Phelan K D, Falls W M
Department of Anatomy, Michigan State University, East Lansing 48824-1316.
Somatosens Mot Res. 1989;6(5-6):477-96. doi: 10.3109/08990228909144688.
The cytology and synaptic organization of the insular trigeminal-cuneatus lateralis (iV-Cul) nucleus was examined in the rat. In addition, the ultrastructural morphology and synaptic connectivity of anterogradely labeled spinal afferent axons terminating in iV-Cul were examined following injection of horseradish peroxidase (HRP) into the cervical spinal cord. The uniformity of the ultrastructural features of iV-Cul neurons supports the presence of a homogeneous neuronal population. The most prominent feature of the iV-Cul neuropil is the presence of numerous interdigitating astrocytic processes, which extensively isolate neuronal somata and processes. iV-Cul contains a heterogeneous population of axonal endings that can be separated into three categories, depending upon whether they contain predominantly spherical-shaped agranular synaptic vesicles (R endings), predominantly pleomorphic-shaped agranular synaptic vesicles (P endings), or a heterogeneous population of dense-core vesicles (DC endings). The R endings represent the majority of axonal endings in iV-Cul and establish asymmetrical axodendritic and axospinous synaptic contacts, primarily along the distal portions of the dendritic tree. P endings establish symmetrical axosomatic, axodendritic, and axospinous synaptic contacts and exhibit a more generalized distribution along the somadendritic tree. DC terminals establish asymmetrical axodendritic synaptic contacts with distal dendritic processes and are the least frequently observed endings in the iV-Cul neuropil. Numerous synaptic glomeruli, exhibiting a single large central R bouton that establishes multiple axodendritic or axospinous synapses, characterize the iV-Cul neuropil. Axoaxonic synapses are conspicuously absent from the iV-Cul neuropil and glomeruli. The anterograde HRP labeling of spinal afferent axons that terminate in iV-Cul indicates that the terminals along these fibers are of the R type and that they are engaged predominantly in synaptic glomeruli. The results of this study indicate that the synaptic organization of iV-Cul is distinctly different from that of neighboring somatosensory nuclei, and supports the recent suggestion that this nucleus should be considered a separate precerebellar spinal relay nucleus in the lateral medulla.
对大鼠脑岛三叉神经外侧楔束核(iV-Cul)的细胞形态学和突触组织进行了研究。此外,在将辣根过氧化物酶(HRP)注入颈脊髓后,检查了终止于iV-Cul的顺行标记脊髓传入轴突的超微结构形态和突触连接性。iV-Cul神经元超微结构特征的一致性支持了均一神经元群体的存在。iV-Cul神经毡最显著的特征是存在大量相互交错的星形胶质细胞突起,这些突起广泛地分隔神经元胞体和突起。iV-Cul包含异质性的轴突终末群体,根据其主要含有球形无颗粒突触小泡(R终末)、主要含有多形性无颗粒突触小泡(P终末)还是含有异质性的致密核心小泡群体(DC终末),可分为三类。R终末占iV-Cul轴突终末的大多数,并主要沿着树突树的远端部分建立不对称的轴-树突和轴-棘突触联系。P终末建立对称的轴-体、轴-树突和轴-棘突触联系,并沿胞体-树突树呈现更广泛的分布。DC终末与远端树突突起建立不对称的轴-树突突触联系,是在iV-Cul神经毡中最少见的终末。许多突触小球的特征是有一个大的中央R终扣,它建立多个轴-树突或轴-棘突触,这是iV-Cul神经毡的特点。iV-Cul神经毡和突触小球中明显没有轴-轴突触。终止于iV-Cul的脊髓传入轴突的顺行HRP标记表明,这些纤维的终末属于R型,并且它们主要参与突触小球的形成。本研究结果表明,iV-Cul的突触组织与相邻的躯体感觉核明显不同,并支持最近的观点,即该核应被视为延髓外侧一个独立的小脑前脊髓中继核。