Related Experiment Video
Updated: May 21, 2026

A Method for Studying the Temperature Dependence of Dynamic Fracture and Fragmentation
Published on: June 28, 2015
Fractional vaporization of tissue with an oscillatory array of high temperature rods: part I: ex vivo study
Gary Lask1, Monica Elman, Nathalie Fournier
1UCLA Medical School, Los Angeles, CA, USA. micslatk@zahav.net.il
Background:
Short pulse duration (∼0.1-5 milliseconds) CO2 lasers are perceived as excellent tools for vaporization of craters arrays in fractional skin resurfacing.
Objectives:
To present a thermo-mechanical ablation technology, which affects tissue identically to fractional CO2 lasers, however at a fraction of the size and cost of a laser.
Material And Methods:
The new technology is based on heating an oscillating array of thin metallic rods to a temperature of 400°C and advancing the rods into tissue down to a precise pre-selected depth for a duration of 0.1-5 milliseconds. As a result, an array of crater is vaporized with identical properties of those produced by CO2 lasers. An ex vivo test was performed with a thermo- metallic rod array prototype.
Results:
Arrays of 10 × 10 vaporized micro-craters of 350 micron diameter, 200 micron depth have been produced with lateral thermal damage of 80 micron while thermal damage below craters was 80-250 micron.
Conclusions:
A resonating thermo-mechanical array of high temperature (350-400°C) rods is capable of producing an array of craters identical to those produced with pulsed CO2 lasers.

