Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticity and cognitive function. In other tissue types, disruptions to metabolism and the resultant changes in cellular oxidative state, such as increased reactive oxygen species (ROS) or induction of hypoxia, are associated with cellular stress. In the brain however, where drastic metabolic shifts occur to support physiological processes, subsequent changes to cellular oxidative state and induction of transcriptional sensors of oxidative stress likely play a significant role in regulating physiological neuronal function. Understanding the role of metabolism and metabolically-regulated genes in neuronal function will be critical in elucidating how c...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The nervous system consumes a disproportionate fraction of the resting body’s energy production. In ...
Brain cells normally respond adaptively to oxidative stress or bioenergetic challenges, resulting fr...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Neuroscience is a technology-driven discipline and brain energy metabolism is no exception. Once sat...
Neuroscience is a technology-driven discipline and brain energy metabolism is no exception. Once sat...
Neuroscience is a technology‐driven discipline and brain energy metabolism is no exception. Once sat...
The energy demands of the brain are high: they account for at least 20% of the body’s energy consump...
Cerebral function is associated with exceptionally high metabolic activity, and requires continuous ...
Scientific theories on the functioning and dysfunction of the human brain require an understanding o...
AbstractThe human brain generally remains structurally and functionally sound for many decades, desp...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
The mammalian brain is extremely sensitive to alterations in cellular homeostasis as a result of env...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The nervous system consumes a disproportionate fraction of the resting body’s energy production. In ...
Brain cells normally respond adaptively to oxidative stress or bioenergetic challenges, resulting fr...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Dynamic metabolic changes occurring in neurons are critically important in directing brain plasticit...
Neuroscience is a technology-driven discipline and brain energy metabolism is no exception. Once sat...
Neuroscience is a technology-driven discipline and brain energy metabolism is no exception. Once sat...
Neuroscience is a technology‐driven discipline and brain energy metabolism is no exception. Once sat...
The energy demands of the brain are high: they account for at least 20% of the body’s energy consump...
Cerebral function is associated with exceptionally high metabolic activity, and requires continuous ...
Scientific theories on the functioning and dysfunction of the human brain require an understanding o...
AbstractThe human brain generally remains structurally and functionally sound for many decades, desp...
The brain has almost no energy reserve, but its activity coordinates organismal function, a burden t...
The mammalian brain is extremely sensitive to alterations in cellular homeostasis as a result of env...
Modulation of energy metabolism is emerging as a key aspect associated with cell fate transition. Th...
The nervous system consumes a disproportionate fraction of the resting body’s energy production. In ...
Brain cells normally respond adaptively to oxidative stress or bioenergetic challenges, resulting fr...