首页> 外文期刊>Hip international: the journal of clinical and experimental research on hip pathology and therapy >Hammering sound frequency analysis and prevention of intraoperative periprosthetic fractures during total hip arthroplasty.
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Hammering sound frequency analysis and prevention of intraoperative periprosthetic fractures during total hip arthroplasty.

机译:锤击声频率分析和全髋关节置换术中预防术中假体周围骨折。

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摘要

Adequate fixation at the time of cementless stem implantation depends on the operator's experience. An objective evaluation method to determine whether the stem has been appropriately implanted may be helpful. We studied the relationship between the hammering sound frequency during stem implantation and internal stress in a femoral model, and evaluated the possible usefulness of hammering sound frequency analysis for preventing intraoperative fracture. Three types of cementless stem (BiCONTACT(R), SL-PLUS(R), and AI-Hip(R)) were used. Surgeons performed stem insertion using a procedure similar to that employed in a routine operation. Stress was estimated by finite element analysis, the hammering force was measured, and frequency analysis of hammering sound data obtained using a microphone. Finite element analysis showed a decrease in the hammering sound frequency with an increase in the estimated maximum stress. When a decrease in frequency was observed, adequate hammering had occurred, and the continuation of hammering risked fracture. Based on the relationship between stress and frequency, the evaluation of changes in frequency may be useful for preventing the development of intraoperative fractures. Using our method, when a decrease in frequency is observed, the hammering force should be reduced. Hammering sound frequency analysis may allow the prediction of bone fractures that can be visually confirmed, and may be a useful objective evaluation method for the prevention of intraoperative periprosthetic fractures during stem insertion.
机译:非骨水泥植入时的适当固定取决于操作者的经验。客观的评估方法来确定茎是否已正确植入可能会有所帮助。我们研究了股骨模型中茎植入期间锤击声频与内部应力之间的关系,并评估了锤击声频分析对于预防术中骨折的可能有用性。使用了三种类型的非骨水泥茎(BiCONTACT,SL-PLUS和AI-Hip)。外科医生使用与常规手术中相似的程序进行茎插入。通过有限元分析估算应力,测量锤击力,并使用麦克风获得锤击声音数据的频率分析。有限元分析表明,随着估计最大应力的增加,锤击声频率降低。当观察到频率降低时,发生了足够的锤击,并且持续进行锤击有断裂的危险。基于应力和频率之间的关系,频率变化的评估可能有助于防止术中骨折的发生。使用我们的方法,当观察到频率降低时,应减小锤击力。锤击声频率分析可以预测可以通过视觉确认的骨折,并且可以作为预防茎插入期间术中假体周围骨折的有用客观评估方法。

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