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大鼠中投射至运动、感觉运动和视觉皮质区域的背侧和中缝核神经元的拓扑分布。

Topographical distribution of dorsal and median raphe neurons projecting to motor, sensorimotor, and visual cortical areas in the rat.

作者信息

Waterhouse B D, Mihailoff G A, Baack J C, Woodward D J

出版信息

J Comp Neurol. 1986 Jul 22;249(4):460-76, 478-81. doi: 10.1002/cne.902490403.

Abstract

The present study was conducted to examine the spatial organization of dorsal (DR) and median (MR) raphe neurons that project to rostrocaudally aligned areas of the rat cerebral cortex. An additional goal was to determine if individual DR cells that send efferents to forelimb sensorimotor or visual regions of the neocortex also send axon collaterals to forelimb (crus II) or visual (paraflocculus) areas of the cerebellum. Long-Evans hooded rats received unilateral pressure injections of horseradish peroxidase (HRP) in either motor (n = 4) or sensorimotor (n = 5) or visual (n = 4) cortex to determine the intranuclear location of DR and MR neurons that project to specific neocortical regions. Coronal sections (40-100 microns) through the pons and midbrain were examined by light microscopy after the tetramethyl benzidine reaction and neutral red counterstaining were carried out. The locations of retrogradely labeled cells were recorded relative to a three-dimensional biological coordinate system maintained by a computer linked to the light microscope. For double labeling studies, unilateral injections of fast blue and nuclear yellow were made in paired motor (sensorimotor cortex and crus II of the lateral cerebellum) or visual (cortical area 17 and paraflocculus) areas of the CNS. Coronal tissue sections (35 microns) were collected on coverslips and examined on a Leitz fluorescence microscope (wavelength = 365 nm). DR neurons labeled from cerebrocortical injections of HRP were concentrated in the rostral two-thirds of the nucleus. HRP-filled neurons were distributed such that individual groups of neurons projecting to motor, sensorimotor, or visual cortex were aligned in a partially overlapping, rostral to caudal array. In the dorsoventral dimension, retrogradely labeled cells were clustered in three distinct groupings such that neurons projecting to the motor, sensorimotor, and visual areas were concentrated in dorsal, intermediate, and ventral portions of the DR nucleus, respectively. For all cases, the majority of HRP-filled cells were positioned along the midline or displaced to the side of the nucleus that was ipsilateral to the cortical injection site. A small number of retrogradely labeled neurons were observed in the MR following injections in the motor cortex. Computer-assisted reconstruction of the neuroanatomical data facilitated the visualization of spatial relationships between groups of DR neocortical projection neurons.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

本研究旨在检测投射至大鼠大脑皮质头尾对齐区域的背侧中缝核(DR)和中缝正中核(MR)神经元的空间组织。另一个目标是确定向新皮质前肢感觉运动区或视觉区发出传出纤维的单个DR细胞是否也向小脑的前肢(小腿II)或视觉(旁绒球)区域发出轴突侧支。对Long-Evans有帽大鼠的运动皮质(n = 4)、感觉运动皮质(n = 5)或视觉皮质(n = 4)进行单侧辣根过氧化物酶(HRP)压力注射,以确定投射至特定新皮质区域的DR和MR神经元在核内的位置。在进行四甲基联苯胺反应和中性红复染后,通过光学显微镜检查经脑桥和中脑的冠状切片(40 - 100微米)。相对于与光学显微镜相连的计算机所维持的三维生物坐标系,记录逆行标记细胞的位置。对于双重标记研究,在中枢神经系统的配对运动区域(感觉运动皮质和外侧小脑的小腿II)或视觉区域(皮质17区和旁绒球)进行单侧快速蓝和核黄注射。将冠状组织切片(35微米)收集在盖玻片上,并在Leitz荧光显微镜(波长 = 365纳米)下检查。经脑皮质HRP注射标记的DR神经元集中在核的前三分之二。充满HRP的神经元分布使得投射至运动、感觉运动或视觉皮质的单个神经元组在头向尾的排列中部分重叠。在背腹维度上,逆行标记的细胞聚集成三个不同的组,使得投射至运动、感觉运动和视觉区域的神经元分别集中在DR核的背侧、中间和腹侧部分。在所有情况下,大多数充满HRP的细胞位于中线或向与皮质注射部位同侧的核侧移位。在运动皮质注射后,在MR中观察到少量逆行标记的神经元。神经解剖学数据的计算机辅助重建有助于可视化DR新皮质投射神经元组之间的空间关系。(摘要截断于400字)

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