C.K. Ezeokeke
University of Washington
5 Papers
C.K. Ezeokeke is an academic researcher from University of Washington. The author has contributed to research in topics: Cerebral perfusion pressure & Umbilical cord. The author has an hindex of 2, co-authored 5 publications.
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Papers
Transcranial focused ultrasound, pulsed at 40 Hz, activates microglia acutely and reduces Aβ load chronically, as demonstrated in vivo.
Michael S. Bobola,Lucas Chen,C.K. Ezeokeke,T. A. Olmstead,Christina A. Nguyen,A. Sahota,R.G. Williams,Pierre D. Mourad +7 more
TL;DR: Transcranially delivered, focused ultrasound (tFUS) can replicate the results of Iaccarino et al. (2016) but throughout the area of ultrasound-exposed brain, but over a substantially shorter period of time.
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A Review of Recent Advances in Ultrasound, Placed in the Context of Pain Diagnosis and Treatment.
Michael S. Bobola,Lucas Chen,C.K. Ezeokeke,Katy Kuznetsova,Annamarie C Lahti,Weicheng Lou,Aleksey N Myroniv,Nels W Schimek,Madison L Selby,Pierre D. Mourad +9 more
TL;DR: An overview of the recent literature associated with ultrasound and pain is offered in order to highlight some promising frontiers at the intersection of these two subjects.
A Pre-clinical Study of the Response Threshold of Intact and Transected Nerves to Stimulation by Transcutaneous Intense Focused Ultrasound.
Michael S. Bobola,C.K. Ezeokeke,Kuznetslova K,Annamarie C Lahti,John D. Loeser,T. A. Olmstead,Janna L. Friedly,Pierre D. Mourad +7 more
TL;DR: The ability of iFU under ultrasound image guidance to stimulate deep, intact and transected peripheral nerves is demonstrated and differences in the receptivity to ultrasound stimulation of the peripheral nerves of amputees versus healthy volunteers are highlighted.
Case study of an amputee regaining sensation and muscle function in a residual limb after peripheral nerve stimulation by intense focused ultrasound.
TL;DR: During a study to determine the relative sensitivity to external stimulation of transected nerves after standard amputation versus TMR, a single participant who recovered motor and sensory function of their tibial nerve after TMR surgery during ultrasound stimulation of the nerve was encountered.
Evaluating a Targeted Bedside Measure of Cerebral Perfusion in a Nonhuman Primate Model of Neonatal Hypoxic-Ischemic Encephalopathy
TL;DR: To compare ultrasound‐derived resistive indices (RIs) obtained at the level of the thalamus via fast Doppler ultrasound with traditional anterior cerebral artery measures in a model of neonatal hypoxic‐ischemic encephalopathy and to correlate each with clinical outcomes.