Department of Mechanical Engineering, Politecnico di Milano, 20156 Milan, Italy.
Hepatology, Department of Biomedical Research, Inselspital, University of Bern, 3010 Bern, Switzerland.
Sensors (Basel). 2021 Oct 19;21(20):6934. doi: 10.3390/s21206934.
Thermal ablation is an acceptable alternative treatment for primary liver cancer, of which laser ablation (LA) is one of the least invasive approaches, especially for tumors in high-risk locations. Precise control of the LA effect is required to safely destroy the tumor. Although temperature imaging techniques provide an indirect measurement of the thermal damage, a degree of uncertainty remains about the treatment effect. Optical techniques are currently emerging as tools to directly assess tissue thermal damage. Among them, hyperspectral imaging (HSI) has shown promising results in image-guided surgery and in the thermal ablation field. The highly informative data provided by HSI, associated with deep learning, enable the implementation of non-invasive prediction models to be used intraoperatively. Here we show a novel paradigm "peak temperature prediction model" (PTPM), convolutional neural network (CNN)-based, trained with HSI and infrared imaging to predict LA-induced damage in the liver. The PTPM demonstrated an optimal agreement with tissue damage classification providing a consistent threshold (50.6 ± 1.5 °C) for the damage margins with high accuracy (~0.90). The high correlation with the histology score (r = 0.9085) and the comparison with the measured peak temperature confirmed that PTPM preserves temperature information accordingly with the histopathological assessment.
热消融是原发性肝癌的一种可接受的替代治疗方法,其中激光消融 (LA) 是最微创的方法之一,尤其适用于高危部位的肿瘤。为了安全地破坏肿瘤,需要精确控制 LA 的效果。尽管温度成像技术提供了对热损伤的间接测量,但治疗效果仍存在一定程度的不确定性。光学技术目前正成为直接评估组织热损伤的工具。其中,高光谱成像 (HSI) 在图像引导手术和热消融领域显示出了有前途的结果。HSI 提供的高度信息丰富的数据,结合深度学习,可以实现非侵入性预测模型的实施,以便在手术中使用。在这里,我们展示了一种新的范例“峰值温度预测模型”(PTPM),它基于卷积神经网络(CNN),使用 HSI 和红外成像进行训练,以预测肝脏中的 LA 诱导损伤。PTPM 与组织损伤分类具有最佳的一致性,提供了一致的损伤边界阈值(50.6 ± 1.5°C),具有很高的准确性(~0.90)。与组织学评分的高度相关性(r = 0.9085)以及与测量的峰值温度的比较证实,PTPM 相应地保留了与组织病理学评估相关的温度信息。