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利用辣根过氧化物酶的逆行和顺行跨神经节运输追踪猫左下心脏神经的传入和传出通路。

Tracing of afferent and efferent pathways in the left inferior cardiac nerve of the cat using retrograde and transganglionic transport of horseradish peroxidase.

作者信息

Kuo D C, Oravitz J J, DeGroat W C

出版信息

Brain Res. 1984 Oct 29;321(1):111-8. doi: 10.1016/0006-8993(84)90686-3.

Abstract

Retrograde and transganglionic transport of horseradish peroxidase (HRP) was used to trace afferent and efferent pathways in the left inferior cardiac nerve of the cat. Cardiac efferent and afferent neurons were located, respectively, in the stellate ganglion (average cell count per experiment:2679) and in the ipsilateral dorsal root ganglia (DRG) from C8 to T9 (average cell count per experiment:213). Labeled cardiac afferent projections to the spinal cord were most dense in segments T2-T6 where they were located in Lissauer's tract and in lamina 1 on the lateral border of the dorsal horn. Labeled afferent axons extended ventrally through lamina 1 into lamina 5 and the dorsolateral region of lamina 7 in proximity to the intermediolateral nucleus. A weak projection was noted on the medial side of the dorsal horn. These sites of termination are similar to projections by other sympathetic afferent pathways (i.e. renal, hypogastric and splanchnic nerves) to the lower thoracic and lumbar spinal cord, indicating that visceral afferents may have a uniform pattern of termination at various segmental levels. This pattern of termination in regions of the gray matter containing spinothalamic tract neurons and neurons involved in autonomic mechanisms is consistent with the known functions of sympathetic afferent pathways in nociception and in the initiation of autonomic reflexes.

摘要

利用辣根过氧化物酶(HRP)的逆行和顺行跨神经节运输来追踪猫左下心脏神经的传入和传出通路。心脏传出神经元和传入神经元分别位于星状神经节(每个实验的平均细胞计数:2679)和同侧C8至T9的背根神经节(DRG)(每个实验的平均细胞计数:213)。标记的心脏传入脊髓投射在T2 - T6节段最为密集,它们位于背外侧束和背角外侧边缘的第Ⅰ层。标记的传入轴突从第Ⅰ层腹侧延伸至第Ⅴ层以及靠近中间外侧核的第Ⅶ层背外侧区域。在背角内侧观察到较弱的投射。这些终末部位与其他交感传入通路(即肾神经、腹下神经和内脏神经)投射到胸下部和腰脊髓的情况相似,表明内脏传入在不同节段水平可能具有统一的终末模式。这种在含有脊髓丘脑束神经元和参与自主神经机制的神经元的灰质区域的终末模式,与交感传入通路在伤害感受和自主反射启动中的已知功能一致。

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