Wilson Jesse W, Degan Simone, Gainey Christina S, Mitropoulos Tanya, Simpson Mary Jane, Zhang Jennifer Y, Warren Warren S
Duke University, Department of Chemistry, Box 90354, Durham, North Carolina 27708-0354, United States.
Duke University, Department of Chemistry, Box 90354, Durham, North Carolina 27708-0354, United StatesbDuke University Medical Center, Department of Radiology, Box 3808, Durham, North Carolina 27710, United States.
J Biomed Opt. 2015 May;20(5):051012. doi: 10.1117/1.JBO.20.5.051012.
We demonstrate a multimodal approach that combines a pump-probe with confocal reflectance and multiphoton autofluorescence microscopy. Pump-probe microscopy has been proven to be of great value in analyzing thin tissue sections of pigmented lesions, as it produces molecular contrast which is inaccessible by other means. However, the higher optical intensity required to overcome scattering in thick tissue leads to higher-order nonlinearities in the optical response of melanin (e.g., two-photon pump and one-photon probe) that present additional challenges for interpreting the data. We show that analysis of pigment composition in vivo must carefully account for signal terms that are nonlinear with respect to the pump and probe intensities. We find that pump-probe imaging gives useful contrast for pigmented structures over a large range of spatial scales (100 μm to 1 cm), making it a potentially useful tool for tracking the progression of pigmented lesions without the need to introduce exogenous contrast agents.
我们展示了一种多模态方法,该方法将泵浦-探测技术与共焦反射和多光子自发荧光显微镜相结合。泵浦-探测显微镜已被证明在分析色素沉着病变的薄组织切片方面具有巨大价值,因为它能产生其他方法无法获得的分子对比度。然而,在厚组织中克服散射所需的更高光强度会导致黑色素光学响应中的高阶非线性(例如,双光子泵浦和单光子探测),这给数据解释带来了额外挑战。我们表明,体内色素成分分析必须仔细考虑与泵浦和探测强度呈非线性关系的信号项。我们发现,泵浦-探测成像在大范围空间尺度(100μm至1cm)上为色素结构提供了有用的对比度,使其成为无需引入外源性造影剂即可跟踪色素沉着病变进展的潜在有用工具。