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接骨板类型及放置位置对双侧马下颌骨截骨术固定效果的影响:体外研究

Influence of plate type and placement on the immobilization of bilateral equine mandibular osteotomies: Ex vivo study.

作者信息

Durket Elyse, Kersh Kevin, Dembek Katarzyna, Riedesel Elizabeth, Silverstone Auri, Kraus Karl H

机构信息

Department of Veterinary Clinical Sciences, Iowa State University, Ames, Iowa.

出版信息

Vet Surg. 2019 Nov;48(8):1450-1455. doi: 10.1111/vsu.13198. Epub 2019 Apr 5.

Abstract

OBJECTIVE

To determine the influence of plate fixation (locking or dynamic compression) and the site of application (ventral [V] or ventrolateral [VL]) on the resistance to bending of transverse mandibular fractures.

STUDY DESIGN

Ex vivo, simple randomized study.

SAMPLE POPULATION

Mandibles harvested from adult equine cadavers (n = 18).

METHODS

Bilateral osteotomies were created 1 cm caudal to the mental foramen and perpendicular to the long axis of each mandible. Mandibles were fixed with 1 of 3 methods: (1) VL dynamic compression plate (DCP), (2) V-DCP, or (3) VL locking compression plating (LCP). Constructs were mounted on a custom testing jig and tested for resistance in bending by applying force to the rostral aspect of the mandible. Stiffness and change of distance of the dorsal osteotomy at 200 N were compared among constructs.

RESULTS

VL-LCP constructs were 5.25 and 2.42 times stiffer than V and VL constructs, respectively (P<.001). Change in the width of the osteotomy gap at 200 N of load was reduced 6.04 times when osteotomies were stabilized with VL compared to V (P<.001); no difference was detected between the VL and VL-LCP constructs (P=.836).

CONCLUSION

Ventrolateral LCP fixation of equine transverse mandibular osteotomies provided greater resistance to bending compared with V and VL constructs.

CLINICAL SIGNIFICANCE

These results provide evidence to recommend fixation of transverse interdental mandibular fractures with VL-LCP rather than with DCP in horses.

摘要

目的

确定钢板固定(锁定或动力加压)及应用部位(腹侧[V]或腹外侧[VL])对下颌骨横行骨折抗弯能力的影响。

研究设计

体外简单随机研究。

样本群体

取自成年马尸体的下颌骨(n = 18)。

方法

在颏孔后方1 cm处制作双侧截骨,截骨方向垂直于各下颌骨的长轴。下颌骨采用以下3种方法之一进行固定:(1)腹外侧动力加压钢板(DCP),(2)腹侧-DCP,或(3)腹外侧锁定加压钢板(LCP)。将构建体安装在定制测试夹具上,通过对下颌骨喙侧施加力来测试其抗弯能力。比较各构建体在200 N力作用下的刚度及背侧截骨处距离的变化。

结果

腹外侧-LCP构建体的刚度分别是腹侧和腹外侧构建体的5.25倍和2.42倍(P <.001)。与腹侧固定相比,采用腹外侧固定时,在200 N负荷下截骨间隙宽度的变化减小了6.04倍(P <.001);腹外侧和腹外侧-LCP构建体之间未检测到差异(P = 0.836)。

结论

与腹侧和腹外侧构建体相比,马下颌骨横行截骨采用腹外侧LCP固定提供了更大的抗弯能力。

临床意义

这些结果为推荐在马下颌骨牙间横行骨折固定中采用腹外侧-LCP而非DCP提供了证据。

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