首页> 外文期刊>Asian journal of animal and veterinary advances >Radiographic Specification of Skeletal Maturation in Donkeys: Defining the Ossification Time of Donkey Growth Plates for Preventing Irreparable Damage
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Radiographic Specification of Skeletal Maturation in Donkeys: Defining the Ossification Time of Donkey Growth Plates for Preventing Irreparable Damage

机译:驴骨骼成熟的射线照相技术规范:定义驴生长板的骨化时间以防止不可修复的损害

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摘要

Therels nodoubt thatthedonkey, as a drafting animal, plays a critical role in thedeveloping communitiesfor both agriculture production and riding purposes. Therefore, to maintain healthy skeleton in these animals, the understanding of radiographic anatomy of ossification centers and growth plates (locations, types and closure times), need to be advanced. It is imperative that an appropriate maturation point is reached to avoid early overexertion of the donkey and the resulting irreparable damage. Itis therefore the aim of this review is to highlight the importance of expanding the limited dataset on epiphyseal growth plate maturation and begin to define its ossification times in the donkey. Moreover, it has been recently proposed that the receptorsof gonadal sex hormones including estrogen, androgen as well as pituitary sex hormones including luteinizing hormone and prolactin are localized in human and animal growth plates. This indicates that these hormones actively participate in the chondroregulation mechanisms at the ossification growth plates. A connection with that, we noticed that the more primitive stem cells as well as hematopoietic stem cells and mesenechymal stem cells express these receptors as well. Therefore, it would be very interesting to address the link between sex hormones and ossification time of growth plates, as well as the sharing activities of these stem cells during the ossification process.
机译:毫无疑问,驴作为起草动物,在发展中社区对于农业生产和骑行目的均起着至关重要的作用。因此,为了保持这些动物的健康骨骼,需要深入了解骨化中心和生长板的放射线解剖学(位置,类型和闭合时间)。至关重要的是要达到适当的成熟点,以免驴子过早地劳作以及由此造成的不可弥补的损害。因此,本次审查的目的是强调扩大关于epi骨生长板成熟的有限数据集的重要性,并开始定义其在驴中的骨化时间。此外,最近已经提出,包括雌激素,雄激素在内的性腺性激素的受体以及包括黄体生成激素和催乳激素的垂体性激素的受体位于人和动物生长板中。这表明这些激素积极参与骨化生长板的软骨调节机制。与此相关的是,我们注意到更原始的干细胞以及造血干细胞和间充质干细胞也表达这些受体。因此,解决性激素与生长板的骨化时间之间的联系,以及这些骨干细胞在骨化过程中的共享活性将是非常有趣的。

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