2008, 2nd ed., ISBN 0736063676, xi, 427
Book
2001, ISBN 9780736000284, xii, 451
Book
2008, ISBN 9789197591188, xii, 312
Book
1998, ISBN 9780880117562, x, 269
Book
2000, 2nd ed., ISBN 0834217473, xiii, 220
Book
1999, ISBN 9780750626071, x, 234
Book
1987, ISBN 0871898632, xii, 186
Book
1987, ISBN 070992240X, xii, 325
Book
2002, ISBN 0801672058, xiii, 460
Book
1997, ISBN 9780443055744, xxii, 612
Book
Physiological Reviews, ISSN 0031-9333, 10/2012, Volume 92, Issue 4, pp. 1651 - 1697
Proske U, Gandevia SC. The Proprioceptive Senses: Their Roles in Signaling Body Shape, Body Position and Movement, and Muscle Force. Physiol Rev 92: 1651-1697,...
PRIMARY MOTOR CORTEX | PHYSIOLOGY | HUMAN INDEX FINGER | CATS HIND-LIMB | ELBOW FLEXOR MUSCLES | MORMYRID ELECTROSENSORY LOBE | GOLGI TENDON ORGANS | COMMUNITY-DWELLING WOMEN | CHRONIC-FATIGUE-SYNDROME | FREQUENCY CUTANEOUS VIBRATION | PROXIMAL INTERPHALANGEAL JOINT | Proprioception - physiology | Movement - physiology | Posture - physiology | Aging - physiology | Humans | Mechanoreceptors - physiology | Muscle Spindles - physiology | Exercise - physiology | Muscle, Skeletal - physiology | Human mechanics | Physiological aspects | Research | Proprioception | Muscle spindles
PRIMARY MOTOR CORTEX | PHYSIOLOGY | HUMAN INDEX FINGER | CATS HIND-LIMB | ELBOW FLEXOR MUSCLES | MORMYRID ELECTROSENSORY LOBE | GOLGI TENDON ORGANS | COMMUNITY-DWELLING WOMEN | CHRONIC-FATIGUE-SYNDROME | FREQUENCY CUTANEOUS VIBRATION | PROXIMAL INTERPHALANGEAL JOINT | Proprioception - physiology | Movement - physiology | Posture - physiology | Aging - physiology | Humans | Mechanoreceptors - physiology | Muscle Spindles - physiology | Exercise - physiology | Muscle, Skeletal - physiology | Human mechanics | Physiological aspects | Research | Proprioception | Muscle spindles
Journal Article
2009, 4th ed., ISBN 9780470398180, xiv, 370
Book
2000, ISBN 1579990991, 48 pages
Book
1990, 2nd ed. --, ISBN 9780471509080, xvi, 277
Book
Journal of Neuroscience, ISSN 0270-6474, 04/2016, Volume 36, Issue 15, pp. 4218 - 4230
The nonlinear, metastable dynamics of the brain are essential for large-scale integration of smaller components and for the rapid organization of neurons in...
CA1 | Place cell | Rat | Dorsoventral | Oscillation | rat | dorsoventral | SELF-MOTION | VENTRAL HIPPOCAMPUS | NEURONAL POPULATIONS | NEUROSCIENCES | PYRAMIDAL CELLS | IN-VIVO | oscillation | ELECTRICAL-ACTIVITY | GAMMA OSCILLATIONS | RAT HIPPOCAMPUS | SEPTOTEMPORAL AXIS | place cell | PHASE PRECESSION | Interneurons - physiology | CA1 Region, Hippocampal - physiology | Rats, Inbred F344 | Rats | Evoked Potentials - physiology | Male | Electroencephalography | Animals | Movement - physiology | Pyramidal Cells - physiology | Models, Neurological | Hippocampus - physiology | Nonlinear Dynamics | Theta Rhythm - physiology
CA1 | Place cell | Rat | Dorsoventral | Oscillation | rat | dorsoventral | SELF-MOTION | VENTRAL HIPPOCAMPUS | NEURONAL POPULATIONS | NEUROSCIENCES | PYRAMIDAL CELLS | IN-VIVO | oscillation | ELECTRICAL-ACTIVITY | GAMMA OSCILLATIONS | RAT HIPPOCAMPUS | SEPTOTEMPORAL AXIS | place cell | PHASE PRECESSION | Interneurons - physiology | CA1 Region, Hippocampal - physiology | Rats, Inbred F344 | Rats | Evoked Potentials - physiology | Male | Electroencephalography | Animals | Movement - physiology | Pyramidal Cells - physiology | Models, Neurological | Hippocampus - physiology | Nonlinear Dynamics | Theta Rhythm - physiology
Journal Article
Journal of Biomechanics, ISSN 0021-9290, 2011, Volume 45, Issue 1, pp. 90 - 98
Abstract Humans control their movements using adaptive proprioceptive feedback from muscle afferents. The interaction between proprioceptive reflexes and...
Physical Medicine and Rehabilitation | Golgi tendon organs | Neuromuscular modeling | Force feedback | Human motion control | Dystonia | Movement disorders | Muscle spindles | IR-81592 | METIS-284067 | MUSCLE ACTIVATION | ENGINEERING, BIOMEDICAL | BASAL GANGLIA | FICTIVE LOCOMOTION | POSTURAL CONTROL | WRITERS CRAMP | MUSCULORUM DEFORMANS | IDIOPATHIC DYSTONIA | BIOPHYSICS | TRANSCRANIAL MAGNETIC STIMULATION | SYMPATHETIC DYSTROPHY | POSITIVE FORCE FEEDBACK | Humans | Reflex, Abnormal - physiology | Dystonia - physiopathology | Complex Regional Pain Syndromes - physiopathology | Movement - physiology | Movement Disorders - physiopathology | Posture - physiology | Models, Biological | Wrist - physiopathology | Computer Simulation | Muscle Contraction - physiology | Muscle, Skeletal - physiopathology | Feedback, Physiological - physiology | Muscle Strength - physiology | Biological apparatus and supplies | Analysis | Studies | Musculoskeletal system | Sensitivity analysis | Movement | Pathways | Feedback | Disorders | Muscles | Criteria | Posture | Reflexes
Physical Medicine and Rehabilitation | Golgi tendon organs | Neuromuscular modeling | Force feedback | Human motion control | Dystonia | Movement disorders | Muscle spindles | IR-81592 | METIS-284067 | MUSCLE ACTIVATION | ENGINEERING, BIOMEDICAL | BASAL GANGLIA | FICTIVE LOCOMOTION | POSTURAL CONTROL | WRITERS CRAMP | MUSCULORUM DEFORMANS | IDIOPATHIC DYSTONIA | BIOPHYSICS | TRANSCRANIAL MAGNETIC STIMULATION | SYMPATHETIC DYSTROPHY | POSITIVE FORCE FEEDBACK | Humans | Reflex, Abnormal - physiology | Dystonia - physiopathology | Complex Regional Pain Syndromes - physiopathology | Movement - physiology | Movement Disorders - physiopathology | Posture - physiology | Models, Biological | Wrist - physiopathology | Computer Simulation | Muscle Contraction - physiology | Muscle, Skeletal - physiopathology | Feedback, Physiological - physiology | Muscle Strength - physiology | Biological apparatus and supplies | Analysis | Studies | Musculoskeletal system | Sensitivity analysis | Movement | Pathways | Feedback | Disorders | Muscles | Criteria | Posture | Reflexes
Journal Article
1974, 5th ed. --, Health education, physical education, and recreational series, ISBN 0812104757, xi, 604
Book
Journal of Physiology, ISSN 0022-3751, 08/2017, Volume 595, Issue 15, pp. 5301 - 5326
textabstractKey points: Directionality, inherent to movements, has behavioural and neuronal correlates. Direction of vestibular stimulation determines motor...
directionality | plasticity | VOR adaptation | climbing fibre | purkinje cells | PHYSIOLOGY | CLIMBING FIBER INPUT | PURSUIT EYE-MOVEMENTS | PURKINJE-CELL ACTIVITY | REFLEX ADAPTATION | BIDIRECTIONAL PLASTICITY | SYNAPTIC PLASTICITY | NEUROSCIENCES | MEMORY TRACE | MUTANT MICE | SMOOTH-PURSUIT | OCULAR REFLEX | Adaptation, Physiological | Reflex, Vestibulo-Ocular - physiology | Animals | Eye Movements - physiology | Mice, Inbred C57BL | Photic Stimulation | Purkinje Cells - physiology | Neurons | Cerebellum | Potentiation | Firing pattern | Movement | Circuits | Cortex | Stimulation | Eye movements | Motor task performance | Visual perception | Eye | Learning | Mouse devices | Motor skill learning | Feedback | Purkinje cells | Vestibulo-ocular reflex | Vestibular system | Adaptation | Research Paper | Cognitive | Systems | Neuroscience ‐ Behavioural
directionality | plasticity | VOR adaptation | climbing fibre | purkinje cells | PHYSIOLOGY | CLIMBING FIBER INPUT | PURSUIT EYE-MOVEMENTS | PURKINJE-CELL ACTIVITY | REFLEX ADAPTATION | BIDIRECTIONAL PLASTICITY | SYNAPTIC PLASTICITY | NEUROSCIENCES | MEMORY TRACE | MUTANT MICE | SMOOTH-PURSUIT | OCULAR REFLEX | Adaptation, Physiological | Reflex, Vestibulo-Ocular - physiology | Animals | Eye Movements - physiology | Mice, Inbred C57BL | Photic Stimulation | Purkinje Cells - physiology | Neurons | Cerebellum | Potentiation | Firing pattern | Movement | Circuits | Cortex | Stimulation | Eye movements | Motor task performance | Visual perception | Eye | Learning | Mouse devices | Motor skill learning | Feedback | Purkinje cells | Vestibulo-ocular reflex | Vestibular system | Adaptation | Research Paper | Cognitive | Systems | Neuroscience ‐ Behavioural
Journal Article
New Phytologist, ISSN 0028-646X, 10/2012, Volume 196, Issue 1, pp. 92 - 100
Leaves of many plant species open during the day and fold at night. Diurnal leaf movement, named nyctinasty, has been of great interest to researchers since...
Leaves | Hormone metabolism | Plant growth regulators | RNA | Genes | Pulvini | Phylogenetics | Plants | Metabolism | Leaf area | Rapid reports | Medicago truncatula | PETIOLULE‐LIKE PULVINUS | pulvinus | leaf movement | nyctinasty | Nyctinasty | Pulvinus | PETIOLULE-LIKE PULVINUS | Leaf movement | PATHWAYS | SURVIVAL | HORMONE CROSSTALK | PLANT DEVELOPMENT | PLANT SCIENCES | RESPONSES | GENOMICS | GENE | BIOSYNTHESIS | STRESS | ALFALFA | Protein Structure, Tertiary | Medicago truncatula - genetics | Movement | Medicago truncatula - growth & development | Circadian Rhythm - physiology | Medicago truncatula - metabolism | Mutation - genetics | Medicago truncatula - physiology | Organ Specificity - genetics | Plant Proteins - genetics | Pulvinus - physiology | Genes, Plant - genetics | Models, Biological | Plant Proteins - chemistry | Pulvinus - growth & development | Cloning, Molecular | Gene Expression Regulation, Plant | Plant Proteins - metabolism | Pulvinus - genetics | Legumes | Beans | Mimosaceae | Analysis | Research
Leaves | Hormone metabolism | Plant growth regulators | RNA | Genes | Pulvini | Phylogenetics | Plants | Metabolism | Leaf area | Rapid reports | Medicago truncatula | PETIOLULE‐LIKE PULVINUS | pulvinus | leaf movement | nyctinasty | Nyctinasty | Pulvinus | PETIOLULE-LIKE PULVINUS | Leaf movement | PATHWAYS | SURVIVAL | HORMONE CROSSTALK | PLANT DEVELOPMENT | PLANT SCIENCES | RESPONSES | GENOMICS | GENE | BIOSYNTHESIS | STRESS | ALFALFA | Protein Structure, Tertiary | Medicago truncatula - genetics | Movement | Medicago truncatula - growth & development | Circadian Rhythm - physiology | Medicago truncatula - metabolism | Mutation - genetics | Medicago truncatula - physiology | Organ Specificity - genetics | Plant Proteins - genetics | Pulvinus - physiology | Genes, Plant - genetics | Models, Biological | Plant Proteins - chemistry | Pulvinus - growth & development | Cloning, Molecular | Gene Expression Regulation, Plant | Plant Proteins - metabolism | Pulvinus - genetics | Legumes | Beans | Mimosaceae | Analysis | Research
Journal Article
Behavioural Brain Research, ISSN 0166-4328, 05/2017, Volume 325, Issue Pt A, pp. 1 - 11
The organization of rodent exploratory behavior appears to depend on self-movement cue processing. As of yet, however, no studies have directly examined the...
Sequential analysis | Dead reckoning | Path integration | Vestibular system | Compensation | Open field behavior | FREELY MOVING RATS | CHOLINERGIC DEAFFERENTATION | HIPPOCAMPECTOMIZED RATS | RATS RATTUS-NORVEGICUS | VESTIBULAR LESIONS | NEUROSCIENCES | MUTANT MICE | TRIP ORGANIZATION | FIMBRIA-FORNIX LESIONS | DIRECTION CELL-ACTIVITY | SEMICIRCULAR CANALS | BEHAVIORAL SCIENCES | Cues | Exploratory Behavior | Otolithic Membrane - physiology | Animals | Mice, Inbred C57BL | Female | Spatial Navigation | open field behavior | compensation | dead reckoning | sequential analysis | path integration | vestibular system
Sequential analysis | Dead reckoning | Path integration | Vestibular system | Compensation | Open field behavior | FREELY MOVING RATS | CHOLINERGIC DEAFFERENTATION | HIPPOCAMPECTOMIZED RATS | RATS RATTUS-NORVEGICUS | VESTIBULAR LESIONS | NEUROSCIENCES | MUTANT MICE | TRIP ORGANIZATION | FIMBRIA-FORNIX LESIONS | DIRECTION CELL-ACTIVITY | SEMICIRCULAR CANALS | BEHAVIORAL SCIENCES | Cues | Exploratory Behavior | Otolithic Membrane - physiology | Animals | Mice, Inbred C57BL | Female | Spatial Navigation | open field behavior | compensation | dead reckoning | sequential analysis | path integration | vestibular system
Journal Article