Growing evidence indicates that physical exercise increases hippocampal volume. This has consistently been shown in mice and men using magnetic resonance imaging. On the other hand, histological studies have reported profound alterations on a cellular level including increased adult hippocampal neurogenesis after exercise. A combined investigation of both phenomena has not been documented so far although a causal role of adult neurogenesis for increased hippocampal volume has been suggested before. We investigated 20 voluntary wheel running and 20 sedentary mice after a period of 2 month voluntary wheel running. Half of each group received focalized hippocampal irradiation to inhibit neurogenesis prior to wheel running. Structural MRI and h...
Neural stem and progenitor cells in the germinal regions of the adult brain, such as the hippocampus...
Accumulating research in rodents and humans indicates that exercise benefits brain function and may ...
Exercise stimulates cellular brain plasticity by extending the pool of proliferating neural precurso...
Growing evidence indicates that physical exercise increases hippocampal volume. This has consistentl...
Recently, a larger hippocampus was found in exercising mice and men. Here we studied the morphologic...
Introduction Both human and animal studies have shown that physical exercise (primarily aerobic exe...
Increased levels of angiogenesis and neurogenesis possibly mediate the beneficial effects of physica...
Increased levels of angiogenesis and neurogenesis possibly mediate the beneficial effects of physica...
The hippocampus is important for the acquisition of new memories. It is also one of the few regions ...
Exercise is a potent natural stimulator of adult mammalian hippocampal neurogenesis. Relatively lit...
Voluntary physical exercise (wheel running, RUN) and environmental enrichment (ENR) both stimulate a...
The discovery that exercise regulates adult hippocampal neurogenesis, that is, the production of new...
We here report that voluntary wheel running led to a regional increase in the number of newly genera...
Exposure to an enriched environment and physical activity, such as voluntary running, increases neur...
The beneficial effects of physical exercise on brain health are well documented, yet how exercise mo...
Neural stem and progenitor cells in the germinal regions of the adult brain, such as the hippocampus...
Accumulating research in rodents and humans indicates that exercise benefits brain function and may ...
Exercise stimulates cellular brain plasticity by extending the pool of proliferating neural precurso...
Growing evidence indicates that physical exercise increases hippocampal volume. This has consistentl...
Recently, a larger hippocampus was found in exercising mice and men. Here we studied the morphologic...
Introduction Both human and animal studies have shown that physical exercise (primarily aerobic exe...
Increased levels of angiogenesis and neurogenesis possibly mediate the beneficial effects of physica...
Increased levels of angiogenesis and neurogenesis possibly mediate the beneficial effects of physica...
The hippocampus is important for the acquisition of new memories. It is also one of the few regions ...
Exercise is a potent natural stimulator of adult mammalian hippocampal neurogenesis. Relatively lit...
Voluntary physical exercise (wheel running, RUN) and environmental enrichment (ENR) both stimulate a...
The discovery that exercise regulates adult hippocampal neurogenesis, that is, the production of new...
We here report that voluntary wheel running led to a regional increase in the number of newly genera...
Exposure to an enriched environment and physical activity, such as voluntary running, increases neur...
The beneficial effects of physical exercise on brain health are well documented, yet how exercise mo...
Neural stem and progenitor cells in the germinal regions of the adult brain, such as the hippocampus...
Accumulating research in rodents and humans indicates that exercise benefits brain function and may ...
Exercise stimulates cellular brain plasticity by extending the pool of proliferating neural precurso...