Gitajn I Leah, Elliott Jonathan T, Gunn Jason R, Ruiz Alberto J, Henderson Eric R, Pogue Brian W, Jiang Shudong
Department of Orthopaedics, Dartmouth-Hitchcock Medical Center, 1 Medical Dr., Lebanon, NH 03766, USA.
Department of Surgery, Dartmouth-Hitchcock Medical Center, 1 Medical Dr., Lebanon, NH 03766, USA.
Biomed Opt Express. 2020 Oct 19;11(11):6458-6469. doi: 10.1364/BOE.399587. eCollection 2020 Nov 1.
In this study, an indocyanine green (ICG)-based dynamic contrast- enhanced fluorescence imaging (DCE-FI) technique was evaluated as a method to provide objective real-time data on bone perfusion using a porcine osteotomy model. DCE-FI with sequentially increasing injury to osseous blood supply was performed in 12 porcine tibias. There were measurable, reproducible and predictable changes to DCE-FI data across each condition have been observed on simple kinetic curve-derived variables as well variables derived from a novel bone-specific kinetic model. The best accuracy, sensitivity and specificity of 89%, 88% and 90%, have been achieved to effectively differentiate injured from normal/healthy bone.
在本研究中,基于吲哚菁绿(ICG)的动态对比增强荧光成像(DCE-FI)技术被评估为一种使用猪截骨模型提供骨灌注客观实时数据的方法。在12只猪的胫骨上进行了对骨血供损伤程度逐渐增加的DCE-FI操作。在简单动力学曲线衍生变量以及从新型骨特异性动力学模型衍生的变量方面,已观察到每种情况下DCE-FI数据存在可测量、可重复和可预测的变化。有效区分受伤骨与正常/健康骨的最佳准确率、灵敏度和特异度分别达到了89%、88%和90%。