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一种基于杠杆和人体工程学原理通过水分离法创建组织平面劈开的创新设备。

An innovative device for creating tissue plane cleavage by hydro-dissection based on lever and ergonomic principle.

作者信息

Dvivedi Jyoti, Dvivedi Sanjay

机构信息

Department of Physiology, Himalayan Institute of Medical Sciences Jolly Grant, Dehradun - 248 140 India.

出版信息

Indian J Physiol Pharmacol. 2012 Jan-Mar;56(1):56-62.

Abstract

In the Third world countries, the occupational health of a Reconstructive Surgeon attracts due attention from the applied physiology fraternity, where the massive amount of surgical workload causes chronic fatigue and repeated stress and injury. The knowledge of human physiology and the science of ergonomics analyze these challenges and formulate guidelines for creating a work environment that is safe and comfortable for its operators. Presented here is an innovative, cost effective, sterilizable, manually controlled hydrodissection instrument for surgery. This easy to make Syringe Pressure Gun (SPG), has revolutionized the face of cleft palate surgery reducing the surgical time to 50% and the palatal fistula rate from 3% to Zero percent. The effects were studied on patients and the operating surgeon both. The experimental group comprising of 1500 cleft palate patients in whom the gun was used during surgery as compared to 500 controls showed statistically highly significant results in terms of reduction in average bleeding in millilitres (P<0.05), average operating time in minutes (P<0.001), palatal fistula formation (P<0.005) and reduction in surgical complications like flap necrosis. The results in the operating surgeon (self control) on using the instrument, showed highly statistically significant fall in the muscle strain induced by tedious surgical manoeuvres, as studied by EMG (P<0.005), subjective hand grip pain and tiredness on a scale of 0-10, high convenience in flap dissection and therefore work performance improved in spite of the high volume of surgery. This ergonomic innovation will provide clues for future inventions based on physiological principles for improving the occupational health of the doctors and outcome of the patients.

摘要

在第三世界国家,整形重建外科医生的职业健康受到应用生理学领域的广泛关注,大量的外科手术工作量会导致慢性疲劳以及反复的压力和损伤。人体生理学知识和人体工程学原理分析了这些挑战,并制定了相关准则,以营造一个对手术操作者安全舒适的工作环境。本文介绍了一种创新的、经济高效的、可消毒的手动控制水分离手术器械。这种易于制作的注射器压力枪(SPG)彻底改变了腭裂手术的面貌,将手术时间缩短至50%,腭裂瘘发生率从3%降至零。研究了该器械对患者和主刀医生的影响。与500例对照组相比,实验组有1500例腭裂患者在手术中使用了该器械,在平均出血量(毫升)减少(P<0.05)、平均手术时间(分钟)减少(P<0.001)、腭裂瘘形成(P<0.005)以及皮瓣坏死等手术并发症减少方面,显示出具有统计学高度显著性的结果。主刀医生(自身对照)使用该器械的结果显示,通过肌电图研究发现,繁琐手术操作引起的肌肉紧张程度有高度统计学显著性下降(P<0.005),主观握力疼痛和疲劳程度在0 - 10分的量表上有所降低,皮瓣分离操作便利性高,因此尽管手术量很大,但工作表现仍有所改善。这种人体工程学创新将为未来基于生理原理的发明提供线索,以改善医生的职业健康和患者的治疗效果。

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