review article | Q7318358 |
scholarly article | Q13442814 |
P50 | author | Willem Henskens | Q58633507 |
P2093 | author name string | Woojin S Kim | |
Zoltán Rusznák | |||
Emma Schofield | |||
YuHong Fu | |||
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Shh-proteoglycan interactions regulate maturation of olfactory glomerular circuitry | Q34416012 | ||
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Aging and brain rejuvenation as systemic events | Q34444118 | ||
Adult neurogenesis in humans- common and unique traits in mammals | Q34459734 | ||
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Neurorestorative Role of Stem Cells in Alzheimer's Disease: Astrocyte Involvement | Q38790537 | ||
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Adult neural stem cells in distinct microdomains generate previously unknown interneuron types. | Q42737633 | ||
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Neuroscience. Why adults need new brain cells | Q43939484 | ||
A 100% increase of dopaminergic cells in the olfactory bulb may explain hyposmia in Parkinson's disease | Q44936947 | ||
PDGFR alpha-positive B cells are neural stem cells in the adult SVZ that form glioma-like growths in response to increased PDGF signaling | Q46365844 | ||
Possibility for neurogenesis in substantia nigra of parkinsonian brain | Q46506342 | ||
Behavioural report of single neuron stimulation in somatosensory cortex | Q46840271 | ||
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Adult neurogenesis requires Smad4-mediated bone morphogenic protein signaling in stem cells. | Q34734393 | ||
Neurotransmitters couple brain activity to subventricular zone neurogenesis | Q34788656 | ||
Polydendrocytes (NG2 cells): multifunctional cells with lineage plasticity | Q34908170 | ||
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Can Parkinson's disease be cured by stimulating neurogenesis? | Q35183991 | ||
Allopregnanolone restores hippocampal-dependent learning and memory and neural progenitor survival in aging 3xTgAD and nonTg mice | Q35597044 | ||
Inducible activation of ERK5 MAP kinase enhances adult neurogenesis in the olfactory bulb and improves olfactory function. | Q35625750 | ||
Allopregnanolone preclinical acute pharmacokinetic and pharmacodynamic studies to predict tolerability and efficacy for Alzheimer's disease | Q35650967 | ||
Acupuncture and vitamin B12 injection for Bell's palsy: no high-quality evidence exists | Q35746345 | ||
Systemic attenuation of the TGF-β pathway by a single drug simultaneously rejuvenates hippocampal neurogenesis and myogenesis in the same old mammal | Q35828481 | ||
Neurogenic potential of progenitor cells isolated from postmortem human Parkinsonian brains | Q36024579 | ||
Bridging animal and human models of exercise-induced brain plasticity | Q36047812 | ||
Astrocytes Promote Oligodendrogenesis after White Matter Damage via Brain-Derived Neurotrophic Factor | Q36157788 | ||
New GABAergic interneurons in the adult neocortex and striatum are generated from different precursors | Q36321331 | ||
Neuronal stem cells in adults | Q36321351 | ||
NG2-expressing cells in the subventricular zone are type C-like cells and contribute to interneuron generation in the postnatal hippocampus. | Q36322398 | ||
Postnatal NG2 proteoglycan-expressing progenitor cells are intrinsically multipotent and generate functional neurons | Q36323410 | ||
Synantocytes: the fifth element | Q36347815 | ||
CD133+ neural stem cells in the ependyma of mammalian postnatal forebrain | Q36458822 | ||
Discerning Neurogenic vs. Non-Neurogenic Postnatal Lateral Ventricular Astrocytes via Activity-Dependent Input | Q36723550 | ||
The role of SVZ-derived neural precursors in demyelinating diseases: from animal models to multiple sclerosis | Q36981885 | ||
Local generation of glia is a major astrocyte source in postnatal cortex | Q37183067 | ||
Sonic hedgehog pathway activation is induced by acute brain injury and regulated by injury-related inflammation | Q37362145 | ||
Glial cells in non-germinal territories: insights into their stem/progenitor properties in the intact and injured nervous tissue. | Q37787203 | ||
The spinal cord ependymal region: a stem cell niche in the caudal central nervous system | Q37825193 | ||
The stem cell potential of glia: lessons from reactive gliosis | Q37830315 | ||
Modulation of neuronal stem cell differentiation by hypoxia and reactive oxygen species | Q37830903 | ||
Neurogenesis in Huntington's disease: can studying adult neurogenesis lead to the development of new therapeutic strategies? | Q37899578 | ||
Roles for HIF-1α in neural stem cell function and the regenerative response to stroke. | Q37922875 | ||
Adult neurogenesis in mammals--a theme with many variations. | Q37935081 | ||
Neurogenesis and progenitor cells in the adult human brain: a comparison between hippocampal and subventricular progenitor proliferation | Q38005968 | ||
Adult neurogenesis in Parkinson's disease | Q38024276 | ||
Adult-born neurons in the olfactory bulb: integration and functional consequences | Q38043362 | ||
P275 | copyright license | Creative Commons Attribution-NonCommercial 4.0 International | Q34179348 |
P6216 | copyright status | copyrighted | Q50423863 |
P433 | issue | 3 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | neurogenesis | Q1456827 |
P304 | page(s) | 103-12 | |
P577 | publication date | 2016-06-01 | |
P1433 | published in | Experimental neurobiology | Q26842060 |
P1476 | title | Adult Neurogenesis and Gliogenesis: Possible Mechanisms for Neurorestoration | |
P478 | volume | 25 |
Q39218100 | Brain Cancer Stem Cells in Adults and Children: Cell Biology and Therapeutic Implications |
Q55339590 | Expression of Cyclin-D1 in Astrocytes Varies During Aging. |
Q60046676 | Molecular Bases of Alzheimer’s Disease and Neurodegeneration: The Role of Neuroglia |
Q53397884 | Odor Enrichment Increases Hippocampal Neuron Numbers in Mouse. |
Q60911552 | Transmembrane protein 108 involves in adult neurogenesis in the hippocampal dentate gyrus |
Q92341870 | Volume increase in the dentate gyrus after electroconvulsive therapy in depressed patients as measured with 7T |
Q28079067 | α-Tocopherol and Hippocampal Neural Plasticity in Physiological and Pathological Conditions |
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