Chrachri A, Williamson R
The Marine Biological Association of the United Kingdom, Citadel Hill, Plymouth PL1 2PB; and Department Biological Sciences, University of Plymouth, Plymouth PL4 8AA, United Kingdom.
J Neurophysiol. 1998 Aug;80(2):656-66. doi: 10.1152/jn.1998.80.2.656.
Intracellular injections of the fluorescent dye Lucifer yellow into the various cell types within the anterior transverse crista segment of the statocyst of squid revealed that the primary sensory hair cells and both large and small first-order afferent neurons have relatively simple morphologies, each cell having a single, unbranched axon that passes directly into the small crista nerve that innervates the anterior transverse crista. However, the small first-order neurons have short dendritic processes occurring in the region of the sensory hair cells. The secondary sensory hair cells have no centripetal axons, but some have long processes extending from their bases along the segment. Simultaneous intracellular recordings from pairs of the different cell types in the anterior transverse crista segment demonstrated that electrical coupling is widespread; secondary sensory hair cells are coupled electrically along a hair cell row, as are groups of primary sensory hair cells. Secondary sensory hair cell also are coupled to neighboring small first-order afferent neurons. However, this coupling is rectifying in that it only occurs from secondary sensory hair cells to first-order afferent neurons. Direct electrical stimulation of the small crista nerve to excite the efferent axons revealed efferent connections to both the primary sensory hair cells and the small first-order afferent neurons. These efferent responses were of three types: excitatory or inhibitory postsynaptic potentials and excitatory postsynaptic potentials followed by inhibitory postsynaptic potentials. The functional significance of the cell interactions within the crista epithelium of the statocyst of squid is discussed and comparisons drawn with the balance organs of other animals.
向乌贼平衡囊前横嵴段内的各种细胞类型中注射荧光染料路西法黄,结果显示,初级感觉毛细胞以及大小两种一级传入神经元的形态相对简单,每个细胞都有一条单一的、无分支的轴突,该轴突直接进入支配前横嵴的小嵴神经。然而,小型一级神经元在感觉毛细胞区域有短的树突状突起。次级感觉毛细胞没有向心轴突,但有些细胞有从其基部沿该段延伸的长突起。对前横嵴段中不同细胞类型的成对细胞进行细胞内同步记录表明,电耦合很普遍;次级感觉毛细胞沿毛细胞排进行电耦合,初级感觉毛细胞群也是如此。次级感觉毛细胞也与相邻的小型一级传入神经元耦合。然而,这种耦合是整流性的,因为它只发生在次级感觉毛细胞到一级传入神经元之间。直接电刺激小嵴神经以激发传出轴突,结果显示传出连接到初级感觉毛细胞和小型一级传入神经元。这些传出反应有三种类型:兴奋性或抑制性突触后电位以及兴奋性突触后电位后跟随抑制性突触后电位。讨论了乌贼平衡囊嵴上皮内细胞相互作用的功能意义,并与其他动物的平衡器官进行了比较。