Area of research
Neurology · Developmental Neuroscience
Research interest
Research focused on Traumatic brain injury and Neuroprotection, with related work in Neurogenesis, Umbilical cord, Endocannabinoid system. Notable publications include 'Hypoxia-Inducible Factor 1 is Essential for Spontaneous Recovery from Traumatic Brain Injury and is a Key Mediator of Heat Acclimation Induced Neuroprotection', 'Inosine improves functional recovery after experimental traumatic brain injury', and 'Angiotensin Receptor Type 2 Activation Induces Neuroprotection and Neurogenesis After Traumatic Brain Injury'.
Cognitive Effects of Astaxanthin Pretreatment on Recovery From Traumatic Brain Injury
Nerve growth factor plays a role in the neurotherapeutic effect of a CD45+ pan-hematopoietic subpopulation derived from human umbilical cord blood in a traumatic brain injury model
Palmitoyl Serine: An Endogenous Neuroprotective Endocannabinoid-Like Entity After Traumatic Brain Injury
Are the endocannabinoid-like compounds <i>N</i> -acyl aminoacids neuroprotective after traumatic brain injury?
Inosine improves functional recovery after experimental traumatic brain injury
Angiotensin Receptor Type 2 Activation Induces Neuroprotection and Neurogenesis After Traumatic Brain Injury
Neuroprotection after Traumatic Brain Injury in Heat-Acclimated Mice Involves Induced Neurogenesis and Activation of Angiotensin Receptor Type 2 Signaling
Neurotherapeutic Effect of Cord Blood Derived CD45 <sup>+</sup> Hematopoietic Cells in Mice after Traumatic Brain Injury
Hypoxia-Inducible Factor 1 is Essential for Spontaneous Recovery from Traumatic Brain Injury and is a Key Mediator of Heat Acclimation Induced Neuroprotection
<i>N</i> -arachidonoyl-L-serine (AraS) Possesses Proneurogenic Properties <i>in Vitro</i> and <i>in Vivo</i> after Traumatic Brain Injury
The Role and Dynamics of β-Catenin in Precondition Induced Neuroprotection after Traumatic Brain Injury