De Winne Jens, Strumane Anoek, Babin Danilo, Luthman Siri, Luong Hiep, Philips Wilfried
Department of Telecommunications and Information Processing (TELIN) - PI Research Group, Ghent University-imec, 9000 Ghent, Belgium.
Interuniversity Micro-Electronics Center (IMEC) vzw, 3000 Leuven, Belgium.
Biomed Opt Express. 2024 Jan 4;15(2):641-655. doi: 10.1364/BOE.506084. eCollection 2024 Feb 1.
An adequate supply of oxygen-rich blood is vital to maintain cell homeostasis, cellular metabolism, and overall tissue health. While classical methods of measuring tissue ischemia are often invasive, localized and require skin contact or contrast agents, spectral imaging shows promise as a non-invasive, wide field, and contrast-free approach. We evaluate three novel reflectance-based spectral indices from the 460 - 840 spectral range. With the aim of enabling real time visualization of tissue ischemia, information is extracted from only 2-3 spectral bands. Video-rate spectral data was acquired from arm occlusion experiments in 27 healthy volunteers. The performance of the indices was evaluated against binary Support Vector Machine (SVM) classification of healthy versus ischemic skin tissue, two other indices from literature, and tissue oxygenation estimated using spectral unmixing. Robustness was tested by evaluating these under various lighting conditions and on both the dorsal and palmar sides of the hand. A novel index with real-time capabilities using reflectance information only from 547 and 556 achieves an average classification accuracy of 88.48, compared to 92.65 using an SVM trained on all available wavelengths. Furthermore, the index has a higher accuracy compared to reference methods and its time dynamics compare well against the expected clinical responses. This holds promise for robust real-time detection of tissue ischemia, possibly contributing to improved patient care and clinical outcomes.
充足的富氧血液供应对于维持细胞内环境稳定、细胞代谢和整体组织健康至关重要。传统的测量组织缺血的方法通常具有侵入性、局限性,需要皮肤接触或造影剂,而光谱成像作为一种非侵入性、大视野且无需造影剂的方法显示出了潜力。我们评估了460 - 840光谱范围内三种基于反射率的新型光谱指数。为了实现组织缺血的实时可视化,仅从2 - 3个光谱带中提取信息。从27名健康志愿者的手臂阻断实验中获取了视频速率的光谱数据。这些指数的性能是根据健康皮肤组织与缺血皮肤组织的二元支持向量机(SVM)分类、文献中的另外两个指数以及使用光谱分解估计的组织氧合来评估的。通过在各种光照条件下以及在手的背侧和掌侧进行评估来测试其稳健性。一种仅使用547和556处反射率信息的具有实时能力的新型指数实现了88.48的平均分类准确率,而使用在所有可用波长上训练的SVM的准确率为92.65。此外,该指数与参考方法相比具有更高的准确率,并且其时间动态与预期的临床反应相比良好。这为组织缺血的稳健实时检测带来了希望,可能有助于改善患者护理和临床结果。