首页> 外文会议>Ophthalmic Technologies XV; Progress in Biomedical Optics and Imaging; vol.6 no.3 >Endocapsular hyperthermia probe to prevent posterior capsular opacification
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Endocapsular hyperthermia probe to prevent posterior capsular opacification

机译:囊内热疗探头可防止后囊混浊

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Purpose: To evaluate the feasibility to induce lens epithelial cell death with intraoperative hyperthermia for prevention of secondary cataract. Methods: A prototype miniature resistive hyperthermia probe was designed. The probe contained a thermocouple for temperature feed-back. A timer allowed monitoring of the electrical driving of the hyperthermia probe and the temperature induced as a function of time. To model the heating response, a simple model of the lens capsule was constructed using a thin acrylic plastic shell embedded in a sponge immersed in a water bath at 37℃. The shell was filled with sodium hyaluronate. The probe was positioned at the center of the shell with the thermocouple next to the wall. An experimental protocol was developed to assess the feasibility of increasing the temperature of the human lens to hyperthermia levels in fresh cadaver eyes: An annular metal ring was bonded just below the limbus, the cornea and iris were sectioned, the lens material was removed through a central 5mm diameter capsulorhexis, the capsule was filled with SHA and the globe was set on a temperature-controlled cylindrical vial. Preliminary Results: At 3.3W (2.2V, 1.5A) the shell's content increases from 37℃ to 51℃ in 30s. At that temperature, LEC death is expected to occur within 1sec. Conclusion: This preliminary study demonstrates the feasibility of increasing the temperature of the capsular bag to kill LECs by hyperthermia.
机译:目的:评估术中高温预防晶状体上皮细胞死亡以预防继发性白内障的可行性。方法:设计了微型电阻热疗原型探针。该探头包含一个用于温度反馈的热电偶。计时器允许监视热探针的电驱动和感应的温度随时间的变化。为了模拟热响应,使用埋在37℃水浴中的海绵中嵌入的丙烯酸塑料薄壳,构建了一个简单的晶状体囊模型。壳中填充有透明质酸钠。探头位于外壳的中心,热电偶紧挨壁。开发了一个实验方案来评估在新鲜尸体眼睛中将人晶状体的温度升高至体温过高的可行性:在角膜缘下方粘合一个环形金属环,将角膜和虹膜切开,通过在直径为5mm的撕囊中心,将胶囊充满SHA,将球囊放在温度可控的圆柱形小瓶中。初步结果:在3.3W(2.2V,1.5A)下,外壳的含量在30秒内从37℃增加到51℃。在该温度下,预期LEC死亡将在1秒内发生。结论:这项初步研究证明了提高囊袋温度以通过热疗杀死LEC的可行性。

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