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Selective vascular injury during cutaneous laser therapy.

机译:皮肤激光治疗期间的选择性血管损伤。

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摘要

Pulsed laser irradiation in conjunction with cryogen spray cooling (CSC) can induce selective vascular injury to remove cutaneous hypervascular malformations such as port wine stains (PWS), hemangiomas, and facial veins. In this group of studies, we characterized the cryogen heat removal process and determined the effects of pulsed laser irradiation in conjunction with cryogen spray cooling of human skin. First, we employed an inverse heat conduction algorithm to measure the thermal boundary condition due to CSC in in vitro skin phantoms. Second, we developed a mathematical model of laser irradiation in conjunction with CSC in human skin. We determined tissue damage and temperature profiles due to varying combinations of laser pulse duration, radiant exposure, and CSC application times. Finally, we used ex vivo and in vivo human skin to determine the effects of high radiant exposures and CSC on epidermal and vascular injury.; CSC induces a dynamic cooling effect, removing heat from the skin both during and following the spurt application time. Residual cryogen, deposited on the skin surface during the cryogen spurt, remains on the skin surface several times as long as the as cryogen spurt itself. The heat removal rate during the cryogen spurt is greatest; however, the total energy removed following the cryogen spurt is also substantial (approximately half as much as during the spurt application time).; CSC was effective in protecting the human skin epidermis in light to moderately pigmented skin. Mathematical modeling, ex vivo, and in vivo studies showed that the epidermal damage threshold could be increased by a factor of approximately two. Increased radiant exposures increased the risk of non-selective vascular injury observed in histology as injury to the epidermis and perivascular collagen; however, proper choice of cryogen cooling durations resulted in the elimination of epidermal injury as well as perivascular tissue injury. In addition, higher radiant exposures induced vascular injury deeper within the dermis. Although cooling alone was not sufficient in protecting the epidermis in dark skin patients, the mathematical model suggests that selecting the proper pulse duration in conjunction with CSC may eliminate epidermal injury in darker skin patients.
机译:脉冲激光照射与冷冻剂喷雾冷却(CSC)结合可以诱导选择性的血管损伤,以去除皮肤的高血管畸形,例如波特酒渍(PWS),血管瘤和面静脉。在这组研究中,我们表征了冷冻剂的除热过程,并确定了脉冲激光照射与冷冻剂喷雾对人体皮肤的冷却作用。首先,我们采用逆导热算法来测量由于CSC在体外皮肤模型中产生的热边界条件。其次,我们结合人体皮肤中的CSC建立了激光辐照的数学模型。由于激光脉冲持续时间,辐射暴露和CSC应用时间的不同组合,我们确定了组织损伤和温度曲线。最后,我们使用离体体内人皮肤来确定高辐射暴露和CSC对表皮和血管损伤的影响。 CSC会产生动态的降温效果,在喷洒过程中以及喷洒过程中都会从皮肤上去除热量。在冷冻剂喷射期间沉积在皮肤表面上的残留冷冻剂在皮肤表面的停留时间是冷冻剂喷射本身的几倍。冷冻剂喷射期间的排热速率最大;但是,冷冻剂喷射后去除的总能量也很大(大约是喷射过程中的一半)。 CSC在浅色至中度着色的皮肤中有效保护人的皮肤表皮。数学模型,离体 in vivo 研究表明,表皮损伤阈值可以提高大约两倍。放射线照射增加会增加组织学上观察到的非选择性血管损伤的风险,如表皮和血管周围胶原的损伤。然而,适当选择冷冻剂冷却时间可以消除表皮损伤和血管周围组织损伤。另外,较高的辐射暴露会引起真皮内更深的血管损伤。尽管仅冷却不足以保护深色皮肤患者的表皮,但数学模型表明,选择适当的脉冲持续时间与CSC结合可以消除深色皮肤患者的表皮损伤。

著录项

  • 作者

    Tunnell, James William.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Biomedical.; Physics Optics.; Health Sciences Rehabilitation and Therapy.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 1442 p.
  • 总页数 1442
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;光学;康复医学;
  • 关键词

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