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Intraoperative Imaging-Guided Cancer Surgery: From Current Fluorescence Molecular Imaging Methods to Future Multi-Modality Imaging Technology

机译:术中成像指导的癌症手术:从当前的荧光分子成像方法到未来的多模式成像技术。

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摘要

Cancer is a major threat to human health. Diagnosis and treatment using precision medicine is expected to be an effective method for preventing the initiation and progression of cancer. Although anatomical and functional imaging techniques such as radiography, computed tomography (CT), magnetic resonance imaging (MRI) and positron emission tomography (PET) have played an important role for accurate preoperative diagnostics, for the most part these techniques cannot be applied intraoperatively. Optical molecular imaging is a promising technique that provides a high degree of sensitivity and specificity in tumor margin detection. Furthermore, existing clinical applications have proven that optical molecular imaging is a powerful intraoperative tool for guiding surgeons performing precision procedures, thus enabling radical resection and improved survival rates. However, detection depth limitation exists in optical molecular imaging methods and further breakthroughs from optical to multi-modality intraoperative imaging methods are needed to develop more extensive and comprehensive intraoperative applications. Here, we review the current intraoperative optical molecular imaging technologies, focusing on contrast agents and surgical navigation systems, and then discuss the future prospects of multi-modality imaging technology for intraoperative imaging-guided cancer surgery.
机译:癌症是对人类健康的主要威胁。使用精密医学的诊断和治疗有望成为预防癌症发生和发展的有效方法。尽管诸如放射线照相,计算机断层扫描(CT),磁共振成像(MRI)和正电子发射断层扫描(PET)之类的解剖学和功能性成像技术在准确的术前诊断中发挥了重要作用,但这些技术大部分不能在术中应用。光学分子成像是一种有前途的技术,可在肿瘤边缘检测中提供高度的敏感性和特异性。此外,现有的临床应用已经证明,光学分子成像是一种强大的术中工具,可指导外科医生进行精确的手术,从而实现根治性切除术并提高生存率。但是,光学分子成像方法存在检测深度的局限性,并且需要从光学到多模态的术中成像方法的进一步突破,以发展更广泛,更全面的术中应用。在这里,我们回顾当前的术中光学分子成像技术,重点是造影剂和手术导航系统,然后讨论术中成像指导的癌症手术的多模态成像技术的未来前景。

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