Activity-dependent regulation of synaptic plasticity, or metaplasticity, plays a key role in the adaptation of neuronal networks to physiological and biochemical changes in aging brain. There is a growing evidence that experience-related alterations in the mechanisms of synaptic plasticity can underlie beneficial effects of physical exercise and caloric restriction (CR) on brain health and cognition. Astrocytes, which form neuro-vascular interface and can modulate synaptic plasticity by release of gliotransmitters, attract an increasing attention as important element of brain metaplasticity. We investigated the age- and experience-related alterations in astroglial calcium signaling and stimulus-dependence of long-term synaptic plasticity in...
Aerobic physical exercise (APE) leads to improved brain functions. To better understand the benefici...
Aging is a lifelong process characterized by cognitive decline putatively due to structural and func...
Caloric restriction (CR) is a reduction of total caloric intake without a decrease in micronutrients...
Activity-dependent regulation of synaptic plasticity, or metaplasticity, plays a key role in the ada...
There is growing recognition of the important role of interaction between neurons and glial cells fo...
There is growing recognition of the important role of interaction between neurons and glial cells fo...
Experience- and diet-dependent regulation of synaptic plasticity can underlie beneficial effects of ...
Enhanced mental and physical activity can have positive effects on the function of aging brain, both...
Maintaining brain function during aging is very important for mental and physical health. Recent stu...
Abstract: One month of calorically restricted diet (CR) induced morphological plasticity of astrocyt...
Homeostatic scaling of synaptic strength in response to environmental stimuli may underlie the benef...
Homeostatic scaling of synaptic strength in response to environmental stimuli may underlie the benef...
Calorie-restricted (CR) diet has multiple beneficial effects on brain function. Here we report morph...
Aging is the major risk factor for neurodegenerative diseases such as Alzheimer's disease, but ...
Cortical astrocytes express fast ionotropic receptors for glutamate and ATP, although their role in ...
Aerobic physical exercise (APE) leads to improved brain functions. To better understand the benefici...
Aging is a lifelong process characterized by cognitive decline putatively due to structural and func...
Caloric restriction (CR) is a reduction of total caloric intake without a decrease in micronutrients...
Activity-dependent regulation of synaptic plasticity, or metaplasticity, plays a key role in the ada...
There is growing recognition of the important role of interaction between neurons and glial cells fo...
There is growing recognition of the important role of interaction between neurons and glial cells fo...
Experience- and diet-dependent regulation of synaptic plasticity can underlie beneficial effects of ...
Enhanced mental and physical activity can have positive effects on the function of aging brain, both...
Maintaining brain function during aging is very important for mental and physical health. Recent stu...
Abstract: One month of calorically restricted diet (CR) induced morphological plasticity of astrocyt...
Homeostatic scaling of synaptic strength in response to environmental stimuli may underlie the benef...
Homeostatic scaling of synaptic strength in response to environmental stimuli may underlie the benef...
Calorie-restricted (CR) diet has multiple beneficial effects on brain function. Here we report morph...
Aging is the major risk factor for neurodegenerative diseases such as Alzheimer's disease, but ...
Cortical astrocytes express fast ionotropic receptors for glutamate and ATP, although their role in ...
Aerobic physical exercise (APE) leads to improved brain functions. To better understand the benefici...
Aging is a lifelong process characterized by cognitive decline putatively due to structural and func...
Caloric restriction (CR) is a reduction of total caloric intake without a decrease in micronutrients...