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Journal of Mathematical Analysis and Applications, ISSN 0022-247X, 09/2017, Volume 453, Issue 1, pp. 398 - 409
There are two symmetric families of four-body co-circular central configurations, namely the kite and isosceles trapezoid. Using mutual distances as... 
Isosceles trapezoid | Co-circular central configurations | Four-body problem | Mutual distances | Kite | MATHEMATICS | 4 BODIES | MATHEMATICS, APPLIED | SYMMETRY | FINITENESS | CONVEX CENTRAL CONFIGURATIONS | EQUAL MASSES | Management science
Journal Article
Journal Article
Frontiers in Neural Circuits, ISSN 1662-5110, 07/2014, Volume 8, Issue JULY, p. 83
Journal Article
The Journal of Neuroscience, ISSN 0270-6474, 08/2017, Volume 37, Issue 34, p. 8239
Plasticity of myelination represents a mechanism to tune the flow of information by balancing functional requirements with metabolic and spatial constraints.... 
Plasticity (auditory) | Conduction | Hearing protectors | Trapezoid body | Myelin | Brain stem | Spatial discrimination | Central nervous system | Impairment | Firing rate | Action potential | Hearing loss | Fibers | Axons | Myelination | Protective equipment | Plasticity | Information processing | Auditory system | Sensory neurons | Plastic properties | Ear protectors
Journal Article
Journal of Geometry and Physics, ISSN 0393-0440, 04/2017, Volume 114, pp. 329 - 335
For any convex non-collinear central configuration of the planar Newtonian 4-body problem with adjacent equal masses , with equal lengths for the two... 
Isosceles trapezoid | Triangle areas | Four-body problem | Convex central configurations | MATHEMATICS, APPLIED | SYMMETRY | PHYSICS, MATHEMATICAL
Journal Article
Journal Article
Journal of Comparative Neurology, ISSN 0021-9967, 11/2017, Volume 525, Issue 16, pp. 3543 - 3562
Hyperexcitability and the imbalance of excitation/inhibition are one of the leading causes of abnormal sensory processing in Fragile X syndrome (FXS). The... 
glutamic acid | RRID: AB_2278725 | RRID: AB_1587626 | glycine | sound localization | brain stem | fragile X syndrome | gamma‐aminobutyric acid | RRID: AB_2619997 | gamma-aminobutyric acid | RAT | PRINCIPAL CELLS | COCHLEAR NUCLEUS | GLYCINE-IMMUNOREACTIVE PROJECTIONS | NEUROSCIENCES | AUDITORY BRAIN-STEM | ZOOLOGY | BINAURAL INTERACTION | IN-VIVO | SUPERIOR OLIVARY COMPLEX | MENTAL-RETARDATION PROTEIN | Fragile X Syndrome - genetics | Neural Inhibition - genetics | Glycine - metabolism | Glycine Plasma Membrane Transport Proteins - metabolism | Gene Expression Regulation - genetics | Sound Localization - physiology | Mice, Inbred C57BL | Vesicular Glutamate Transport Protein 2 - metabolism | Fragile X Syndrome - pathology | Male | Mice, Transgenic | Fragile X Mental Retardation Protein - metabolism | Trapezoid Body - pathology | Auditory Pathways - pathology | Animals | Glutamate Decarboxylase - metabolism | Female | Fragile X Mental Retardation Protein - genetics | Glutamic Acid - metabolism | Mice | Neurons - metabolism | Disease Models, Animal | GABA | Fragile X syndrome | Glycine | Glutamate | Trapezoid body | Brain stem | Sound localization | Sound | Nuclei | Mental retardation | γ-Aminobutyric acid | Fragile X mental retardation protein | Neurotransmitters | Alterations | Mouse devices | Sensory integration | Rodents | Information processing | Excitation | Inhibition | Immunofluorescence | Position (location) | Localization | gamma-Aminobutyric Acid | Glutamic Acid | Sound Localization | Brain Stem
Journal Article
Brain Structure and Function, ISSN 1863-2653, 5/2016, Volume 221, Issue 4, pp. 2303 - 2317
Journal Article
Journal of Hand Surgery, ISSN 0363-5023, 2009, Volume 34, Issue 8, pp. 1388 - 1392
Journal Article