正常大鼠、交感神经切除大鼠和神经毒素去神经大鼠鼓膜体神经支配的精细结构特征。

Y Yeh, L Kruger
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引用次数: 16

摘要

大鼠鼓膜(TM)的张力部主要由特化的无带状胶原固有层组成,其外表面由异常薄的表皮层和内表面由扁平的单细胞粘膜层结合。粘膜层仅由无髓鞘轴突支配,而皮层由有髓鞘轴突和C轴突共同支配。外表面不同于一般的身体皮肤,缺乏真皮乳头、毛发、汗腺和独特的真皮微粒结构。表皮神经支配包括基底层独特的终末,与默克尔细胞无关,以及更深的表皮内含有线粒体和小泡聚集的小终末。这些末梢的感觉性质可以通过新生儿辣椒素治疗(一种对薄感觉纤维有效的神经毒素)后它们的广泛而不是完全消除和手术或神经毒素交感神经切除术后它们的保存来推断。薄粘膜上皮显示靠近中耳自由表面的毛细血管和串珠状轴突。无髓末梢主要含有大而密核的囊泡(ldcv)。辣椒素处理导致表面上皮中含有ldcv的末端广泛消除。感觉薄纤维的供应可能对表皮层的发育有微小的营养影响。由TM的自然刺激引起的感觉模式被认为与神经支配的模式有关。
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Fine-structural characterization of the somatic innervation of the tympanic membrane in normal, sympathectomized, and neurotoxin-denervated rats.

The pars tensa of the rat tympanic membrane (TM) consists largely of a lamina propria of specialized unbanded collagen bounded on the outer surface by an unusually thin epidermal layer and on the inner surface by a flat, single-cell mucosal layer. The mucosal layer is innervated solely by unmyelinated (C) axons, whereas the cutaneous layer is supplied by both myelinated and C axons. The outer surface differs from general body skin, lacking dermal papillae, hairs, sweat glands, and distinctive dermal corpuscular structures. Epidermal innervation includes distinctive terminals in the basal layer, unassociated with Merkel cells, and deeper intraepidermal smaller endings containing accumulations of mitochondria and vesicles. The sensory nature of these endings can be inferred by their extensive, but not total, elimination following neonatal capsaicin treatment (a potent neurotoxin for thin sensory fibers) and their preservation following surgical or neurotoxin sympathectomy. The thin mucosal epithelium displays capillaries and beaded axons close to the free surface of the middle ear. The unmyelinated terminals contain predominantly large, dense-core vesicles (LDCVs). Capsaicin treatment results in extensive elimination of terminals containing LDCVs in surface epithelia. A possible small trophic influence of sensory thin-fiber supply was noted on the development of the epidermal layers. The sensory modalities elicited by natural stimulation of the TM is considered in relation to the pattern of innervation.

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