Intracranial Pressure-Derived Cerebrovascular Reactivity Indices and Their Critical Thresholds: A Canadian High Resolution-Traumatic Brain Injury Validation StudyKevin Y. Stein, Frederick A. Zeiler, Logan Froese et al.|Journal of Neurotrauma|2023Cited by 20
Prognostic value of near-infrared spectroscopy regional oxygen saturation and cerebrovascular reactivity index in acute traumatic neural injury: a CAnadian High-Resolution Traumatic Brain Injury (CAHR-TBI) Cohort StudyAlwyn Gomez, Frederick A. Zeiler, Logan Froese et al.|Critical Care|2024Cited by 17
Cerebral physiologic insult burden in acute traumatic neural injury: a Canadian High Resolution-TBI (CAHR-TBI) descriptive analysisKevin Y. Stein, Frederick A. Zeiler, Alwyn Gomez et al.|Critical Care|2024Cited by 5
Impact of Temporal Resolution on Autocorrelative Features of Cerebral Physiology from Invasive and Non-Invasive Sensors in Acute Traumatic Neural Injury: Insights from the CAHR-TBI CohortNuray Vakitbilir, Frederick A. Zeiler, Rahul Raj et al.|Sensors|2025Cited by 2
Optimal cerebrovascular reactivity thresholds for the determination of individualized intracranial pressure thresholds in traumatic brain injury: a CAHR-TBI cohort studyKevin Y. Stein, Frederick A. Zeiler, Donald Griesdale et al.|Critical Care|2025Cited by 2