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猫骶尾脊髓的交叉和不交叉投射:I. 来自皮肤感受器的轴突。

Crossed and uncrossed projections to cat sacrocaudal spinal cord: I. Axons from cutaneous receptors.

作者信息

Ritz L A, Brown P B, Bailey S M

机构信息

Department of Neurological Surgery, University of Florida College of Medicine, Gainesville 32610.

出版信息

J Comp Neurol. 1989 Nov 8;289(2):284-93. doi: 10.1002/cne.902890208.

Abstract

Intra-axonal recording and horseradish peroxidase staining techniques were used to map terminal fields of primary afferent fibers from cutaneous receptors within the cat sacrocaudal spinal cord. It was hypothesized that projection patterns of cutaneous afferent fibers mirror the known somatotopic organization of sacrocaudal dorsal horn cells. Forty-three primary afferent fibers, innervating either slowly adapting type I receptors, hair follicles, or slowly adapting type II receptors, all on the tail, were recovered. All collaterals (N = 372) branched from parent axons in the dorsal columns. Most collaterals coursed rostromedially to the ipsilateral gray matter, penetrated the medial dorsal horn, and arborized within laminae III, IV, and to a lesser extent, V. Ipsilateral projections to dorsal horn were as follows: axons with dorsal or dorsolateral receptive fields (RFs; n = 20) to the lateral portion, axons with lateral RFs (n = 4) to the central portion, and axons with ventral or ventro-lateral RFs (n = 19) to the medial portion. Most axons (16 of 20) with dorsal or dorsolateral RFs also had contralateral projections to lateral dorsal horn and most axons (15 of 19) with ventral or ventrolateral RFs also had contralateral projections to medial dorsal horn. No axons with lateral RFs had crossed projections. These data represent the first complete mapping of the somatotopic organization of primary afferent fiber projection patterns to a spinal cord level. The findings demonstrate that ipsilateral projection patterns of sacrocaudal primary afferent fibers are in register with the somatotopic organization of the dorsal horn. Our earlier suggestion that crossed projections of primary afferent fibers give rise to crossed components of dorsal horn RFs spanning the midline is supported by these results.

摘要

采用轴突内记录和辣根过氧化物酶染色技术,绘制猫骶尾脊髓内皮肤感受器初级传入纤维的终末场。研究假设皮肤传入纤维的投射模式反映了骶尾背角细胞已知的躯体定位组织。回收了43条支配尾巴上慢适应I型感受器、毛囊或慢适应II型感受器的初级传入纤维。所有侧支(N = 372)均从背柱中的母轴突分支出来。大多数侧支向吻内侧延伸至同侧灰质,穿透内侧背角,并在III、IV层以及较小程度地在V层内形成分支。向背角的同侧投射如下:具有背侧或背外侧感受野(RFs;n = 20)的轴突投射到外侧部分,具有外侧RFs(n = 4)的轴突投射到中央部分,具有腹侧或腹外侧RFs(n = 19)的轴突投射到内侧部分。大多数具有背侧或背外侧RFs的轴突(20条中的16条)也有对侧投射至外侧背角,大多数具有腹侧或腹外侧RFs的轴突(19条中的15条)也有对侧投射至内侧背角。没有具有外侧RFs的轴突有交叉投射。这些数据代表了初级传入纤维投射模式到脊髓水平的躯体定位组织的首次完整图谱。研究结果表明,骶尾初级传入纤维的同侧投射模式与背角的躯体定位组织一致。这些结果支持了我们早期的观点,即初级传入纤维的交叉投射产生了跨越中线的背角RFs的交叉成分。

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