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Ex vivo investigations of laser auricular cartilage reshaping with carbon dioxide spray cooling in a rabbit model

机译:兔模型中二氧化碳喷涂冷却激光耳廓软骨的exVi​​vo调查

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摘要

Laser cartilage reshaping (LCR) with cryogen spray cooling is a promising modality for producing cartilage shape change while reducing cutaneous thermal injury. However, LCR in thicker tissues, such as auricular cartilage, requires higher laser power, thus increasing cooling requirements. To eliminate the risks of freeze injury characteristic of high cryogen spray pulse rates, a carbon dioxide (CO2) spray, which evaporates rapidly from the skin, has been proposed as the cooling medium. This study aims to identify parameter sets which produce clinically significant reshaping while producing minimal skin thermal injury in LCR with CO2 spray cooling in ex vivo rabbit auricular cartilage. Excised whole rabbit ears were mechanically deformed around a cylindrical jig and irradiated with a 1.45-μm wavelength diode laser (fluence 12–14 J/cm2 per pulse, four to six pulse cycles per irradiation site, five to six irradiation sites per row for four rows on each sample) with concomitant application of CO2 spray (pulse duration 33–85 ms) to the skin surface. Bend angle measurements were performed before and after irradiation, and the change quantified. Surface temperature distributions were measured during irradiation/cooling. Maximum skin surface temperature ranged between 49.0 to 97.6 °C following four heating/cooling cycles. Significant reshaping was achieved with all laser dosimetry values with a 50–70 °C difference noted between controls (no cooling) and irradiated ears. Increasing cooling pulse duration yielded progressively improved gross skin protection during irradiation. CO2 spray cooling may potentially serve as an alternative to traditional cryogen spray cooling in LCR and may be the preferred cooling medium for thicker tissues. Future studies evaluating preclinical efficacy in an in vivo rabbit model are in progress.
机译:具有冷冻剂喷雾冷却的激光软骨整形(LCR)是一种有前途的方式,可用于产生软骨形状变化,同时减少皮肤热损伤。但是,较厚的组织(如耳软骨)中的LCR需要更高的激光功率,因此增加了散热要求。为了消除高致冷剂喷雾脉冲率造成的冻伤风险,已提出了一种从皮肤迅速蒸发的二氧化碳(CO2)喷雾作为冷却介质。这项研究旨在确定参数集,这些参数集在离体兔耳软骨中用CO2喷雾冷却在LCR中产生最小的皮肤热损伤,同时产生临床上显着的重塑。将切除的整个兔耳在圆柱形夹具周围机械变形,并用1.45-μm波长的二极管激光照射(每个脉冲的通量为12–14 J / cm 2 ,每个照射位置四至六个脉冲周期,五个每排六个照射点,每个样本四排),并在皮肤表面同时使用CO2喷雾(脉冲持续时间33-85 ms)。在照射前后进行弯曲角度测量,并对变化进行定量。在辐照/冷却期间测量表面温度分布。经过四个加热/冷却循环后,最高皮肤表面温度在49.0至97.6°C之间。所有激光剂量测定值均实现了显着的重塑,在对照组(无冷却)和经辐照的耳朵之间存在50-70°C的差异。冷却脉冲持续时间的增加在辐照期间逐渐改善了对皮肤的总体保护。在LCR中,CO2喷雾冷却可能会替代传统的冷冻剂喷雾冷却,并且可能是较厚组织的首选冷却介质。评估体内兔模型的临床前功效的未来研究正在进行中。

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