Evans Conor L, Xu Xiaoyin, Kesari Santosh, Xie X Sunney, Wong Steven T C, Young Geoffrey S
Opt Express. 2007 Sep 17;15(19):12076-87. doi: 10.1364/oe.15.012076.
We demonstrate the use of coherent anti-Stokes Raman scattering (CARS) microscopy to image brain structure and pathology ex vivo. Although non-invasive clinical brain imaging with CT, MRI and PET has transformed the diagnosis of neurologic disease, definitive pre-operative distinction of neoplastic and benign pathologies remains elusive. Definitive diagnosis still requires brain biopsy in a significant number of cases. CARS microscopy, a nonlinear, vibrationally-sensitive technique, is capable of high-sensitivity chemically-selective three-dimensional imaging without exogenous labeling agents. Like MRI, CARS can be tuned to provide a wide variety of possible tissue contrasts, but with sub-cellular spatial resolution and near real time temporal resolution. These attributes make CARS an ideal technique for fast, minimally invasive, non-destructive, molecularly specific intraoperative optical diagnosis of brain lesions. This promises significant clinical benefit to neurosurgical patients by providing definitive diagnosis of neoplasia prior to tissue biopsy or resection. CARS imaging can augment the diagnostic accuracy of traditional frozen section histopathology in needle biopsy and dynamically define the margins of tumor resection during brain surgery. This report illustrates the feasibility of in vivo CARS vibrational histology as a clinical tool for neuropathological diagnosis by demonstrating the use of CARS microscopy in identifying normal brain structures and primary glioma in fresh unfixed and unstained ex vivo brain tissue.
我们展示了使用相干反斯托克斯拉曼散射(CARS)显微镜对离体脑结构和病理进行成像。尽管CT、MRI和PET等非侵入性临床脑成像技术已经改变了神经疾病的诊断方式,但术前明确区分肿瘤性和良性病变仍然难以实现。在许多情况下,明确诊断仍需要进行脑活检。CARS显微镜是一种非线性、对振动敏感的技术,能够在无需外源性标记剂的情况下进行高灵敏度的化学选择性三维成像。与MRI一样,CARS可以进行调整以提供多种可能的组织对比度,但具有亚细胞空间分辨率和近实时时间分辨率。这些特性使CARS成为对脑病变进行快速、微创、无损、分子特异性术中光学诊断的理想技术。这有望通过在组织活检或切除之前对肿瘤形成进行明确诊断,为神经外科患者带来显著的临床益处。CARS成像可以提高针吸活检中传统冰冻切片组织病理学的诊断准确性,并在脑手术期间动态确定肿瘤切除的边界。本报告通过展示使用CARS显微镜在新鲜未固定、未染色的离体脑组织中识别正常脑结构和原发性胶质瘤,说明了体内CARS振动组织学作为神经病理学诊断临床工具的可行性。