Department of Physics, Imperial College London, London, UK.
Department of Physics, University of Bath, Bath, UK.
J Biophotonics. 2018 Feb;11(2). doi: 10.1002/jbio.201700131. Epub 2017 Nov 15.
This paper reports a handheld multiphoton fluorescence microscope designed for clinical imaging that incorporates axial motion compensation and lateral image stabilization. Spectral domain optical coherence tomography is employed to track the axial position of the skin surface, and lateral motion compensation is realised by imaging the speckle pattern arising from the optical coherence tomography beam illuminating the sample. Our system is able to correct lateral sample velocities of up to approximately 65 μm s . Combined with the use of negative curvature microstructured optical fibre to deliver tunable ultrafast radiation to the handheld multiphoton scanner without the need of a dispersion compensation unit, this instrument has potential for a range of clinical applications. The system is used to compensate for both lateral and axial motion of the sample when imaging human skin in vivo.
本文报道了一种用于临床成像的手持式多光子荧光显微镜,该显微镜结合了轴向运动补偿和横向图像稳定技术。谱域光学相干层析技术用于跟踪皮肤表面的轴向位置,而横向运动补偿则通过对光学相干层析术光束照射样品产生的散斑图案进行成像来实现。我们的系统能够校正高达约 65 μm s 的横向样品速度。结合使用具有负曲率微结构光纤将可调谐超快辐射传送到手持式多光子扫描仪,而无需色散补偿单元,该仪器具有广泛的临床应用潜力。该系统用于补偿体内人皮肤成像时的横向和轴向运动。