|Statement||edited by J. Ditzel and D. H. Lewis.|
|Series||Bibliotheca anatomica,, no. 12|
|Contributions||Ditzel, Jørn, 1924- ed., Lewis, David H., ed.|
|LC Classifications||QP106.6 .E9 1972 pt. 2, RC693 .E9 1972 pt. 2|
|The Physical Object|
|Pagination||xv, 547 p.|
|Number of Pages||547|
|LC Control Number||74163616|
Mostly applied optical imaging techniques for clinical evaluation of the microcirculation today include (dynamic) capillaroscopy, confocal microscopy, two photon imaging, and stimulated emission depletion microscopy for tracing superficial structures; optical coherence tomography, hyperspectral imaging, side stream dark field imaging, and incident dark field imaging for assessing Cited by: 1. The book provides a comprehensive overview of selected topics in microcirculation, from physiology to pathophysiology including molecular mechanisms and clinical aspects. It contains 10 chapters written by reputed authors, which comprehensively sum up the current knowledge and some interesting new insights in the field of microcirculation. In this way, the updated edition has a direct role in helping to develop new pathways of research and scholarship Highlights the explosive growth in knowledge about the microcirculation including the biology of nitric oxide synthase (NOS), endothelial cell signaling, angiogenesis, cell adhesion molecules, lymphocyte trafficking, ion channels and receptors, and propagated vasomotor responses. All four prominently involve the microcirculation: redness and heat reflect vasodilation; dolor is caused by the stimulation of nociceptors in the inflamed tissue, which can be amplified by swelling caused by microvascular leakage. Microcirculation consists of arterioles, capillaries, and venules.
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