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Model for laser Doppler measurements of blood flow in tissue
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Measuring the steady-state value and the dynamics of the skin blood flow using the noncontact laser speckle method
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Blood flow velocity measurements based on the self-mixing effect in a fiber coupled semiconductor laser: In-ivo and in-vitro measurements
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M. Slot, M. H. Koelink, F. G. Scholten, F. F. M. de Mul, A. L. Weijers, J. Greve, R. Graaf, A. C. M. Dassel, J. G. Aaarnoudse, and F. H. B. Tuynman, "Blood flow velocity measurements based on the self-mixing effect in a fiber coupled semiconductor laser: in-ivo and in-vitro measurements," Med. Biol. Eng. Comput., vol. 30, pp. 441-446, 1992.
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Self-mixing effect of the semiconductor laser Doppler method for blood flow measurement
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Automatic measurement of velocity and length of moving plate using self-mixing laser diode
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Simultaneous measurement of velocity and length of moving surfaces by a speckle velocimeter with two self-mixing laser diodes
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Skin blood flow evaluated by the laser speckle method and the transcutaneous oxygen tension: Interpretation of the dynamics using a simple model
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B. Ruth, "Skin blood flow evaluated by the laser speckle method and the transcutaneous oxygen tension: interpretation of the dynamics using a simple model," Int. J. Microcircuits Clin. Exp., vol. 12, pp. 227-254, 1993.
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