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Evaluation of the variable depth resolution of active dynamic thermography on human skin

机译:主动动态热成像在人体皮肤上可变深度分辨率的评估

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摘要

Active dynamic thermography (ADT) is an imaging technique capable of characterizing the non-homogenous thermal conductance of damaged tissues. The purpose of this study was to determine optimal stimulation parameters and quantify the optical resolution of ADT through various depths of human skin. Excised tissue from plastic surgery operations was collected immediately following excision. A total of 12 thin to thick split-thickness grafts were harvested from 3 patients. Grafts were placed on top of a 3D printed resolution chart and thermal stimulation was applied from a 300W halogen lamp array for between 0.5-10 seconds to determine optimal parameters. Video was captured with a thermal camera, and analysis was performed by reconstructing an image from thermal gradients. In this study ADT resolved 0.445±0 lp/mm at a depth of 0.010", 0.356±0.048 lp/mm at a depth of 0.015", 0.334±0.027 lp/mm at a depth of 0.020" and 0.265±0.022 lp/mm at a depth of 0.025". The stimulus energy required for maximum resolution at each depth was 3-4s, 8s, 12s and 12s respectively. ADT is a sensitive technique for imaging dermal structure, capable of resolving detail as fine as 1124 μm, 1427 μm, 1502 μm and 1893 μm in thin to thick split-thickness skin grafts respectively. This study has characterized a correlation between stimulus input and maximal resolution at differing depths of skin. It has also defined the functional imaging depth of ADT to below the sub-cutis, well below conventional spectrophotometric techniques.
机译:主动动态热成像(ADT)是一种能够表征受损组织的非均匀热导的成像技术。这项研究的目的是确定最佳刺激参数,并量化人类皮肤各个深度的ADT光学分辨率。切除后立即收集整形手术切除的组织。从3例患者中总共收获了12薄至厚的裂厚移植物。将嫁接物放在3D打印的分辨率图表的顶部,并从300W卤素灯阵列施加热刺激0.5-10秒,以确定最佳参数。用热像仪捕获视频,并通过从热梯度重建图像进行分析。在这项研究中,ADT在0.010“的深度处分辨为0.445±0 lp / mm,在0.015”的深度处分辨为0.356±0.048 lp / mm,在0.020“的深度处分辨为0.334±0.027 lp / mm,而0.265±0.022 lp / mm深度为0.025英寸。在每个深度获得最大分辨率所需的刺激能量分别为3-4s,8s,12s和12s。 ADT是一种用于成像真皮结构的灵敏技术,能够分辨从细到厚的厚薄皮肤移植物中的细度分别为1124μm,1427μm,1502μm和1893μm。这项研究的特点是刺激输入和不同皮肤深度的最大分辨率之间的相关性。它还将ADT的功能成像深度定义为低于皮下组织,远低于常规分光光度技术。

著录项

  • 来源
    《Biophotonics South America》|2015年|95310P.1-95310P.5|共5页
  • 会议地点 Rio de Janeiro(BR)
  • 作者单位

    Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, D.C. 20010, USA;

    Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, D.C. 20010, USA;

    Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, D.C. 20010, USA;

    Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, D.C. 20010, USA;

    Department of Electrical and Computer Engineering, George Washington University, Washington, DC 20052, USA;

    Firefighters' Burn and Surgical Research Laboratory, MedStar Health Research Institute, Washington, D.C. 20010, USA ,The Burn Center, Department of Surgery, MedStar Washington Hospital Center, Washington, D.C. 20010, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    active dynamic thermography; skin graft; non-contact imaging; resolution;

    机译:主动动态热成像;植皮;非接触式成像解析度;
  • 入库时间 2022-08-26 14:30:59

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