Department of Biomedical Computer Systems, Faculty of Computer Science and Materials Science, University of Silesia, ul. Będzińska 39, 41-200, Sosnowiec, Poland.
Biomed Eng Online. 2013 Jun 9;12:51. doi: 10.1186/1475-925X-12-51.
Efficacy and safety of various treatments using fractional laser or radiofrequency depend, to a large extent, on precise movement of equipment head across the patient's skin. In addition, they both depend on uniform distribution of emitted pulses throughout the treated skin area. The pulses should be closely adjacent but they should not overlap. Pulse overlapping results in amplification of irradiation dose and carries the danger of unwanted effects.
Images obtained in infrared mode (Flir SC5200 thermovision camera equipped with photon detector) were entered into Matlab environment. Thermal changes in the skin were forced by CO₂RE laser. Proposed image analysis and processing methods enable automatic recognition of CO₂RE laser sites of action, making possible to assess the correctness of performed cosmetic procedures.
80 images were acquired and analyzed. Regions of interest (ROI) for the entire treatment field were determined automatically. In accordance with the proposed algorithm, laser-irradiated Li areas (ROI) were determined for the treatment area. On this basis, error values were calculated and expressed as percentage of area not covered by any irradiation dose (δo) and as percentage area which received double dose (δz). The respective values for the analyzed images were δo=17.87±10.5% and δz=1.97±1.5%, respectively.
The presented method of verifying the correctness of performing low-invasive esthetic medical (cosmetic) procedures has proved itself numerous times in practice. Advantages of the method include: automatic determination of coverage error values δo and δz, non-invasive, sterile and remote-controlled thermovisual mode of measurements, and possibility of assessing dynamics of patient's skin temperature changes.
各种使用分束激光或射频的治疗方法的疗效和安全性在很大程度上取决于设备头部在患者皮肤表面的精确移动。此外,它们都依赖于发射脉冲在整个治疗皮肤区域内的均匀分布。脉冲应该紧密相邻,但不应重叠。脉冲重叠会导致辐照剂量放大,并带来不必要的副作用的危险。
使用配备光子探测器的 Flir SC5200 红外热像仪获取的红外模式图像被输入到 Matlab 环境中。皮肤的热变化是由 CO₂RE 激光引起的。所提出的图像分析和处理方法能够自动识别 CO₂RE 激光的作用部位,从而可以评估所进行的美容程序的正确性。
共获取并分析了 80 张图像。整个治疗区域的感兴趣区域(ROI)是自动确定的。根据所提出的算法,确定了治疗区域的激光照射 Li 区(ROI)。在此基础上,计算了误差值,并表示为未被任何辐照剂量覆盖的面积百分比(δo)和接受双剂量的面积百分比(δz)。分析图像的相应值分别为 δo=17.87±10.5%和 δz=1.97±1.5%。
所提出的验证低侵入性美容(美容)医学程序执行正确性的方法在实践中已经得到了多次验证。该方法的优点包括:自动确定覆盖误差值 δo 和 δz、非侵入性、无菌和遥控热视觉测量模式以及评估患者皮肤温度变化动态的可能性。