Dai Tianhong, Diagaradjane Parmeswaran, Yaseen Mohammad A, Pikkula Brian M, Thomsen Sharon, Anvari Bahman
Department of Bioengineering, Rice University, Houston, Texas 77251, USA.
Lasers Surg Med. 2005 Sep;37(3):210-8. doi: 10.1002/lsm.20217.
Successful laser treatment of cutaneous hyper-vascular lesions requires appropriate laser irradiation parameters for selective photothermolysis of ectatic dermal blood vessels as well as appropriate cooling parameters for epidermal protection based on an individual patient basis. Using the rabbit ear as an in vivo model for dermal vasculature, we investigated the influences of laser wavelength (585 nm vs. 595 nm) and cryogen spray cooling with various spurt durations on the laser-induced thermal injury to dermal blood vessels. Wound healing response was also evaluated in 2 hours and 4 days.
STUDY DESIGN/MATERIALS AND METHODS: Flashlamp-pumped pulsed dye laser ScleroPlus (operated at the wavelength of 585 or 595 nm) was used for the comparison between the influences of two wavelengths (585 nm vs. 595 nm). R134-a cryogen spurts with the durations from 50 to 300 milliseconds were sprayed onto the sites to be irradiated and terminated 20 milliseconds before the onset of the laser pulses. In vivo rabbit ear was used as the model for cutaneous hyper-vascular lesions. Totally 10 New Zealand Albino white rabbits were experimented and in each rabbit ear six to seven sites were irradiated. Five animals were sacrificed 2 hours after the irradiation, and the remaining five sacrificed 4 days after the irradiation. Thermal injury to the blood vessel was assessed by hematoxylin and eosin stained histological sections and confirmed by an apoptosis assay.
When the radiant exposures were above 10 J/cm2, 595 nm wavelength induced equivalent or more severe thermal injury to dermal blood vessels than 585 nm. Cryogen spray cooling with the spurt durations above 100 milliseconds resulted in increased depth of the most superficial thermal injury to dermal blood vessels than without cooling, indicating that superficial blood vessels were non-specifically cooled by the cryogen spurts applied at these parameters. Laser-induced thermal injury was significantly healed in the rabbit ear vasculature at 4 days post irradiation.
Given sufficient radiant exposure, 595 nm wavelength can induce equivalent or more severe vascular injury compared with 585 nm. Cryogen spray cooling with the spurt durations above 100 ms may impair the photocoagulation of superficial blood vessels. Irreversible thermal injury to blood vessel can be achieved only when the basement membrane of blood vessel wall is irreversibly damaged.
成功地对皮肤血管增生性病变进行激光治疗,需要根据患者个体情况,采用适当的激光照射参数以实现对扩张的真皮血管进行选择性光热解,同时采用适当的冷却参数以保护表皮。我们以兔耳作为真皮血管的体内模型,研究了激光波长(585 nm与595 nm)以及不同喷射持续时间的冷冻剂喷雾冷却对激光诱导的真皮血管热损伤的影响。还在2小时和4天时评估了伤口愈合反应。
研究设计/材料与方法:使用闪光灯泵浦脉冲染料激光ScleroPlus(工作波长为585或595 nm)来比较两种波长(585 nm与595 nm)的影响。将持续时间为50至300毫秒的R134-a冷冻剂喷雾喷到待照射部位,并在激光脉冲开始前20毫秒停止。以兔耳体内模型作为皮肤血管增生性病变的模型。总共对10只新西兰白化兔进行实验,每只兔耳的6至7个部位接受照射。照射后2小时处死5只动物,其余5只在照射后4天处死。通过苏木精和伊红染色的组织切片评估血管的热损伤,并通过凋亡检测进行确认。
当辐射暴露高于10 J/cm2时,595 nm波长对真皮血管诱导的热损伤与585 nm相当或更严重。喷射持续时间超过100毫秒的冷冻剂喷雾冷却导致真皮血管最浅表热损伤的深度比未冷却时增加,这表明在这些参数下应用的冷冻剂喷雾非特异性地冷却了浅表血管。照射后4天,兔耳血管中的激光诱导热损伤明显愈合。
在有足够辐射暴露的情况下,与585 nm相比,595 nm波长可诱导相当或更严重的血管损伤。喷射持续时间超过100毫秒的冷冻剂喷雾冷却可能会损害浅表血管的光凝作用。只有当血管壁的基底膜受到不可逆损伤时,才能实现对血管的不可逆热损伤。