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The evaluation of a humidifying device for vitreoretinal surgery.

机译:玻璃体视网膜手术加湿器的评估。

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AIM: To study the feasibility of humidifying air during vitreoretinal surgery and measure the water content of air before and after intraocular transit. METHODS: The absolute water content of air was measured in a series of six eyes undergoing fluid-air exchange during macular hole surgery. Infrared absorption spectroscopy was used to determine the water content of the air infusing and exiting each eye. After baseline measurements for each eye were recorded, a second fluid-air exchange was performed and the effect of humidifying the air infusion was documented.The humidifying device used in this study was a prototype adapted from a commercially available respiratory humidifier and enables humidified air to be delivered at a controlled temperature. RESULTS: The water content of air increased following intraocular transit, implying dehydration occurs from the intraocular surfaces. For a standard airline infusion the mean increase in water content of air egressing from an eye was 13.4 mg/l. Humidifying the air reduced the rate of water loss by nearly 90%. CONCLUSIONS: Significant water losses can occur from eyes undergoing fluid-air exchange. Humidifying the infused air can substantially reduce the dehydrating effect during an air exchange. This outcome may have a beneficial effect in reducing cataract formation and visual field defects associated with macular hole surgery.
机译:目的:研究玻璃体视网膜手术中加湿空气的可行性,并测量眼内运输前后空气中的水分含量。方法:测量在黄斑裂孔手术期间进行流体-空气交换的六只眼睛系列中的空气绝对含水量。红外吸收光谱法用于确定注入和流出每只眼睛的空气中的水含量。记录每只眼睛的基线测量值后,进行第二次空气-空气交换并记录加湿输液的效果。本研究中使用的加湿设备是从市售呼吸加湿器改编而成的原型,能够使加湿的空气在受控温度下交付。结果:眼内运输后空气中的水含量增加,这意味着眼内表面发生了脱水。对于标准航空公司输液,从眼睛流出的空气中水含量的平均增加量为13.4 mg / l。加湿空气可将失水率降低近90%。结论:眼睛进行流体-空气交换可能会导致大量的水分流失。对注入的空气进行加湿可以大大减少空气交换过程中的脱水效果。该结果可能在减少与黄斑裂孔手术相关的白内障形成和视野缺损方面具有有益作用。

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