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PLoS ONE, ISSN 1932-6203, 07/2007, Volume 2, Issue 7, p. e588
Background. The cellular basis of long term radiation damage in the brain is not fully understood. Methods and Findings. We administered a dose of 25Gy to... 
BIOLOGY | Interneurons - physiology | Myelin Sheath - radiation effects | Olfactory Bulb - radiation effects | Humans | Radiotherapy - adverse effects | Necrosis | Cerebral Ventricles - physiology | Corpus Callosum - radiation effects | Female | Oligodendroglia - radiation effects | Interneurons - radiation effects | Olfactory Bulb - pathology | Myelin Sheath - pathology | Stem Cells - radiation effects | Cell Division - radiation effects | Rats | Brain - radiation effects | Cerebral Ventricles - radiation effects | Corpus Callosum - anatomy & histology | Rats, Sprague-Dawley | Cerebral Cortex - radiation effects | S100 Calcium Binding Protein G - metabolism | Magnetic Resonance Imaging | Animals | Calbindin 2 | S100 Calcium Binding Protein G - radiation effects | Radiotherapy - methods | Brain | Brain damage | Brain research | Radiotherapy | Stem cells | Radiation | Neuroimaging | Neuropathology | Pathogenesis | DNA damage | Nervous system | Neurosurgery | Neurogenesis | Cancer therapies | Glial stem cells | Cell growth | Sheaths | Demyelination | Precursors | Rodents | Radiation injuries | Radiation shielding | Dosimetry | Capillaries | Background radiation | Post-radiation | Medical research | Preservation | Calretinin | Myelin | Radiation therapy | Substantia alba | Corpus callosum | Endothelium | Studies | Pathology | Hypotheses | Magnetic resonance imaging | Neural stem cells | Olfactory bulb | Brain injury | Radiation damage
Journal Article
Journal of Neurophysiology, ISSN 0022-3077, 04/2004, Volume 91, Issue 4, pp. 1832 - 1839
In the rat, some findings have been taken to suggest the existence of monosynaptic corticomotoneuronal (CM) connections. Because this connection is believed to... 
PATHWAYS | TRACT | MOVEMENTS | PHYSIOLOGY | FORELIMB MOTONEURONS | CAT | CORTICOSPINAL EXCITATION | SPINAL-CORD | PROPRIOSPINAL NEURONS | RATTUS-NORVEGICUS | NEUROSCIENCES | LESIONS | Interneurons - physiology | Evoked Potentials - radiation effects | Electric Stimulation | Rats, Wistar | Reticular Formation - physiology | Synapses - radiation effects | Spinal Cord - radiation effects | Male | Motor Neurons - radiation effects | Neural Pathways - physiology | Excitatory Postsynaptic Potentials - physiology | Neural Inhibition - physiology | Neural Inhibition - radiation effects | Reticular Formation - radiation effects | Neural Pathways - radiation effects | Female | Interneurons - radiation effects | Spinal Cord - cytology | Neural Networks (Computer) | Decerebrate State - physiopathology | Motor Neurons - physiology | Synapses - physiology | Rats | Functional Laterality | Animals | Reticular Formation - cytology | Spinal Cord - physiology | Synapses - classification | Rats; Wistar | Neural Inhibition/physiology/radiation effects | Synapses/classification/physiology/radiation effects | Evoked Potentials/radiation effects | Spinal Cord/cytology/physiology/radiation effects | Reticular Formation/cytology/physiology/radiation effects | Decerebrate State/physiopathology | Motor Neurons/physiology/radiation effects | Excitatory Postsynaptic Potentials/physiology | Neural Pathways/physiology/radiation effects | Interneurons/physiology/radiation effects
Journal Article
Journal Article
Neuron, ISSN 0896-6273, 2008, Volume 60, Issue 2, pp. 328 - 342
Drosophila vision is mediated by inputs from three types of photoreceptor neurons; R1–R6 mediate achromatic motion detection, while R7 and R8 constitute two... 
SYSNEURO | MOLNEURO | COLOR-VISION | RETINAL GANGLION-CELLS | WILD-TYPE | STARBURST AMACRINE CELLS | LIGHT RESPONSE | CHLORIDE CHANNEL SUBUNITS | OPTIC LOBE | TARGET SPECIFICITY | VISUAL-SYSTEM | MELANOGASTER | NEUROSCIENCES | Interneurons - physiology | Drosophila melanogaster - physiology | Synaptic Transmission - physiology | Photoreceptor Cells, Invertebrate - radiation effects | Compound Eye, Arthropod - physiology | Photoreceptor Cells, Invertebrate - physiology | Visual Pathways - cytology | Optic Lobe, Nonmammalian - cytology | Synapses - radiation effects | Amacrine Cells - cytology | Color Vision - radiation effects | Visual Pathways - radiation effects | Amacrine Cells - radiation effects | Light Signal Transduction - radiation effects | Visual Pathways - physiology | Ultraviolet Rays | Color Vision - physiology | Interneurons - cytology | Interneurons - radiation effects | Photoreceptor Cells, Invertebrate - cytology | Light Signal Transduction - physiology | Synapses - physiology | Drosophila melanogaster - cytology | Compound Eye, Arthropod - cytology | Synapses - ultrastructure | Amacrine Cells - physiology | Animals | Synaptic Transmission - radiation effects | Optic Lobe, Nonmammalian - physiology | Compound Eye, Arthropod - radiation effects | Photic Stimulation | Medical law | Neurons | Neural networks | Drosophila | Insects | Microscopy | Color | Photoreceptors | Behavior | Preferences | Gene expression
Journal Article
Journal of Neuroscience, ISSN 0270-6474, 04/2005, Volume 25, Issue 15, pp. 3857 - 3869
Discharge activities and local field potentials were recorded in the orofacial motor cortex and in the corresponding rostrolateral striatum of... 
Striatum | GABAergic | Basal ganglia | Spiny neuron | Parvalbumin | Interneuron | basal ganglia | NEUROSCIENCES | spiny neuron | ORGANIZATION | RESPONSES | PARVALBUMIN-IMMUNOREACTIVE NEURONS | FIRING PATTERNS | striatum | MEMBRANE-POTENTIAL FLUCTUATIONS | CORTEX | parvalbumin | GABAERGIC INTERNEURONS | interneuron | SYNAPTIC POTENTIALS | MEDIUM SPINY NEURONS | NEOSTRIATAL NEURONS | Interneurons - physiology | Evoked Potentials - radiation effects | Neural Pathways - drug effects | gamma-Aminobutyric Acid - metabolism | Parvalbumins - metabolism | Evoked Potentials - physiology | Corpus Striatum - cytology | Neural Pathways - physiology | Neural Inhibition - physiology | Neural Inhibition - radiation effects | Time Factors | Neural Pathways - radiation effects | Reaction Time - drug effects | Action Potentials - radiation effects | Biotin - metabolism | Functional Laterality - physiology | Interneurons - radiation effects | Electric Stimulation - methods | Action Potentials - drug effects | Fluorescent Antibody Technique - methods | Rats | Reaction Time - physiology | Rats, Sprague-Dawley | GABA Antagonists - pharmacology | Action Potentials - physiology | Cerebral Cortex - radiation effects | Animals | Neural Pathways - cytology | Picrotoxin - pharmacology | Cerebral Cortex - physiology | Dose-Response Relationship, Radiation | Neural Inhibition - drug effects | Biotin - analogs & derivatives | Reaction Time - radiation effects | Behavioral | Cognitive | Systems
Journal Article
Experimental Neurology, ISSN 0014-4886, 2009, Volume 220, Issue 1, pp. 177 - 182
Journal Article
Experimental Brain Research, ISSN 0014-4819, 6/2004, Volume 156, Issue 4, pp. 439 - 443
Journal Article
Journal Article
Nature, ISSN 0028-0836, 12/2016, Volume 540, Issue 7632, pp. 230 - 235
Journal Article
Proceedings of the National Academy of Sciences of the United States of America, ISSN 0027-8424, 5/2012, Volume 109, Issue 19, pp. 7499 - 7504
We describe a method for light-inducible and tissue-selective cell ablation using a genetically encoded photosensitizer, miniSOG (mini singlet oxygen... 
Locomotion | Motor neurons | Larvae | Genetic code | Interneurons | Neurons | Transgenic animals | Medical genetics | Fluorescence | Convulsions | Reactive oxygen species | Optogenetics | Pre-motor interneurons | Light inducible | CORD | ZEBRAFISH | MULTIDISCIPLINARY SCIENCES | locomotion | optogenetics | SENSITIVITY | IMPORT | light inducible | pre-motor interneurons | reactive oxygen species | C-ELEGANS | EXPRESSION | CIRCUIT | Cell Death - radiation effects | Caenorhabditis elegans Proteins - metabolism | Neurons - cytology | Motor Neurons - radiation effects | Singlet Oxygen - metabolism | Caspases - metabolism | Time Factors | Light | Motor Neurons - cytology | Interneurons - cytology | Membrane Proteins - metabolism | Neurons - metabolism | Interneurons - radiation effects | Receptors, Nicotinic - metabolism | Caenorhabditis elegans - metabolism | Flavoproteins - metabolism | Animals, Genetically Modified | Caenorhabditis elegans - genetics | Caspases - genetics | Flavoproteins - genetics | Membrane Proteins - genetics | Mitochondria - metabolism | Cell Survival - radiation effects | Motor Neurons - metabolism | Microscopy, Confocal | Animals | Caenorhabditis elegans - cytology | Interneurons - metabolism | Luminescent Proteins - genetics | Neurons - radiation effects | Caenorhabditis elegans Proteins - genetics | Dose-Response Relationship, Radiation | Receptors, Nicotinic - genetics | Microscopy, Fluorescence | Luminescent Proteins - metabolism | Physiological aspects | Caenorhabditis elegans | Research | Active oxygen | Cells | Biological Sciences
Journal Article
Developmental Neurobiology, ISSN 1932-8451, 04/2016, Volume 76, Issue 4, pp. 390 - 404
Journal Article
Journal Article