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作为独立装置以及与锁定钢板联合使用时,钛制椎间笼在犬尾颈椎中的生物力学效应。

Biomechanical effects of a titanium intervertebral cage as a stand-alone device, and in combination with locking plates in the canine caudal cervical spine.

机构信息

Department of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, The Netherlands.

Department of Orthopedic Surgery, Amsterdam UMC, Amsterdam Movement Sciences, Amsterdam, The Netherlands.

出版信息

Vet Surg. 2021 Jul;50(5):1087-1097. doi: 10.1111/vsu.13657. Epub 2021 May 6.

Abstract

OBJECTIVE

To evaluate the change in ex vivo biomechanical properties of the canine cervical spine, due to an intervertebral cage, both as a stand-alone device and in combination with plates.

STUDY DESIGN

Experimental ex vivo study.

ANIMALS

Cervical spinal segments (C5-C7) from eight canine cadavers.

METHODS

The range of motion (ROM) and elastic zone stiffness (EZS) of the spines were determined with a four-point bending device in flexion/extension, lateral bending, and axial rotation for four conditions: native, discectomy, cage (at C6-C7), and cage with plates (at C6-C7). The disc height index (DHI) for each condition was determined using radiography.

RESULTS

Discectomy resulted in overall increased ROM (p < .01) and EZS (p < .05) and decreased DHI (p < .005) when compared to the native condition. Placement of the cage increased DHI (p < .001) and restored total ROM during flexion/extension, lateral bending and axial rotation, and EZS during flexion/extension to the level of the native spine. Application of the plates further reduced the total ROM during flexion/extension (p < .001) and lateral bending (p < .001), but restored ROM in extension and EZS during lateral bending. No implant failure, subsidence, or significant cage migration occurred during loading.

CONCLUSION

An anchorless intervertebral cage used as a stand-alone device was able to restore the disc height and spinal stability to the level of the native cervical spine, whereas the addition of plates further reduced the spinal unit mobility.

CLINICAL SIGNIFICANCE

This study implies that the intervertebral cage may be used as a stand-alone device in the spinal unit fixation in the canine cervical spine.

摘要

目的

评估犬颈椎的体外生物力学性能变化,包括椎间笼作为独立装置以及与钢板联合使用的情况。

研究设计

体外实验研究。

动物

来自 8 只犬尸体的颈椎节段(C5-C7)。

方法

使用四点弯曲装置在屈伸、侧屈和轴向旋转方向上确定脊柱的活动范围(ROM)和弹性区刚度(EZS),有 4 种情况:正常、椎间盘切除术、笼(C6-C7)和笼加钢板(C6-C7)。使用放射学方法确定每个条件的椎间盘高度指数(DHI)。

结果

与正常状态相比,椎间盘切除术导致整体 ROM(p < .01)和 EZS(p < .05)增加,DHI 降低(p < .005)。放置笼增加了 DHI(p < .001),并在屈伸、侧屈和轴向旋转时恢复了总 ROM,在屈伸时恢复了 EZS 到正常脊柱的水平。应用钢板进一步减少了屈伸(p < .001)和侧屈(p < .001)的总 ROM,但在侧屈时恢复了伸展和 EZS。在加载过程中,没有发生植入物失败、下沉或明显的笼迁移。

结论

作为独立装置使用的无锚定椎间笼能够将椎间盘高度和脊柱稳定性恢复到正常颈椎水平,而钢板的增加进一步降低了脊柱单元的活动度。

临床意义

这项研究表明,在犬颈椎的脊柱单元固定中,椎间笼可以作为独立装置使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbec/8360106/ee695325f5e4/VSU-50-1087-g002.jpg

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