灌注
生物医学工程
斑点图案
刺激
散斑成像
材料科学
计算机科学
医学
放射科
人工智能
内科学
作者
Qingdong Zhang,Peng Liu,Pengfei Shao,Mingzhai Sun,Peng Yao,Shuwei Shen,Yang Zhang,Ming Wu,Ronald X. Xu
标识
DOI:10.1002/jbio.202400188
摘要
Pressure ulcers present a significant human and economic challenge, lacking a reliable method for early detection. To address this, we developed a system capable of early detection by using cooling stimulation and dynamic data acquisition techniques to monitor blood perfusion and skin temperature. The system consists of laser speckle perfusion imaging and thermal imaging. And we performed simulations to demonstrate that the system is capable of detect tissue damage across multiple layers, from superficial to deep. Testing on a rabbit ear model demonstrated that this approach, which combines dynamic perfusion and temperature parameters, effectively distinguishes early pressure ulcer areas from normal skin with a significant p value of 0.0015. This distinction was more precise compared to methods relying solely on static parameters or one parameter. Our study thereby offers a promising advancement in the proactive management and prevention of pressure ulcers.
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