Lan C T, Wen C Y, Tan C K, Ling E A, Shieh J Y
Department of Anatomy, College of Medicine, National Taiwan University, Taipei.
J Comp Neurol. 1996 Mar 11;366(3):406-15. doi: 10.1002/(SICI)1096-9861(19960311)366:3<406::AID-CNE3>3.0.CO;2-8.
The present study examined the synaptic organization of external cuneothalamic neurons and their relationships with primary afferents in the gerbil external cuneate nucleus (ECN) following an injection of horseradish peroxidase (HRP) into the anterodorsal cap of the ventrobasal thalamus in conjunction with a simultaneous injection of HRP into the contralateral brachial and cervical nerve plexuses. The thalamus-projecting neurons have been shown to be confined to the intermediate portion of the caudal half of the ECN at the light microscopic level (Lan et al., 1994c). In this study, HRP-labelled external cuneothalamic neurons were ultrastructurally characterized by their relatively small-sized soma bearing a variable number of somal spines. Their nucleus had a slightly indented contour with an eccentric nucleolus. The HRP-labelled somata were postsynaptic to many axon terminals, which were classified into round (Rs type; 53.0%), pleomorphic (Ps type; 32.7%), and flattened (Fs type; 14.3%) vesicle-containing boutons. The HRP-labelled dendritic elements were postsynaptic to a greater number of axon terminals, which were also classified into the round (Rd; 64.7%), pleomorphic (Pd; 25.2%), and flattened (Fd; 10.1%) type boutons. These presynaptic axonal boutons tended to synapse on distal and secondary dendrites of external cuneothalamic neurons. In the present simultaneous HRP labelling study, some of the primary afferent terminals made direct synaptic contacts with the dendrites of the external cuneothalamic neurons. In view of the multiple inputs onto the external cuneothalamic neurons, impinging particularly on their somata and secondary dendrites, it is suggested that the proprioceptive information reaching these neurons is intensively modulated and integrated before transmission ultimately to the cerebral sensorimotor cortex.
本研究通过将辣根过氧化物酶(HRP)注入腹侧基底丘脑的前背帽,并同时将HRP注入对侧臂丛和颈神经丛,研究了沙鼠外侧楔状核(ECN)中外侧楔丘脑神经元的突触组织及其与初级传入纤维的关系。在光学显微镜水平上,已显示丘脑投射神经元局限于ECN尾侧半的中间部分(Lan等人,1994c)。在本研究中,HRP标记的外侧楔丘脑神经元在超微结构上的特征是其胞体相对较小,带有数量不等的胞体棘。其细胞核轮廓略有凹陷,核仁偏心。HRP标记的胞体是许多轴突终末的突触后部位,这些轴突终末分为含圆形(Rs型;53.0%)、多形性(Ps型;32.7%)和扁平形(Fs型;14.3%)囊泡的终扣。HRP标记的树突成分是更多轴突终末的突触后部位,这些轴突终末也分为圆形(Rd;64.7%)、多形性(Pd;25.2%)和扁平形(Fd;10.1%)型终扣。这些突触前轴突终扣倾向于与外侧楔丘脑神经元的远端和二级树突形成突触。在本同时HRP标记研究中,一些初级传入终末与外侧楔丘脑神经元的树突形成直接突触联系。鉴于外侧楔丘脑神经元有多种输入,特别是作用于它们的胞体和二级树突,提示到达这些神经元的本体感觉信息在最终传递到大脑感觉运动皮层之前受到强烈的调制和整合。