用蓝宝石低温器测定低温结构中有效分散介质的定义

И.Н. Долганова, А. К. Зотов, Л. П. Сафонова, К. И. Зайцев, В. Н. Курлов
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引用次数: 0

摘要

在其冷冻破坏过程中监测组织状况的任务与冷冻手术极为相关。此前,有人提出了蓝宝石冷冻探针的概念,这使得在冰球形成过程中检测来自组织的漫射光成为可能。该探针结合了蓝宝石作为一种有前途的冷冻手术材料的优点,以及评估接触区域组织冷冻深度的可能性。在施加器内部使用几个光源通道,它们与探测器通道的距离不同,这使得用扩散理论的方法分析介质的散射特性成为可能。在本文中,我们考虑了被分析源通道的位置和数量对探测器通道记录的信号和确定的由冰球和未冻组织组成的双组分介质的有效散射系数的影响。给出了不同通道构型下散射系数的差异,以及分析大量通道描述复杂冰球边界介质有效特性的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Определение эффективных рассеивающих свойств среды в процессе криодеструкции с помощью сапфирового криоаппликатора
The task of monitoring the condition of the tissue during its cryodestruction is extremely relevant for cryosurgery. Previously, the concept of a sapphire cryoprobe was proposed, which makes it possible to detect diffusely scattered light from a tissue during an ice ball formation. This probe combines the advantages of sapphire as a promising material for cryosurgery, as well as the possibility of assessing the depth of tissue freezing in the contact area. The use of several light source channels inside the applicator, spaced at different distances from the detector channel, makes it possible to analyze the scattering properties of the medium using the methods of diffusion theory. In this paper, we consider the influence of the position and number of analyzed source channels on the signals recorded by the detector channel and the determined effective scattering coefficient of a two-component medium consisting of an iceball and unfrozen tissue. Differences in the scattering coefficient obtained for various channel configurations are shown, as well as the advantages of analyzing a large number of channels to describe the effective properties of the medium with a complex iceball boundary.
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