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1.
Neural Plast ; 2015: 462182, 2015.
Article in English | MEDLINE | ID: mdl-26417459

ABSTRACT

Disrupted triphasic electromyography (EMG) patterns of agonist and antagonist muscle pairs during fast goal-directed movements have been found in patients with hypermetria. Since peripheral electrical stimulation (ES) and motor training may modulate motor cortical excitability through plasticity mechanisms, we aimed to investigate whether temporal ES-assisted movement training could influence premovement cortical excitability and alleviate hypermetria in patients with spinal cerebellar ataxia (SCA). The EMG of the agonist extensor carpi radialis muscle and antagonist flexor carpi radialis muscle, premovement motor evoked potentials (MEPs) of the flexor carpi radialis muscle, and the constant and variable errors of movements were assessed before and after 4 weeks of ES-assisted fast goal-directed wrist extension training in the training group and of general health education in the control group. After training, the premovement MEPs of the antagonist muscle were facilitated at 50 ms before the onset of movement. In addition, the EMG onset latency of the antagonist muscle shifted earlier and the constant error decreased significantly. In summary, temporal ES-assisted training alleviated hypermetria by restoring antagonist premovement and temporal triphasic EMG patterns in SCA patients. This technique may be applied to treat hypermetria in cerebellar disorders. (This trial is registered with NCT01983670.).


Subject(s)
Cerebellum/pathology , Electric Stimulation Therapy/methods , Movement , Spinal Cord/pathology , Adult , Atrophy , Cerebellar Ataxia/physiopathology , Cerebellar Ataxia/therapy , Electromyography , Evoked Potentials, Motor , Female , Goals , Humans , Male , Middle Aged , Muscle, Skeletal/innervation , Physical Education and Training , Psychomotor Performance , Reaction Time , Transcranial Magnetic Stimulation
2.
Article in English | MEDLINE | ID: mdl-21095689

ABSTRACT

In this paper, we developed a wireless blood pressure monitoring system which provides a useful tool for users to measure and manage their daily blood pressure values. This system includes an ARM-based blood pressure monitor with a ZigBee wireless transmission module and a PC-based management unit with graphic user interface and database. The wireless blood pressure monitor can measure the blood pressure and heart rate and then store and forward the measuring information to the management unit through the ZigBee wireless transmission. On the management unit, user can easy to see their blood pressure variation in the past using a line chart. Accuracy of blood pressure measurement has been verified by a commercial blood pressure simulator and shown the bias of systolic blood pressure is ≤ 1 mmHg and the bias of diastolic blood pressure is ≤ 1.4 mmHg.


Subject(s)
Blood Pressure Determination/instrumentation , Blood Pressure Monitoring, Ambulatory/instrumentation , Blood Pressure Monitoring, Ambulatory/methods , Blood Pressure , Blood Pressure Monitors , Calibration , Computer Communication Networks , Computer Graphics , Computer Simulation , Diastole , Equipment Design , Heart Rate , Humans , Monitoring, Physiologic/instrumentation , Monitoring, Physiologic/methods , Programming Languages , Systole
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