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ndltd-NEU--neu-rx915b19b2021-05-28T05:22:13ZIn vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticlesNoninvasive enumeration of rare circulating cells in small animals is of great importance in many areas of biomedical research, but most existing enumeration techniques involve drawing and enriching blood which is known to be problematic. Recently, small animal "in vivo flow cytometry" (IVFC) techniques have been developed, where cells flowing through small arterioles are counted continuously and noninvasively in vivo. However, higher sensitivity IVFC techniques are needed for studying low-abundance (<100/mL) circulating cells.http://hdl.handle.net/2047/D20194050
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Noninvasive enumeration of rare circulating cells in small animals is of great importance in many areas of biomedical research, but most existing enumeration techniques involve drawing and enriching blood which is known to be problematic. Recently, small animal "in vivo flow cytometry" (IVFC) techniques have been developed, where cells flowing through small arterioles are counted continuously and noninvasively in vivo. However, higher sensitivity IVFC techniques are needed
for studying low-abundance (<100/mL) circulating cells.
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In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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title_full |
In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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title_fullStr |
In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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In vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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in vivo fluorescence imaging and tracking of circulating cells and therapeutic nanoparticles
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http://hdl.handle.net/2047/D20194050
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1719407923294109696
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