Department of Anatomical Sciences and Neurobiology, University of Louisville, Louisville, KY 40292, USA.
J Physiol. 2010 Apr 1;588(Pt 7):1073-83. doi: 10.1113/jphysiol.2009.186544. Epub 2010 Feb 8.
The specific white matter location of all the spinal pathways conveying penile input to the rostral medulla is not known. Our previous studies using rats demonstrated the loss of low but not high threshold penile inputs to medullary reticular formation (MRF) neurons after acute and chronic dorsal column (DC) lesions of the T8 spinal cord and loss of all penile inputs after lesioning the dorsal three-fifths of the cord. In the present study, select T8 lesions were made and terminal electrophysiological recordings were performed 45-60 days later in a limited portion of the nucleus reticularis gigantocellularis (Gi) and Gi pars alpha. Lesions included subtotal dorsal hemisections that spared only the lateral half of the dorsal portion of the lateral funiculus on one side, dorsal and over-dorsal hemisections, and subtotal transections that spared predominantly just the ventromedial white matter. Electrophysiological data for 448 single unit recordings obtained from 32 urethane-anaesthetized rats, when analysed in groups based upon histological lesion reconstructions, revealed (1) ascending bilateral projections in the dorsal, dorsolateral and ventrolateral white matter of the spinal cord conveying information from the male external genitalia to MRF, and (2) ascending bilateral projections in the ventrolateral white matter conveying information from the pelvic visceral organs (bladder, descending colon, urethra) to MRF. Multiple spinal pathways from the penis to the MRF may correspond to different functions, including those processing affective/pleasure/motivational, nociception, and mating-specific (such as for erection and ejaculation) inputs.
所有将阴茎传入冲动传递至延髓头端的脊髓白质的特定部位尚不清楚。我们之前使用大鼠进行的研究表明,急性和慢性 T8 脊髓背柱(DC)损伤后,低阈值但不是高阈值的阴茎传入冲动至延髓网状结构(MRF)神经元丧失,而背柱的背侧 3/5 损伤后所有阴茎传入冲动丧失。在本研究中,进行了选择性 T8 损伤,然后在 45-60 天后在巨细胞网状核(Gi)和 Gi pars alpha 的有限部分进行终末电生理记录。损伤包括不完全的背侧半切,仅在一侧的外侧束背侧部的外侧保留一半,背侧和过度背侧半切,以及主要保留腹侧白质的不完全横切。对 32 只乌拉坦麻醉大鼠的 448 个单位记录进行电生理数据分析,根据组织学损伤重建进行分组,结果显示:(1)从雄性外生殖器向 MRF 传递信息的脊髓背侧、背外侧和腹外侧白质中有双侧上升的投射;(2)从骨盆内脏器官(膀胱、降结肠、尿道)向 MRF 传递信息的腹侧白质中有双侧上升的投射。来自阴茎的到 MRF 的多个脊髓通路可能对应于不同的功能,包括处理情感/愉悦/动机、伤害感受和交配特异性(如勃起和射精)输入的功能。