首页> 外文期刊>Advances in oto-rhino-laryngology >Physical characteristics of various lasers used in stapes surgery.
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Physical characteristics of various lasers used in stapes surgery.

机译:骨手术中使用的各种激光的物理特性。

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The invention of modern small-fenestra stapedotomy procedures using a piston-type prosthesis resulted in a remarkable hearing improvement and at the same time in a reduction of complications compared to conventionally performed stapedectomies. These procedures, however, still contain unpredictable risks such as uncontrolled stapes fracturing, luxation of the stapes or creating a floating footplate, which all can cause hearing loss or even deafness. The worldwide use of the small-fenestration techniques led to the observation that most cases of sensorineural hearing loss occurring after surgery were due to intraoperative trauma to the inner ear, most commonly during footplate manipulation. This led to the use of lasers in otological surgery as a possible tool for precise noncontact cutting of bone without any drill vibration. Today, argon, KTP, CO(2) and Er:YAG lasers are clinically used in middle ear surgery. Each laser has its characteristic interaction process with bone with its specific advantages and disadvantages. Therefore, it is not surprising that there are conflicting and controversially discussed experimental and clinical reports. The purpose of this study was to comprehensively compare the physical processes underlying the laser-tissue interaction of the different laser systems in view of safety and efficacy in order to enhance the ability to perform safe minimally invasive surgery on the stapes footplate.
机译:与传统的骨切除术相比,使用活塞式假体的现代小腓骨骨切除术的发明显着改善了听力,同时减少了并发症。但是,这些程序仍然存在不可预测的风险,例如un骨骨折不受控制,the骨脱位或形成浮脚板,所有这些都会导致听力丧失甚至耳聋。小开窗技术在世界范围内的使用导致观察到,手术后发生的大多数感觉神经性听力丧失病例是由于术中对内耳的创伤,最常见的是在踏板操作过程中。这导致在耳科手术中使用激光作为可能的工具,可以在不引起钻头振动的情况下精确地非接触式切割骨头。如今,氩气,KTP,CO(2)和Er:YAG激光在临床上已用于中耳手术。每个激光器都有其与骨骼的特征相互作用过程,并具有其特定的优点和缺点。因此,毫不奇怪的是,有相互矛盾且有争议的实验和临床报告。这项研究的目的是从安全性和有效性的角度全面比较不同激光系统的激光-组织相互作用背后的物理过程,以增强对sta骨足板进行安全的微创手术的能力。

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