眶额皮质、45区以及中央沟背侧和腹侧缘的底部及相邻皮质有大量相互连接。位于后顶叶小叶前部的7b区与另一组不同的额叶区域相互连接,包括腹侧运动前皮质和辅助运动区、45区以及中央沟腹侧缘的外侧部分。位于顶内沟后缘的7ip区的显著连接是与辅助眼区和腹侧运动前皮质的受限部分、包括嘴侧和尾侧部分的FEF的广泛区域以及45区。所有额顶连接都是相互的,尽管它们在一个半球内最为显著,但也存在明显的半球间连接。这些发现为将传统上认为的额叶联合皮质,特别是中央沟皮质,根据其与后顶叶亚区的特定连接划分为不同区域提供了基础。此外,本研究结果与一项配套研究(卡瓦达和戈德曼-拉基奇:《比较神经学杂志》本期)的结果一起,使我们能够通过后顶叶皮质在额叶区域与特定边缘皮质和感觉皮质之间建立多种联系。如此定义的网络可能构成大脑皮质并行分布式处理的神经基质的一部分。