Young-Ho Son
Yonsei University · Medicine
About the Lab
Professor Young-Ho Son's research lab specializes in clinical and translational neuroscience, focusing on the pathophysiology of movement disorders such as multiple system atrophy, dystonia, and Parkinson’s disease. The lab employs advanced neurophysiological techniques—particularly transcranial magnetic stimulation (TMS)—to investigate cortical excitability, inhibitory circuits, and neuroplasticity in neurological diseases. A key research direction involves evaluating novel regenerative therapies, such as autologous mesenchymal stem cell transplantation, for neurodegenerative conditions with poor prognosis. The lab also explores biomarkers and neuroimaging correlates, including MRI and MRS, to predict and understand delayed neurological sequelae after brain injury.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15OBJECTIVE: Neuroprotective or regenerative strategies are invaluable in multiple system atrophy (MSA) due to its rapid progression with fatal prognosis. We evaluated the efficacy of autologous mesenchymal stem cells (MSC) in patients with MSA-cerebellar type (MSA-C). METHODS: Thirty-three patients with probable MSA-C and baseline unified MSA rating scale (UMSARS) scores ranging from 30 to 50 were randomly assigned to receive MSC (4 × 10(7) /injection) via intra-arterial and intravenous routes or
Disturbances in surround inhibition could account for various movement disorders. Here we test the functional operation of surround inhibition in focal hand dystonia. Transcranial magnetic stimulation was set to be triggered by self-initiated voluntary flexion of the index finger. During this movement, motor-evoked potential amplitudes from the little finger muscle were significantly suppressed in healthy subjects but enhanced in dystonia patients. This result supports the idea that disturbed su
To investigate the effect of volitional inhibition on cortical inhibitory mechanisms, we performed transcranial magnetic stimulation (TMS) studies with a Go/NoGo reaction task in seven healthy subjects. Subjects were asked to extend their right index finger only after Go, but to remain relaxed after NoGo. Single- and paired-pulse TMS were triggered at the average reaction time for the Go response in each subject after Go or NoGo cues. Motor evoked potentials were recorded in the extensor indicis
These results support the role of white matter damage in producing parkinsonism after CO poisoning and highlight the possible usefulness of magnetic resonance spectroscopy in predicting delayed sequelae in patients after CO poisoning. Arch Neurol. 2000;57:1214-1218
Although restless legs syndrome (RLS) commonly accompanies Parkinson disease (PD), the mechanism of RLS development in PD is still unclear. We investigated the prevalence of RLS in Korean patients with PD, and the possible contributing factors to the development of RLS in those patients. Four hundred forty-seven consecutive patients with PD were interviewed and examined. Among them, 73 patients (16.3%) were diagnosed with RLS. PD patients with RLS had a longer duration of PD symptoms, more sever
OBJECTIVE: To investigate whether levetiracetam (LTC) alters corticospinal excitability in humans. BACKGROUND: Although the antiepileptic activity of LTC is well recognized, its mechanism of action has yet to be determined. Transcranial magnetic stimulation (TMS) has been used to investigate the pharmacologic effects of various antiepileptic drugs on human corticospinal excitability. METHODS: The authors performed TMS before and after double-blind administration of 3000 mg LTC or placebo in six
BACKGROUND: The severity of motor symptoms in Parkinson's disease (PD) does not always correlate with the degree of nigral dopaminergic neuronal loss. Individuals with greater motor reserve may have milder motor signs than their striatal dopamine loss. In this study, we explored the functional brain network associated with motor reserve in early-stage PD. METHODS: We analyzed 134 patients with de novo PD who underwent dopamine transporter scans and resting-state functional magnetic resonance ima
INTRODUCTION: Unilateral onset and persistent asymmetry of motor signs are unique features of PD. The dominant hemisphere may have more efficient motor networks with greater neural reserve to cope with pathological changes. Therefore, this study compared dominant-side onset and non-dominant-side onset PD to evaluate whether dominant-side onset patients have greater neural reserve and fewer motor deficits despite similar pathological changes. METHODS: We included the data of 157 consecutive, de n
To investigate the effect of negative motor imagery on corticospinal excitability, we performed transcranial magnetic stimulation (TMS) studies in seven healthy subjects during imagination of suppressing movements. Subjects were asked to imagine suppression of TMS-induced twitching movement of their nondominant left hands by attempting to increase the amount of relaxation after receiving an auditory NoGo cue (negative motor imagery), but to imagine squeezing hands after a Go cue (positive motor
In order to investigate the clinical impact of polymyographic evaluation on the diagnosis of propriospinal myoclonus (PSM), we performed electromyography recordings of various truncal muscles in eight healthy volunteers while they mimicked PSM symptoms. Before the experiment, each volunteer learned how to mimic PSM by watching a videotape that showed typical PSM characteristics, i.e., brief symmetric flexion of the trunk. The recorded polymyographic patterns of all volunteers were quite compatib
Research Areas
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