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大鼠运动皮层外侧无颗粒区的传入连接

Afferent connections of the lateral agranular field of the rat motor cortex.

作者信息

Donoghue J P, Parham C

出版信息

J Comp Neurol. 1983 Jul 10;217(4):390-404. doi: 10.1002/cne.902170404.

DOI:10.1002/cne.902170404
PMID:6886060
Abstract

Retrograde axonal transport techniques were used to identify the afferent connections of the lateral agranular field (AG1) of the rat frontal cortex. This cytoarchitectonically distinct cortical field forms the bulk of the primary motor cortex (MI) as defined by intracortical microstimulation studies (Donoghue and Wise, '82). Following injections of horseradish peroxidase (HRP) or wheat germ agglutinin conjugated to HRP into AG1, retrogradely labeled cells are found in the forebrain, thalamus, and brainstem. Within the cerebral cortex labeled neurons are mainly present in the first somatic sensory area (SI), the second somatic sensory area (SII), and the medial agranular field, which lies medial and rostral to AG1. In SI, labeled cells are found primarily in a cytoarchitecturally distinct region called the dysgranular field of SI. Labeled neurons are present in layers II and III, Va, and the deepest part of layer VI in this field and in SII. Labeled cells are also present in layers Va and VI of the densely granular field of SI, which is the part of SI that is strongly activated by cutaneous inputs. Commissural inputs to AG1 arise from layers II-VI of the contralateral AG1 and thalamic inputs arise from the ventrolateral, ventromedial, posterior medial, and central lateral nuclei. Additional afferent fibers originate from neurons in the basal forebrain, the ventral thalamus, the midbrain raphé nuclei, and the locus coeruleus. This combination of inputs to AG1 from somatic sensory and frontal cortical fields, thalamic motor centers, and several other subcortical areas implies that AG1 forms a subdivision of sensorimotor cortex that is important in centrally directed movements as well as those that are guided by somatic sensory feedback.

摘要

采用逆行轴突运输技术来确定大鼠额叶皮质外侧无颗粒区(AG1)的传入连接。如皮质内微刺激研究所定义的那样(多诺霍和怀斯,1982年),这个在细胞结构上不同的皮质区域构成了初级运动皮质(MI)的主体部分。将辣根过氧化物酶(HRP)或与HRP结合的麦胚凝集素注入AG1后,在前脑、丘脑和脑干中发现了逆行标记的细胞。在大脑皮质内,标记的神经元主要存在于第一躯体感觉区(SI)、第二躯体感觉区(SII)以及位于AG1内侧和嘴侧的内侧无颗粒区。在SI中,标记的细胞主要位于一个在细胞结构上不同的区域,即SI的颗粒减少区。在这个区域以及SII的II层和III层、Va层和VI层最深部发现了标记的神经元。在SI的密集颗粒区的Va层和VI层也存在标记的细胞,SI的这一部分被皮肤输入强烈激活。AG1的连合输入来自对侧AG1的II - VI层,丘脑输入来自腹外侧核、腹内侧核、后内侧核和中央外侧核。额外的传入纤维起源于基底前脑、腹侧丘脑、中脑缝核和蓝斑核中的神经元。AG1从躯体感觉和额叶皮质区域、丘脑运动中枢以及其他几个皮质下区域接收的这种输入组合表明,AG1构成了感觉运动皮质的一个细分区域,在中枢指导的运动以及由躯体感觉反馈引导的运动中都很重要。

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