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灵长类 Cajal 间质核的解剖学与生理学 I. 传出投射

Anatomy and physiology of the primate interstitial nucleus of Cajal I. efferent projections.

作者信息

Kokkoroyannis T, Scudder C A, Balaban C D, Highstein S M, Moschovakis A K

机构信息

Department of Basic Sciences, University of Crete, Greece.

出版信息

J Neurophysiol. 1996 Feb;75(2):725-39. doi: 10.1152/jn.1996.75.2.725.

Abstract
  1. The efferent projections of the interstitial nucleus of Cajal (NIC) were studied in the squirrel monkey after iontophoretic injections of biocytin and Phaseolus Vulgaris leucoagglutinin into the NIC. To ensure the proper placement of the tracer, the same pipettes were used to extracellularly record the discharge pattern of NIC neurons. 2. Three projection systems of the NIC were distinguished: commissural (through the posterior commissure), descending, and ascending. 3. The posterior commissure system gave rise to dense terminal fields in the contralateral NIC, the oculomotor nucleus, and the trochlear nucleus. 4. The descending system of NIC projections deployed dense terminal fields in the ipsilateral gigantocellular reticular formation and the paramedian reticular formation of the pons, as well as in the ventromedial and commissural nuclei of the first two spinal cervical segments. It also gave rise to moderate or weak terminal fields in the vestibular complex, the nucleus prepositus hypoglossi, the inferior olive, and the magnocellular reticular formation, as well as cell groups scattered along the paramedian tracts in the pons and the pontine and medullary raphe. 5. The ascending system of NIC projections gave rise to dense terminal fields in the ipsilateral mesencephalic reticular formation and the zona incerta as well as moderate or weak terminal fields in the ipsilateral centromedian and parafascicular thalamic nuclei. It also provided dense bilateral labeling of the rostral interstitial nucleus of the medial longitudinal fasciculus and the fields of Forel, and moderate or weak bilateral labeling of the mediodorsal, central medial, and central lateral nuclei of the thalamus. 6. Models of saccade generation that rely on feedback from the velocity-to-position integrators and include the superior colliculus in their local feedback loop are contradicted because no fibers originating from the NIC traveled to the superior colliculus to deploy terminal fields. 7. Consistent with its morphological and functional diversity, these data indicate that the primate NIC sends signals to a multitude of targets implicated in the control of eye and head movements.
摘要
  1. 在松鼠猴中,通过向 Cajal 间质核(NIC)离子电泳注射生物胞素和菜豆白细胞凝集素,研究了 NIC 的传出投射。为确保示踪剂的正确放置,使用相同的移液管在细胞外记录 NIC 神经元的放电模式。2. 区分出 NIC 的三个投射系统:连合(通过后连合)、下行和上行。3. 后连合系统在对侧 NIC、动眼神经核和滑车神经核中产生密集的终末场。4. NIC 投射的下行系统在同侧巨细胞网状结构和脑桥旁正中网状结构以及颈髓前两个节段的腹内侧核和连合核中形成密集的终末场。它还在前庭复合体、舌下前置核、下橄榄核和大细胞网状结构以及沿脑桥旁正中束和脑桥及延髓中缝散布的细胞群中产生中等或较弱的终末场。5. NIC 投射的上行系统在同侧中脑网状结构和未定带中产生密集的终末场,在同侧中央中核和束旁丘脑核中产生中等或较弱的终末场。它还对内侧纵束的嘴侧间质核和 Forel 区进行密集的双侧标记,对丘脑的背内侧核、中央内侧核和中央外侧核进行中等或较弱的双侧标记。6. 依赖速度到位置积分器的反馈并在其局部反馈回路中包括上丘的扫视生成模型受到反驳,因为没有源自 NIC 的纤维到达上丘以形成终末场。7. 与其形态和功能的多样性一致,这些数据表明灵长类动物的 NIC 向参与眼球和头部运动控制的众多靶点发送信号。

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