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A concept of cryoapplicator based on sapphire shaped crystal enabling control of the ice ball formation using spatially-resolved elastic backscattering of light

机译:基于蓝宝石形晶体的丧耳概念,从而利用空间分辨的弹性反向散射控制冰球形成

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We have proposed a concept of monitoring ice ball formation in biological tissues during cryodestruction process via spatially-resolved detection of elastic light backscattering. For this purpose, we developed an experimental setup for study cryodestruction by using applicators based on sapphire shaped crystals with internal channels for optical irradiation of biotissues and detection of backscattered light. Due to the unique physical properties of sapphire, i.e. high thermal, mechanical, and chemical strength, high thermal conductivity and optical transparency, the sapphire cryoapplicators yield combination of the tissue cryodestruction with the optical control of tissue freezing. We have shown experimentally that using the proposed concept of applicator with several channels, it is possible to monitor changes of the ice ball during the cryodestruction process.
机译:我们已经提出了一种通过空间 - 解析的弹性光反向散射检测在低温辐射过程中监测生物组织中的冰球形成的概念。为此目的,我们通过使用基于蓝宝石形晶体的涂抹器来研究远程测定的实验设置,内部通道用于光学照射生物发布和反向散射光的检测。由于蓝宝石的独特物理性质,即高热,机械和化学强度,高导热率和光学透明度,蓝宝石冷冻涂布器与组织冷冻的光学控制产生组织低温的组合。我们已经通过实验表明,使用具有多个通道的涂抹器的涂敷概念,可以在低低温过程中监测冰球的变化。

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