首页> 外文会议>ASME(American Society of Mechanical Engineers) International Mechanical Engineering Congress: Advances in Bioengineering; 20031115-20031121; Washington,DC; US >OPTIMIZATION OF CRYOGEN SPRAY COOLING FOR PORT WINE STAIN LASER THERAPY USING PHOTOACOUSTIC MEASUREMENT OF EPIDERMAL MELANIN
【24h】

OPTIMIZATION OF CRYOGEN SPRAY COOLING FOR PORT WINE STAIN LASER THERAPY USING PHOTOACOUSTIC MEASUREMENT OF EPIDERMAL MELANIN

机译:表皮黑色素的光声测量优化用于葡萄酒杯激光治疗的冷冻喷雾冷却

获取原文
获取原文并翻译 | 示例

摘要

Treatment of vascular skin lesions, such as port wine stain (PWS) birthmarks, uses laser energy to thermally damage the hypervascular regions in the dermis. Delivery of sufficient laser energy to the dermis can be confounded by the more superficial epidermal melanin layer, a broadband optical absorber. Laser pulses directed at skin lesions may result in excessive heating and scarring of the epidermis, resulting also in limiting the energy available to treat the dermal lesion. Cryogen spray cooling is used to selectively cool the epidermis, allowing the use of higher laser fluences which cause thermal damage in the deeper lesion, while preventing hypertrophic scarring of the epidermis. In order to optimize cryogen cooling and laser pulse parameter for treatment, the depth profile of the epidermal melanin layer and vascular lesion must be known. We use a photoacoustic probe to determine this depth profile. A Q-switched Nd:YAG laser emitting 532 nm light pulses of 4 ns duration is used to excite acoustic waves in epidermal melanin and hemoglobin in the vascular lesions via a miniature probe incorporating a piezoelectric detector. We used acoustic propagation time to determine the spatial relationship of the absorbing structures, thereby giving the necessary means to determine cryogen spurt and laser pulse timing. We present a finite difference thermal model along with data from tissue phantoms showing the effectiveness of the photoacoustic method.
机译:血管性皮肤病变(例如波特酒渍(PWS)胎记)的治疗使用激光能量热损伤真皮中的高血管区域。真皮表面黑色素层(宽带光吸收剂)可能会干扰向真皮传递足够的激光能量。针对皮肤病变的激光脉冲可能会导致表皮过度发热和疤痕形成,从而也限制了可用于治疗皮肤病变的能量。低温喷雾冷却用于选择性冷却表皮,从而允许使用较高的激光通量,从而在较深的病变处造成热损伤,同时防止表皮肥大性瘢痕形成。为了优化冷冻剂冷却和激光脉冲参数以进行治疗,必须知道表皮黑色素层和血管病变的深度分布。我们使用光声探针来确定该深度轮廓。使用Q开关Nd:YAG激光器发出的532 nm光脉冲,持续时间为4 ns,用于通过结合了压电检测器的微型探头激发表皮黑色素和血管损伤中的血红蛋白中的声波。我们使用声传播时间来确定吸收结构的空间关系,从而提供确定冷冻剂喷射和激光脉冲定时的必要手段。我们提出了一个有限差分热模型以及来自组织体模的数据,这些数据显示了光声方法的有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号