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辐照异种羊骨植入物的物理、化学和机械评价——通过低水平激光治疗兔长骨骨折。

Physical, Chemical, and Mechanical Evaluation of Irradiated Xeno-Sheep Bony Implantation by Low-Level Laser Therapy of Long Bones Fractures in Rabbits.

机构信息

Surgery and Obstetric Department, Veterinary Medicine College, Baghdad University, Baghdad, Iraq.

Physiology, Biochemistry, and Pharmacology Department, Veterinary Medicine College, Baghdad University, Baghdad, Iraq.

出版信息

Arch Razi Inst. 2021 Nov 30;76(5):1445-1451. doi: 10.22092/ari.2021.356310.1818. eCollection 2021 Nov.

Abstract

Bone grafts/implantation is widely used in veterinary medicine. The present study aimed to evaluate the physical, chemical, and mechanical prosperities of irradiated xeno-sheep bony implantation(X-SBI) by low-level laser therapy (LLLT) implanted in the induced empty defect of the femoral bones in rabbits. A total of 10 adult rabbits were used to create a 1cm length of the femoral gab surgically; thereafter, the empty space was filled with X-SBI and internally fixed by intramedullary pinning with two femoral fragments. The operated rabbits were assigned to the un-irradiated control group 1 which was left without laser irradiation, and irradiated group (group 2) which was irradiated on a daily basis by a continuous diode laser, a single dose at four points at the lateral aspect of the X-SBI for 5 min at a period of 72 intervals for 14 days post-operation with a dosage of 850 nm, 148.4 J/cm. The parameters which were used for the evaluation of results after 3rd-month post-operation were physical, chemical, and mechanical examinations. The physical examination revealed high bone density and hardness at the sites of X-SBI of the irradiated group, as compared to the un-irradiated animals. Moreover, the chemical analysis demonstrated an increment in the level of bone calcium and phosphorus elements, as well as a decrease in the level of magnesium, potassium, and sodium in the irradiated group, as compared to the un-irradiated group. The mechanical and fracture tolerance results demonstrated a gradually high resistance level of fracture tolerance of irradiated animals, as compared to un-irradiated rabbits. It can be concluded that the irradiated X-SBI by LLLT could be used strongly and successfully to fill the empty space in the femoral bone, supporting body weight better and faster than the control group, with no complications or body rejection.

摘要

骨移植/植入在兽医领域被广泛应用。本研究旨在通过低水平激光疗法(LLLT)评估辐照异种羊骨植入物(X-SBI)的物理、化学和机械性能,该植入物被植入兔股骨诱导的空缺陷部位。总共使用了 10 只成年兔通过手术在股骨上造成 1cm 长的间隙;然后,将空的空间用 X-SBI 填充并用髓内针从内部固定,将两个股骨碎片固定在一起。手术后,将手术兔分为未辐照对照组 1(未接受激光照射)和辐照组(组 2),组 2每天通过连续二极管激光照射,在 X-SBI 的外侧四个点进行单次照射,每次照射 5 分钟,在术后 14 天内每隔 72 小时照射一次,剂量为 850nm、148.4J/cm。术后 3 个月评估结果时使用的参数包括物理、化学和机械检查。物理检查显示,辐照组 X-SBI 部位的骨密度和硬度较高,与未辐照动物相比。此外,化学分析表明,辐照组的骨钙和磷元素水平增加,而镁、钾和钠元素水平降低,与未辐照组相比。机械和断裂耐受性结果表明,与未辐照兔相比,辐照动物的断裂耐受性逐渐提高。可以得出结论,LLLT 辐照的 X-SBI 可以成功地强烈填充股骨的空隙,更好、更快地支撑体重,而且没有并发症或机体排斥。

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