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1.
Kaohsiung J Med Sci ; 33(7): 344-350, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28738975

ABSTRACT

To investigate the effect of cranioplasty on rehabilitation of post-traumatic brain injury (TBI) patients, 37 patients with TBI were arranged by retrospectively assessment study. Those TBI patients receiving in-hospital rehabilitation in the Department of Rehabilitation in a medical center of South Taiwan from 2010 to 2015 were assigned into two groups: A and B. All patients entered the multidisciplinary holistic in-patient rehabilitation training for about 1 month. Patients in Group A received decompressive craniectomy (DC), patients in Group B received DC and cranioplasty. All assessments were arranged right on admission and before discharge. The functional activity evaluation included muscle power and Barthel index (BI), and cognitive function evaluation, including the Rancho Los Amigo Scale, Mini Mental State Examination (MMSE), Community Mental State Examination (CMSE), and the Luria-Nebraska Neuropsychological Battery-Screening Test Short Form (LNNBS). The results showed that there were synergetic effects of cranioplasty on post-TBI patients with rehabilitation training, especially in the BI score, and cognitive improvement in CMSE and LNNBS.


Subject(s)
Brain Injuries/rehabilitation , Brain Injuries/surgery , Cognition/physiology , Cognition Disorders/rehabilitation , Cognition Disorders/surgery , Decompressive Craniectomy , Female , Humans , Inpatients , Male , Retrospective Studies , Treatment Outcome
2.
Behav Brain Res ; 259: 186-95, 2014 Feb 01.
Article in English | MEDLINE | ID: mdl-24269498

ABSTRACT

Movement characteristics can be coded in the single neurons or in the summed activity of neural populations. However, whether neural oscillations are conditional to the frequency demand and task quality of rhythmic force regulation is still unclear. This study was undertaken to investigate EEG dynamics and behavior correlates during force-tracking at different target rates. Fourteen healthy volunteers conducted load-varying isometric abduction of the index finger by coupling the force output to sinusoidal targets at 0.5 Hz, 1.0 Hz, and 2.0 Hz. Our results showed that frequency demand significantly affected EEG delta oscillation (1-4 Hz) in the C3, CP3, CPz, and CP4 electrodes, with the greatest delta power and lowest delta peak around 1.5 Hz for slower tracking at 0.5 Hz. Those who had superior tracking congruency also manifested enhanced alpha oscillation (8-12 Hz). Alpha rhythms of the skilled performers during slow tracking spread through the whole target cycle, except for the phase of direction changes. However, the alpha rhythms centered at the mid phase of a target cycle with increasing target rate. In conclusion, our findings clearly suggest two advanced roles of cortical oscillation in rhythmic force regulation. Rate-dependent delta oscillation involves a paradigm shift in force control under different time scales. Phasic organization of alpha rhythms during rhythmic force tracking is related to behavioral success underlying the selective use of bimodal controls (feedback and feedforward processes) and the timing of attentional focus on the target's peak velocity.


Subject(s)
Alpha Rhythm/physiology , Attention/physiology , Movement/physiology , Adult , Brain Mapping , Electroencephalography , Female , Fingers/innervation , Humans , Male , Periodicity , Principal Component Analysis , Psychomotor Performance , Statistics as Topic , Young Adult
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