Selected article for: "blood flow and microvascular blood flow"

Author: Busch, David R; Rusin, Craig G; Miller-Hance, Wanda; Kibler, Kathy; Baker, Wesley B; Heinle, Jeffrey S; Fraser, Charles D; Yodh, Arjun G; Licht, Daniel J; Brady, Kenneth M
Title: Continuous cerebral hemodynamic measurement during deep hypothermic circulatory arrest.
  • Cord-id: lqhv2ji5
  • Document date: 2016_1_1
  • ID: lqhv2ji5
    Snippet: While survival of children with complex congenital heart defects has improved in recent years, roughly half suffer neurological deficits suspected to be related to cerebral ischemia. Here we report the first demonstration of optical diffuse correlation spectroscopy (DCS) for continuous and non-invasive monitoring of cerebral microvascular blood flow during complex human neonatal or cardiac surgery. Comparison between DCS and Doppler ultrasound flow measurements during deep hypothermia, circulato
    Document: While survival of children with complex congenital heart defects has improved in recent years, roughly half suffer neurological deficits suspected to be related to cerebral ischemia. Here we report the first demonstration of optical diffuse correlation spectroscopy (DCS) for continuous and non-invasive monitoring of cerebral microvascular blood flow during complex human neonatal or cardiac surgery. Comparison between DCS and Doppler ultrasound flow measurements during deep hypothermia, circulatory arrest, and rewarming were in good agreement. Looking forward, DCS instrumentation, alone and with NIRS, could provide access to flow and metabolic biomarkers needed by clinicians to adjust neuroprotective therapy during surgery.

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