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神经外科中光学技术用于癌症诊断的潜力综述:迈向术中神经光子学的一步。

Review of the potential of optical technologies for cancer diagnosis in neurosurgery: a step toward intraoperative neurophotonics.

作者信息

Vasefi Fartash, MacKinnon Nicholas, Farkas Daniel L, Kateb Babak

机构信息

Spectral Molecular Imaging Inc., 13412 Ventura Boulevard, Suite 250, Sherman Oaks, California 91423, United States; Brain Mapping Foundation, 8159 Santa Monica Boulevard, Suite 200, West Hollywood, California 90046, United States; Society for Brain Mapping and Therapeutics (SBMT), 8159 Santa Monica Boulevard, Suite 200, West Hollywood, California 90046, United States.

Spectral Molecular Imaging Inc. , 13412 Ventura Boulevard, Suite 250, Sherman Oaks, California 91423, United States.

出版信息

Neurophotonics. 2017 Jan;4(1):011010. doi: 10.1117/1.NPh.4.1.011010. Epub 2016 Dec 26.

Abstract

Advances in image-guided therapy enable physicians to obtain real-time information on neurological disorders such as brain tumors to improve resection accuracy. Image guidance data include the location, size, shape, type, and extent of tumors. Recent technological advances in neurophotonic engineering have enabled the development of techniques for minimally invasive neurosurgery. Incorporation of these methods in intraoperative imaging decreases surgical procedure time and allows neurosurgeons to find remaining or hidden tumor or epileptic lesions. This facilitates more complete resection and improved topology information for postsurgical therapy (i.e., radiation). We review the clinical application of recent advances in neurophotonic technologies including Raman spectroscopy, thermal imaging, optical coherence tomography, and fluorescence spectroscopy, highlighting the importance of these technologies in live intraoperative tissue mapping during neurosurgery. While these technologies need further validation in larger clinical trials, they show remarkable promise in their ability to help surgeons to better visualize the areas of abnormality and enable safe and successful removal of malignancies.

摘要

图像引导治疗技术的进步使医生能够获取有关脑肿瘤等神经系统疾病的实时信息,以提高切除的准确性。图像引导数据包括肿瘤的位置、大小、形状、类型和范围。神经光子工程领域的最新技术进展推动了微创神经外科技术的发展。将这些方法应用于术中成像可减少手术时间,并使神经外科医生能够发现残留或隐藏的肿瘤或癫痫病灶。这有助于更彻底地切除肿瘤,并为术后治疗(即放疗)提供更完善的拓扑信息。我们回顾了神经光子技术(包括拉曼光谱、热成像、光学相干断层扫描和荧光光谱)的最新进展在临床上的应用,强调了这些技术在神经外科手术中实时术中组织成像的重要性。虽然这些技术需要在更大规模的临床试验中进一步验证,但它们在帮助外科医生更好地可视化异常区域并实现安全、成功地切除恶性肿瘤方面显示出了巨大的潜力。

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