珊瑚骨移植再生鸟类截骨。

B Rinkevich, S Ben-Yakir, R Ben-Yakir
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引用次数: 4

摘要

骨折在野生鸟类和圈养鸟类中都很常见(1,2)。鸟类的骨头又细又脆,在各种自然事件(空中碰撞、与其他动物打架;参考文献2)或人为经历(枪击、与汽车或围栏碰撞、遇到陷阱、被狗或猫攻击等);参考文献1)。鸟类骨折修复后完全恢复的前景通常很差,并发症发生率很高(3)。对于野生鸟类来说,任何功能不完全正常的情况都不能被视为成功,轻微的畸形愈合或旋转几个度的变化都可能导致飞行功能的严重丧失(4)。此外,在游牧物种中,时间是至关重要的,因为长时间的康复可能会阻止鸟类与它们的鸟群团聚。在珊瑚骨架碎片植入实验中,我们发现植入物是一种鸟类骨传导生物材料,可作为直接成骨细胞沉积的支架。在这里的案例研究中,这只鸟在手术后2周内恢复了完全的飞行活动,切除的尺骨完全再生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regeneration of Amputated Avian Bone by a Coral Skeletal Implant.

Bone fractures are common in both wild and captive birds (1, 2). Avian bones are thin and brittle and tend to break into fragments or shatter upon a variety of natural events (midair collisions, fights with other animals; ref. 2) or anthropogenic experiences (wounding by gunfire, collisions with cars or fences, encounters with traps, attacks by dogs or cats, etc.; ref. 1). The prospect of full recovery following repair of avian bone fracture is often poor, and the complication rate is high (3). For wild birds, anything less than complete normal function cannot be regarded as successful, and slight malunion or a change in a few degrees of rotation can produce a severe loss of flight function (4). Furthermore, in nomadic species, time is critical because long periods of rehabilitation may prevent the birds from reuniting with their flocks. In experiments with implantation of fragments of skeleton from the coral Stylophora pistillata, we found the implants to be avian osteo-conductive biomaterial, acting as a scaffold for a direct osteoblastic deposition. In the case study presented here, the bird regained complete flight activity within 2 weeks after surgery, with full regeneration of the amputated ulna.

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