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Biology subjects

Cheng, M.-Y.

Publications and source records attributed to Cheng, M.-Y..

2 recordsLinked to original sources

The Effects of Different Fatigue Types on Action Anticipation and Physical Performance in High-level Volleyball Players

This study examined the effects of different fatigue types on action anticipation and physical performance in high-level volleyball players. Twenty-four participants underwent four counterbalanced conditions: 60-min of cycling at 60% peak power output, 60-min Stroop task, 60-min cycling at 60% peak power output with Stroop task and 60-min neutral documentary to induce physical fatigue (PF), mental fatigue (MF), dual fatigue (DF) and control group (CG), respectively. Action anticipation (anticipation test and visual search test) and physical performance (countermovement jump, T-test, and spike test) were conducted at baseline, immediately after (Post1), and 40-min after fatigue intervention (Post2). DF and PF led to significantly lower jump height, T-test completion time, and spiking speed at Post1 and Post2 compared with CG and MF. Compared with PF, DF led to a significant decline in jumping, agility, and spiking performance at Post1 and decreased jumping performance at Post2. MF significantly decreased reaction time in the anticipation test at Post1 compared with CG. Reaction times in the visual search test were significantly lower with DF and MF at Post2 compared with CG. PF led to a greater decline in physical performance and this was exacerbated in DF, yet anticipation performance remained lesser impact.

physiology↗

Quantitative monitoring of neuronal regeneration by functional assay and wireless neural recording

Brain injury is heterozygous in nature and no single scheme is ideal for diagnosis and prognosis. Assessing proteins in cerebrospinal fluid is limited or not applicable after surgery whereas plasma biomarkers can only report occurrence of injury. The lack of regeneration markers renders the difficulty during drug discovery. This study aims to establish a potential reporter that correlates the regeneration progress of injured brain neurons. According to our recent publication, treatment of mitochondrial uncoupler carbonyl cyanide 4-(trifluoromethoxy) phenylhydrazone (FCCP) could rescue motor function deficit of mice after traumatic brain injury. We thus measured the local field potential (LFP) at sites proximal to the injury region. The recorded neuronal activity reported stimulation of right forelimb of mice. Our experimental results indicate that the recovery of evoked LFP correlates with FCCP treatment and could potentially be used as a regeneration biomarker. These promising findings suggest future application of a wireless, non-invasive recording system as a potential companion diagnosis device during drug development.

bioengineering↗