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LIMITATIONS OF PHOTOACOUSTIC MEASUREMENT OF BURN DEPTH

机译:烧伤深度光声测量的限制

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Noninvasive burn depth measurements would allow clinicians to manage burn injury better and improve treatment outcomes. Additionally, knowledge of the burn depth would allow surgeons to excise thermally damaged tissue without harming the underlying healthy tissue which is the source of epithelial cells important for proper healing response. We propose a photoacoustic method for inducing acoustic waves in burns. We used an Nd:YAG laser coupled to an optical fiber probe to deliver laser light to burn injury. Subsequent acoustic wave analysis results in burn depth profiling. We test ex vivo pig skin and optical diffusion theory to extrapolate these measurements to determine the maximum depth determined by this probe. We found that our probe can determine burn depths up to 2.8 mm. We propose changes to extend this depth to about 5mm, the full thickness of human skin.
机译:无创烧伤深度测量将使临床医生更好地管理烧伤伤害并改善治疗结果。另外,烧伤深度的知识将使外科医生能够消除热损伤的组织而不会损害潜在的健康组织,这是对适当愈合反应重要的上皮细胞来源的源泉。我们提出了一种光声方法,用于诱导烧伤中的声波。我们使用ND:YAG激光器耦合到光纤探针,以将激光递送以燃烧损伤。随后的声波分析导致烧伤深度分析。我们测试前体内猪皮和光学扩散理论以推断这些测量,以确定该探针确定的最大深度。我们发现我们的探针可以确定高达2.8毫米的烧伤深度。我们提出改变将这种深度扩展到大约5毫米,人体皮肤的全厚度。

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