首页> 外文会议>Lasers in Surgery: Advanced Characterization, Therapeutics, and Systems IX >Use of CO2 laser and AgClBr infrared transmitting fibers for tympanoplasty: experiments on animal models
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Use of CO2 laser and AgClBr infrared transmitting fibers for tympanoplasty: experiments on animal models

机译:使用CO2激光和AgClBr红外透射纤维进行鼓室成形术:动物模型实验

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Abstract: One of the most common ear disease is Chronic Otitis Media that leads to a tympanic membrane perforation. The treatment of this condition is by a surgical procedure, tympanoplasty that is often done under local or general anesthesia. During this procedure an autologous fascia is applied to close the perforation. Commonly, fixation of the fascia is achieved mostly by Gel-Form. During the last several years various fascia fixation techniques were suggested. These included a welding procedure based on using an Argon laser. The disadvantages of the latter is that the visible Argon laser is not absorbed well by the relatively thin tympanic membrane and the fascia. It does not lead to strong weld and it may heat the middle of the ear, causing neural hearing loss. The CO$-2$/ laser IR radiation is much more suitable for welding of these thin tissues, because of its very high absorption in tissues. There is still a need to deliver this radiation to the weld site using a thin and flexible optical fiber. In this work we have welded fascia on the tympanic membranes of guinea pigs using a CO$-2$/ laser. Holes of diameter 2-3 mm were punctured in the membranes and apiece of fascia was placed on the holes. Laser power of the order of 0.5W was delivered to the fascia using an IR transmitting AgClBr fiber. In experiments done on 11 animals and CO$-2$/ laser welding was successfully done on in 15 years. The success of these preliminary studies in the animal models shows that CO$-2$/ laser tympanoplasty could be a very valuable surgical technique. !8
机译:摘要:慢性中耳炎是导致鼓膜穿孔的最常见的耳部疾病之一。这种状况的治疗是通过外科手术,鼓膜成形术,通常在局部或全身麻醉下进行。在此过程中,使用自体筋膜封闭穿孔。通常,筋膜的固定主要通过Gel-Form实现。在最近几年中,提出了各种筋膜固定技术。其中包括基于使用氩激光的焊接程序。后者的缺点是可见的氩激光不能被相对薄的鼓膜和筋膜很好地吸收。它不会导致牢固的焊接,并且可能会加热耳朵中部,导致神经性听力损失。 CO $ -2 $ /激光IR辐射由于其在组织中的吸收非常高,因此更适合于这些薄组织的焊接。仍然需要使用细且柔性的光纤将该辐射传递至焊接部位。在这项工作中,我们使用CO $ -2 $ /激光将筋膜焊接在豚鼠的鼓膜上。将直径2-3 mm的孔刺穿在膜上,并在其上放置一块筋膜。使用红外透射AgClBr光纤将大约0.5W的激光功率传递到面板。在对11只动物进行的实验中,在15年内成功完成了CO $ -2 $ /激光焊接。这些初步研究在动物模型中的成功表明,CO $ -2 $ /激光鼓膜成形术可能是非常有价值的外科手术技术。 !8

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