The effect of posture on the normal and pathological auditory startle reflex. 1991

P Brown, and B L Day, and J C Rothwell, and P D Thompson, and C D Marsden
MRC Human Movement and Balance Unit, Institute of Neurology, London, UK.

The effect of posture on the EMG pattern of the normal auditory startle reflex was investigated. The startle response to an unexpected auditory tone was studied in eleven normal subjects when standing, and in six normal subjects when sitting relaxed or tonically plantar flexing both feet. Reflex EMG activity was recorded in the tibialis anterior and soleus about twice as frequently when standing, than when sitting relaxed. In addition, the median latencies to onset of reflex EMG activity in the tibialis anterior and soleus were about 40 and 60 ms shorter during standing, than when sitting relaxed. No short latency EMG activity was recorded in the calf muscles during tonic plantar flexion of the feet, while sitting. The effect of posture on the EMG pattern of the pathological auditory startle reflex was studied in five patients with hyperekplexia. In three patients the latency to onset of reflex EMG activity in the tibialis anterior was shorter when standing, than when sitting relaxed. The EMG pattern of the reflex response to sound was studied in detail in two of these patients and consisted of up to three successive components. The expression of each EMG component depended on the postural set of the limbs. In particular, a distinct short latency component was found in posturally important muscles following auditory stimulation. This short latency component was not recorded when sitting relaxed. It is concluded that the EMG pattern of the physiological and pathological auditory startle response is not fixed, but may change with the postural stance of the body. This finding supports the theory that the normal startle reflex and the abnormal startle reflex in hyperekplexia have a common brainstem origin.

UI MeSH Term Description Entries
D008297 Male Males
D008875 Middle Aged An adult aged 45 - 64 years. Middle Age
D009127 Muscle Rigidity Continuous involuntary sustained muscle contraction which is often a manifestation of BASAL GANGLIA DISEASES. When an affected muscle is passively stretched, the degree of resistance remains constant regardless of the rate at which the muscle is stretched. This feature helps to distinguish rigidity from MUSCLE SPASTICITY. (From Adams et al., Principles of Neurology, 6th ed, p73) Cogwheel Rigidity,Extrapyramidal Rigidity,Gegenhalten,Nuchal Rigidity,Rigidity, Muscular,Catatonic Rigidity,Extensor Rigidity,Cogwheel Rigidities,Gegenhaltens,Muscular Rigidity,Rigidities, Cogwheel,Rigidity, Catatonic,Rigidity, Cogwheel,Rigidity, Extensor,Rigidity, Extrapyramidal,Rigidity, Muscle,Rigidity, Nuchal
D009132 Muscles Contractile tissue that produces movement in animals. Muscle Tissue,Muscle,Muscle Tissues,Tissue, Muscle,Tissues, Muscle
D011187 Posture The position or physical attitude of the body. Postures
D011930 Reaction Time The time from the onset of a stimulus until a response is observed. Response Latency,Response Speed,Response Time,Latency, Response,Reaction Times,Response Latencies,Response Times,Speed, Response,Speeds, Response
D012021 Reflex, Abnormal An abnormal response to a stimulus applied to the sensory components of the nervous system. This may take the form of increased, decreased, or absent reflexes. Hyperreflexia,Hyporeflexia,Abnormal Deep Tendon Reflex,Abnormal Reflex,Abnormal Reflexes,Bulbocavernosus Reflex, Decreased,Bulbocavernousus Reflex Absent,Hoffman's Reflex,Palmo-Mental Reflex,Reflex, Absent,Reflex, Acoustic, Abnormal,Reflex, Anal, Absent,Reflex, Anal, Decreased,Reflex, Ankle, Abnormal,Reflex, Ankle, Absent,Reflex, Ankle, Decreased,Reflex, Biceps, Abnormal,Reflex, Biceps, Absent,Reflex, Biceps, Decreased,Reflex, Corneal, Absent,Reflex, Corneal, Decreased,Reflex, Decreased,Reflex, Deep Tendon, Abnormal,Reflex, Deep Tendon, Absent,Reflex, Gag, Absent,Reflex, Gag, Decreased,Reflex, Knee, Abnormal,Reflex, Knee, Decreased,Reflex, Moro, Asymmetric,Reflex, Pendular,Reflex, Triceps, Abnormal,Reflex, Triceps, Absent,Reflex, Triceps, Decreased,Reflexes, Abnormal,Absent Reflex,Decreased Bulbocavernosus Reflex,Decreased Reflex,Palmo Mental Reflex,Pendular Reflex,Reflex Absent, Bulbocavernousus,Reflex, Decreased Bulbocavernosus,Reflex, Hoffman's,Reflex, Palmo-Mental
D001925 Brain Damage, Chronic A condition characterized by long-standing brain dysfunction or damage, usually of three months duration or longer. Potential etiologies include BRAIN INFARCTION; certain NEURODEGENERATIVE DISORDERS; CRANIOCEREBRAL TRAUMA; ANOXIA, BRAIN; ENCEPHALITIS; certain NEUROTOXICITY SYNDROMES; metabolic disorders (see BRAIN DISEASES, METABOLIC); and other conditions. Encephalopathy, Chronic,Chronic Encephalopathy,Chronic Brain Damage
D001933 Brain Stem The part of the brain that connects the CEREBRAL HEMISPHERES with the SPINAL CORD. It consists of the MESENCEPHALON; PONS; and MEDULLA OBLONGATA. Brainstem,Truncus Cerebri,Brain Stems,Brainstems,Cerebri, Truncus,Cerebrus, Truncus,Truncus Cerebrus
D004576 Electromyography Recording of the changes in electric potential of muscle by means of surface or needle electrodes. Electromyogram,Surface Electromyography,Electromyograms,Electromyographies,Electromyographies, Surface,Electromyography, Surface,Surface Electromyographies

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