Simmons D D, Liberman M C
Eaton-Peabody Laboratory, Massachusetts Eye and Ear Infirmary, Boston 02114.
J Comp Neurol. 1988 Apr 1;270(1):145-54. doi: 10.1002/cne.902700112.
Outer spiral fibers (OSFs) were retrogradely labeled with injections of horseradish peroxidase. After the peripheral arborization patterns were reconstructed at the light microscopic level (Simmons and Liberman, '88), restricted regions of selected fibers were analyzed via electron-microscopic reconstruction of serial sections. The ultrastructural data in the present study suggested that the contact between the outer hair cell (OHC) and the terminal swellings of OSFs corresponds to the afferent synapse described in numerous other ultrastructural studies. The en passant swellings that contacted OHCs also appeared to be points of synaptic contact. However, en passant synapses were not always associated with a swelling of the OSF at the point of contact: thus, the light-microscopic reconstructions probably underestimate the numbers of synapses. OSF branches terminating well below the OHCs were seen to end most commonly in intimate contact with the Deiters' cells. Membrane specialization was occasionally seen at this point of contact; however, the specialization was sufficiently undifferentiated to preclude identification.
通过注射辣根过氧化物酶对外螺旋纤维(OSFs)进行逆行标记。在光镜水平重建外周分支模式后(西蒙斯和利伯曼,1988年),通过对连续切片的电子显微镜重建,对选定纤维的特定区域进行分析。本研究中的超微结构数据表明,外毛细胞(OHC)与OSFs终末膨大之间的接触对应于许多其他超微结构研究中描述的传入突触。与OHCs接触的旁侧膨大似乎也是突触接触点。然而,旁侧突触在接触点并不总是与OSF的膨大相关联:因此,光镜重建可能低估了突触的数量。观察到终止于OHCs下方相当距离处的OSF分支最常与代特细胞紧密接触。在这个接触点偶尔可见膜特化;然而,这种特化尚未充分分化,无法进行识别。