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An analysis of heat removal during cryogen spray cooling and effects of simultaneous airflow application

✍ Scribed by Jorge H. Torres; James W. Tunnell; Brian M. Pikkula; Bahman Anvari


Publisher
John Wiley and Sons
Year
2001
Tongue
English
Weight
352 KB
Volume
28
Category
Article
ISSN
0196-8092

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✦ Synopsis


Abstract

Background and Objective

Cryogen spray cooling (CSC) is a method used to protect the epidermis from non‐specific thermal injury that may occur as a result of various dermatological laser procedures. However, better understanding of cryogen deposition and skin thermal response to CSC is needed to optimize the technique.

Study Design/Materials and Methods

Temperature measurements and video imaging were carried out on an epoxy phantom as well as human skin during CSC with and without simultaneous application of airflow which was intended to accelerate cryogen evaporation from the substrate surface. An inverse thermal conduction model was used to estimate heat flux and total heat removed.

Results

Lifetime of the cryogen film deposited on the surface of skin and epoxy phantom lasted several hundred milliseconds beyond the spurt, but could be reduced to the spurt duration by application of airflow. Values over 100 J/cm^3^ were estimated for volumetric heat removed from the epidermis using CSC.

Conclusions

“Film cooling” instead of “evaporative cooling” appears to be the dominant mode of CSC on skin. Estimated values of heat removed from the epidermis suggest that a cryogen spurt as long as 200 milliseconds is required to counteract heat generated by high laser fluences (e.g., in treatment of port wine stains) in patients with high concentration of epidermal melanin. Additional cooling beyond spurt termination can be avoided by simultaneous application of airflow, although it is unclear at the moment if avoiding the additional cooling would be beneficial in the actual clinical situation. Lasers Surg. Med. 39:477–486, 2001. © 2001 Wiley‐Liss, Inc.


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## Abstract ## Background and Objective Cryogen spray cooling (CSC) is an effective method to reduce or eliminate non‐specific injury to the epidermis during laser treatment of various dermatological disorders. In previous CSC investigations, fuel injectors have been used to deliver the cryogen on