大鼠肱骨头生长的微血管适应性。

Anatomy and Embryology Pub Date : 2006-10-01 Epub Date: 2006-04-22 DOI:10.1007/s00429-006-0092-2
Sergio Morini, Luigi Pannarale, Davide Conti, Eugenio Gaudio
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引用次数: 5

摘要

这项工作的目的是研究大鼠肱骨头软骨在继发性骨化中心的初始发育后直到成年组织的血管系统的生长。大鼠年龄为5周至12个月。采用形态计量学分析对肱骨头进行组织学观察。随后,制备了血管腐蚀铸件,可以对血管系统进行三维观察,并通过扫描电子显微镜进行观察。幼龄动物的骨骺包含薄骨小梁,大部分骨骺被骨髓间隙占据。随着年龄的增长,骨小梁逐渐增大,厚度增加一倍。骨组织占整个骨骺的比例从33.6%增加到58.6%,而骨髓间隙的平均尺寸增加很少。血管腐蚀铸型显示骨骺微循环与骨干微循环明显不同,微循环起源于被膜和骨膜网络中的血管。幼龄动物的毛细血管只有骨髓窦和少量软骨下毛细血管。在成年动物中,小血管在形成小梁循环的窦簇之间流动。在幼龄动物和成年动物中,都可以观察到窦状体产生毛细血管芽。因此,在成年大鼠骨骺中可以区分出不同的适当微循环区:(a)提供骨髓和邻近成骨组织造血的正弦网络;(b)骨组织微循环,限于提供骨组织代谢和重塑的小血管。所报道的微血管组织及其对骨骺生长的适应为理解发育和成年大鼠骨骺中不同组织之间的相互作用提供了形态学基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microvascular adaptation to growth in rat humeral head.

The aim of this work is to investigate the growth of the vasculature in the rat humeral head cartilage after the initial development of the secondary ossification centre until the adult organization. Rats aging from 5 weeks to 12 months were used. Histological observations on humeral heads were implemented with morphometrical analysis. Subsequently, vascular corrosion cast, that permits a three-dimensional observation of the vasculature, were prepared and observed by scanning electron microscopy. In young animals the epiphysis contains thin bone trabeculae and most of the epiphysis is occupied by bone marrow spaces. With age, the bone trabeculae progressively enlarge up to double their thickness. The percentage of bone tissue increases from 33.6 to 58.6% of the entire epiphysis, while the bone marrow spaces tend to increase very little in their mean dimension. Vascular corrosion casts show that the epiphyseal microcirculation is well distinguished from that of the diaphysis, and arises from the vessels present in the capsule and the periosteal networks. In young animals the only capillaries are bone marrow sinusoids and few subchondral capillaries. In adult animals small vessels run between the clusters of sinusoids forming the trabecular circulation. Capillary sprouts from sinusoids are always observed both in the young and adult animals. Thus, in adult rats different proper microcirculatory districts can be distinguished in the epiphysis: (a) the sinusoidal network, that supplies the hematopoiesis of the bone marrow and the adjacent osteogenic tissue; (b) the bone tissue microcirculation, limited to small vessels that supply the metabolism and the remodelling of the bone tissue. The reported microvascular organization and its adaptation to the epiphyseal growth represent the morphological basis for understanding the reciprocal interaction among the different tissues in developing and adult rat epiphysis.

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