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Mechanical testing of a device for subcutaneous internal anterior pelvic ring fixation versus external pelvic ring fixation

机译:皮下前骨盆内固定术与骨盆外固定术器械的机械测试

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摘要

BACKGROUND Although useful in the emergency treatment of pelvic ring injuries, external fixation is associated with pin tract infections, the patient's limited mobility and a restricted surgical accessibility to the lower abdomen. In this study, the mechanical stability of a subcutaneous internal anterior fixation (SIAF) system is investigated. METHODS A standard external fixation and a SIAF system were tested on pairs of Polyoxymethylene testing cylinders using a universal testing machine. Each specimen was subjected to a total of 2000 consecutive cyclic loadings at 1 Hz with sinusoidal lateral compression/distraction (+/-50 N) and torque (+/- 0.5 Nm) loading alternating every 200 cycles. Translational and rotational stiffness were determined at 100, 300, 500, 700 and 900 cycles. RESULTS There was no significant difference in translational stiffness between the SIAF and the standard external fixation when compared at 500 (p = .089), 700 (p = .081), and 900 (p = .266) cycles. Rotational stiffness observed for the SIAF was about 50 percent higher than the standard external fixation at 300 (p = .005), 500 (p = .020), and 900 (p = .005) cycles. No loosening or failure of the rod-pin/rod-screw interfaces was seen. CONCLUSIONS In comparison with the standard external fixation system, the tested device for subcutaneous internal anterior fixation (SIAF) in vitro has similar translational and superior rotational stiffness.
机译:背景技术尽管外部固定在骨盆环损伤的紧急治疗中很有用,但是外部固定与针道感染,患者活动受限以及下腹部手术受限有关。在这项研究中,皮下内固定系统的机械稳定性进行了研究。方法使用通用测试机在一对聚甲醛测试筒上测试标准外固定架和SIAF系统。每个样本以1 Hz的总载荷承受2000次连续循环载荷,每200个循环交替交替地产生正弦形横向压缩/分散(+/- 50 Nm)和扭矩(+/- 0.5 Nm)。在100、300、500、700和900个循环下确定平移和旋转刚度。结果当在500(p = .089),700(p = .081)和900(p = .266)周期进行比较时,SIAF与标准外固定之间的平移刚度没有显着差异。在300次(p = 0.005),500次(p = 0.0020)和900次(p = 0.005)循环时,SIAF的旋转刚度比标准外固定装置高约50%。没有看到杆-销/杆-螺丝接口松动或失效。结论与标准外固定系统相比,用于皮下内前固定(SIAF)的体外测试装置具有相似的平移和出色的旋转刚度。

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