Sobkowicz H M, Slapnick S M, August B K
Department of Neurology, University of Wisconsin, Madison 53706.
J Neurocytol. 1993 Nov;22(11):979-93. doi: 10.1007/BF01218355.
Isolated segments of the newborn mouse organ of Corti were explanted together with the spiral ganglion components. Within the innervation provided by the spiral neurons, we observed presynaptic vesiculated nerve endings that form reciprocal ribbon-afferent/efferent synapses with inner hair cells. These intracochlear presynaptic fibres are characteristically located between adjoining inner hair cells, on the modiolar side, low and close to the supporting cells. The presynaptic fibres display different modes of synaptic connectivity, forming repetitive reciprocal synapses on single inner hair cells or on adjoining hair cells, or connecting adjoining inner hair cells through simultaneous efferent synapses. Many presynaptic fibres exhibit a distinctive ultrastructure: defined clusters of synaptic vesicles, dense core vesicles, coated vesicles, and mitochondria. These organelles occur focally at the synaptic sites; beyond the efferent synaptic specializations, the endings appear quite nondescript and afferent-like. We believe that the reciprocal synapses, although observed in cultures of the organ of Corti, represent real intracochlear synaptic arrangements providing a feedback mechanism between the primary sensory receptors and a special class of spiral ganglion cells that have yet to be recognized in the organ in situ.
新生小鼠柯蒂氏器的分离节段与螺旋神经节成分一起被移植出来。在螺旋神经元提供的神经支配范围内,我们观察到形成与内毛细胞相互的带状传入/传出突触的突触前囊泡化神经末梢。这些蜗内突触前纤维的特征性位置是在内侧蜗轴侧,在相邻内毛细胞之间,靠近支持细胞且位置较低。突触前纤维表现出不同的突触连接模式,在单个内毛细胞上或相邻毛细胞上形成重复性的相互突触,或通过同时的传出突触连接相邻内毛细胞。许多突触前纤维呈现出独特的超微结构:明确的突触小泡簇、致密核心小泡、被膜小泡和线粒体。这些细胞器集中出现在突触部位;在传出突触特化区域之外,末梢看起来相当普通且类似传入神经。我们认为,尽管相互突触是在柯蒂氏器培养物中观察到的,但它们代表了真正的蜗内突触排列,在初级感觉感受器和一类尚未在原位器官中被识别的特殊螺旋神经节细胞之间提供了一种反馈机制。