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钛质球窝型人工听骨重建物-实验评估与中期临床结果。

Titanium ball joint total ossicular replacement prosthesis--experimental evaluation and midterm clinical results.

机构信息

Department of Otorhinolaryngology, Head and Neck Surgery, University of Cologne, Kerpener Strasse 62, 50937 Cologne, Germany.

出版信息

Hear Res. 2013 Jul;301:100-4. doi: 10.1016/j.heares.2012.10.009. Epub 2012 Nov 6.

Abstract

During reconstruction of the ossicular chain, there is a need to address the forces and loads caused by the ambient atmospheric pressure variations and the resulting tympanic membrane movements. It is understood that when a rigid middle ear prosthesis is inserted the malleoincudal joint, a keyfactor in controlling pressure variations in the middle ear space is bypassed. In this paper we describe a modified total titanium ossicular replacement prosthesis with an innovative micro ball joint in the headplate which is designed to compensate for tympanic membrane movements caused by atmospheric pressure variations. The characteristics of this modified prosthesis were examined in temporal bone experiments and compared to the standard titanium total ossicular reconstruction prosthesis. Sound-induced stapes footplate movements were investigated by means of a Laser vibrometer and revealed no significant differences between the two prostheses in vitro. Intraoperatively, the insertion of the modified prosthesis required more delicate handling. The angle between the shaft and the headplate was variable and ranged from 60 to 90° as estimated by the surgeon. Twelve consecutive patients were eligible for clinical evaluation. The pure tone average (PTA) air-bone gap after a mean follow up period of 32 months was 18.8 dB. Furthermore, no extrusion, dislocation or other adverse events were observed. We conclude that the modified total ossicular replacement prosthesis with integrated micro ball joint yields similar volume velocities of the stapes footplate in the laboratory experiments compared to the standard rigid prosthesis. The audiological and morphological results are encouraging and show that the mobile prosthesis headplate adjusting to the level of the tympanic membrane is a further step in the development of a physiological middle ear implant. This article is part of a special issue entitled "MEMRO 2012".

摘要

在听骨链重建过程中,需要解决环境大气压力变化和由此引起的鼓膜运动所产生的力和负荷。人们认为,当刚性中耳假体插入镫骨-砧骨关节时,中耳空间压力变化的一个关键控制因素被绕过了。本文介绍了一种改良的全钛听骨替代假体,其头板上有一个创新的微球关节,旨在补偿大气压力变化引起的鼓膜运动。在颞骨实验中对这种改良假体的特性进行了检查,并与标准钛全听骨重建假体进行了比较。通过激光测振仪研究了声音引起的镫骨底板运动,结果表明,两种假体在体外没有显著差异。术中,改良假体的插入需要更精细的处理。轴和头板之间的角度是可变的,估计为 60 到 90°,由外科医生确定。12 例连续患者符合临床评估条件。平均随访 32 个月后的纯音平均气骨导差(PTA)为 18.8dB。此外,没有观察到挤出、脱位或其他不良事件。我们得出结论,与标准刚性假体相比,改良的全听骨替代假体具有集成微球关节,在实验室实验中产生了相似的镫骨底板体积速度。听力和形态学结果令人鼓舞,表明能适应鼓膜水平的活动假体头板是生理中耳植入物发展的又一步。本文是一个特刊题为“MEMRO 2012”的一部分。

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