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Functional Characterization of Lamina X Neurons in ex-Vivo Spinal Cord Preparation

机译:层板X神经元在前体外脊髓制备中的功能表征

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Functional properties of lamina X neurons in the spinal cord remain unknown despite the established role of this area for somatosensory integration, visceral nociception, autonomic regulation and motoneuron output modulation. Investigations of neuronal functioning in the lamina X have been hampered by technical challenges. Here we introduce an ex-vivo spinal cord preparation with both dorsal and ventral roots still attached for functional studies of the lamina X neurons and their connectivity using an oblique LED illumination for resolved visualization of lamina X neurons in a thick tissue. With the elaborated approach, we demonstrate electrophysiological characteristics of lamina X neurons by their membrane properties, firing pattern discharge and fiber innervation (either afferent or efferent). The tissue preparation has been also probed using Ca~(2+)imaging with fluorescent Ca~(2+)dyes (membrane-impermeable or -permeable) to demonstrate the depolarization-induced changes in intracellular calcium concentration in lamina X neurons. Finally, we performed visualization of subpopulations of lamina X neurons stained by retrograde labeling with aminostilbamidine dye to identify sympathetic preganglionic and projection neurons in the lamina X. Thus, the elaborated approach provides a reliable tool for investigation of functional properties and connectivity in specific neuronal subpopulations, boosting research of lamina X of the spinal cord.
机译:尽管该区域在体感整合,内脏伤害感受,自主神经调节和运动神经元输出调节中起着确定的作用,但脊髓中X层神经元的功能特性仍然未知。层板X中神经元功能的研究受到技术挑战的阻碍。在这里,我们介绍了一种离体脊髓制剂,其中背侧和腹侧根仍然附着用于层状X神经元及其连接的功能研究,使用倾斜的LED照明来解析厚组织中层状X神经元的可视化。通过精心设计的方法,我们通过薄片X神经元的膜特性,放电模式放电和纤维神经支配(传入或传出)来证明其电生理特性。还已经用Ca〜(2+)成像和荧光Ca〜(2+)染料(膜不透性或透性)对组织制备物进行了探测,以证明去极化诱导的椎板X神经元细胞内钙浓度的变化。最后,我们进行了可视化的层状X神经元亚群,通过用氨基stilbamidine染料进行逆行标记来染色,以鉴定层状X中的交感神经节前和投射神经元。因此,精心设计的方法为研究特定神经元亚群的功能特性和连通性提供了可靠的工具,促进了脊髓椎板X的研究。

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