首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >Long bone histology of the subterranean rodent Bathyergus suillus (Bathyergidae): ontogenetic pattern of cortical bone thickening
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Long bone histology of the subterranean rodent Bathyergus suillus (Bathyergidae): ontogenetic pattern of cortical bone thickening

机译:地下啮齿动物Bathyergus suillus(Bathyergidae)的长骨组织学:皮质骨增厚的个体发育模式

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摘要

Patterns of bone development in mammals are best known from terrestrial and cursorial groups, but there is a considerable gap in our understanding of how specializations for life underground affect bone growth and development. Likewise, studies of bone microstructure in wild populations are still scarce, and they often include few individuals and tend to be focused on adults. For these reasons, the processes generating bone microstructural variation at intra‐ and interspecific levels are not fully understood. This study comprehensively examines the bone microstructure of an extant population of Cape dune molerats, Bathyergus suillus (Bathyergidae), the largest subterranean mammal endemic to the Western Cape of South Africa. The aim of this study is to investigate the postnatal bone growth of B. suillus using undecalcified histological sections (n = 197) of the femur, humerus, tibia‐fibula, ulna and radius, including males and females belonging to different ontogenetic and reproductive stages (n = 42). Qualitative histological features demonstrate a wide histodiversity with thickening of the cortex mainly resulting from endosteal and periosteal bone depositions, whilst there is scarce endosteal resorption and remodeling throughout ontogeny. This imbalanced bone modeling allows the tissues deposited during ontogeny to remain relatively intact, thus preserving an excellent record of growth. The distribution of the different bone tissues observed in the cortex depends on ontogenetic status, anatomical features (e.g. muscle attachment structures) and location on the bone (e.g. anterior or lateral). The type of bone microstructure and modeling is discussed in relation to digging behavior, reproduction and physiology of this species. This study is the first histological assessment describing the process of cortical thickening in long bones of a fossorial mammal.
机译:哺乳动物的骨骼发育模式在陆地和游标人群中最为人所知,但在我们对地下生命的专业化如何影响骨骼生长和发育的理解方面,仍有相当大的差距。同样,对野生种群中的骨微结构的研究仍然很少,并且它们通常只包括很少的个体,并且往往侧重于成年。由于这些原因,在种内和种间水平上产生骨微结构变化的过程尚未完全被理解。这项研究全面检查了南非沙特海角沙门氏菌(Bathyergidae,现存于南非西开普省的最大的地下哺乳动物)的现存种群的骨微结构。这项研究的目的是使用未脱钙的股骨,肱骨,胫腓骨,尺骨和radius骨的组织切片(n = 197)来研究牛肝菌的产后骨生长,包括属于不同个体发育和生殖阶段的雄性和雌性(n = 42)。定性的组织学特征表明广泛的组织多样性,主要是由骨内膜和骨膜骨沉积引起的皮质增厚,而整个个体发育期内骨膜的吸收和重构很少。这种不平衡的骨骼模型使个体发育过程中沉积的组织保持相对完整,从而保留了出色的生长记录。在皮层中观察到的不同骨组织的分布取决于个体的状态,解剖特征(例如,肌肉附着结构)和在骨骼上的位置(例如,前或外侧)。讨论了与该物种的挖掘行为,繁殖和生理相关的骨微结构和模型类型。这项研究是第一个组织学评估,描述了人工骨哺乳动物长骨皮质增厚的过程。

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