Eriksson Sam, Nilsson Jan, Sturesson Christian
Department of Surgery, Clinical Sciences Lund, Lund University, Lund, Sweden ; Skåne University Hospital, Lund, Sweden.
Med Devices (Auckl). 2014 Dec 9;7:445-52. doi: 10.2147/MDER.S51426. eCollection 2014.
Microcirculation plays a crucial role in physiological processes of tissue oxygenation and nutritional exchange. Measurement of microcirculation can be applied on many organs in various pathologies. In this paper we aim to review the technique of non-invasive methods for imaging of the microcirculation. Methods covered are: videomicroscopy techniques, laser Doppler perfusion imaging, and laser speckle contrast imaging. Videomicroscopy techniques, such as orthogonal polarization spectral imaging and sidestream dark-field imaging, provide a plentitude of information and offer direct visualization of the microcirculation but have the major drawback that they may give pressure artifacts. Both laser Doppler perfusion imaging and laser speckle contrast imaging allow non-contact measurements but have the disadvantage of their sensitivity to motion artifacts and that they are confined to relative measurement comparisons. Ideal would be a non-contact videomicroscopy method with fully automatic analysis software.
微循环在组织氧合和营养交换的生理过程中起着至关重要的作用。微循环的测量可应用于各种病理状态下的许多器官。在本文中,我们旨在综述微循环成像的非侵入性方法技术。所涵盖的方法有:视频显微镜技术、激光多普勒灌注成像和激光散斑对比成像。视频显微镜技术,如正交偏振光谱成像和侧流暗场成像,可提供大量信息并能直接观察微循环,但主要缺点是可能产生压力伪像。激光多普勒灌注成像和激光散斑对比成像都允许进行非接触测量,但缺点是对运动伪像敏感且仅限于相对测量比较。理想的情况是一种具有全自动分析软件的非接触视频显微镜方法。