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Assessing The Sensitivity Of Cerebral Blood Flow And Oxygenation To High Intracranial Pressure With Near-Infrared Light, Sule Karagulleoglu Kunduraci
Assessing The Sensitivity Of Cerebral Blood Flow And Oxygenation To High Intracranial Pressure With Near-Infrared Light, Sule Karagulleoglu Kunduraci
Electronic Thesis and Dissertation Repository
Premature birth is associated with increased susceptibility to cerebral injuries because of the compounded effects of underdeveloped cerebral vascular and unstable hemodynamics. Notably, premature infants are highly vulnerable to intraventricular hemorrhage, which often leads to hydrocephalus and subsequently to high intracranial pressure (ICP). Current monitoring methods such as ultrasonography can only detect injuries that have already occurred, highlighting the need for prognostic tools. We hypothesize that concomitant measures of cerebral blood flow (CBF), blood oxygenation, and oxygen metabolism will be sensitive to high ICP. To test this hypothesis, experiments were conducted in a piglet model of high ICP using a …
Assessment Of A Novel High-Density, Full-Head Coverage, Time-Resolved Near-Infrared Spectroscopy (Nirs) Device For Intraoperative Neuromonitoring, Farah Kamar
Electronic Thesis and Dissertation Repository
Neuromonitoring during surgery is used to detect early indications of cerebral injury before permanent damage occurs. A commonly used technology is cerebral oximetry; however, current systems only monitor one brain region and have limited depth sensitivity. A newly developed NIRS system, Kernel Flow, offers the possibility to address both limitations by providing full-head coverage and time-resolved detection to enhance sensitivity to the brain. This work aimed to assess Kernel Flow’s sensitivity to regional cerebral oxygenation changes. Two experiments were conducted. In the first, decreases in cerebral oxygenation caused by transient carotid compression were measured in healthy volunteers. The second was …