Woo‐Keun Kwon
Korea University · Medicine
About the Lab
Professor Woo-Keun Kwon's research lab specializes in spinal and cerebrovascular disorders, with a focus on the pathophysiology of degenerative disc disease and cerebral hemodynamic improvement following revascularization surgery. The lab investigates molecular mechanisms underlying intervertebral disc degeneration under hypoxic conditions and explores minimally invasive endoscopic spinal surgery techniques for lumbar stenosis. Additionally, the lab contributes to cerebrovascular research, particularly in assessing perfusion changes after superficial temporal artery to middle cerebral artery bypass in patients with steno-occlusive diseases. Their work bridges basic science and clinical applications in spinal and cerebrovascular interventions.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15BACKGROUND: The intervertebral disc (IVD) is an avascular structure, and is therefore stable under hypoxic conditions. Previous studies have demonstrated that hypoxia might be related to symptomatic degenerative disc diseases (DDDs); however, the pathomechanism is still poorly understood. OBJECTIVE: To identify the effect of hypoxia on the production of inflammatory mediators, angiogenic factors, and extracellular matrix-regulating enzymes of IVD cells during inflammatory reactions. METHODS: Hum
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OBJECTIVES: Our purpose of this study was to assess the cerebral hemodynamic improvement with perfusion computed tomography (CT), before and after superficial temporal artery (STA) to middle cerebral artery (MCA) bypass surgery in patients with cerebrovascular steno-occlusive diseases including both moyamoya disease and nonmoyamoya steno-occlusions. MATERIALS AND METHODS: Twenty-four STA-MCA bypasses were performed to 22 patients with symptomatic cerebrovascular steno-occlusive diseases, includi
The aneurysm arising from fenestrated proximal anterior cerebral artery (ACA) is considered to be unique. The authors report a case of a 59-year-old woman who presented with a subarachnoid hemorrhage (SAH) secondary to a ruptured aneurysm originating from the fenestrated A1 segment of right ACA. The patient had another unruptured aneurysm which was located at the right middle cerebral artery bifurcation. She was successfully treated with surgical clipping for both aneurysms. From the previously
OBJECTIVE: Interlaminar endoscopic spine surgery has been introduced and utilized for lumbar lateral recess decompression. We modified this technique and utilized it for bilateral lateral recess stenoses without significant central stenosis. Here we present the surgical details and clinical outcome of ligamentum flavum sparing unilateral laminotomy for bilateral recess decompression (ULBRD). METHODS: Prospectively collected registry for full-endoscopic surgeries was reviewed retrospectively. One
Fully endoscopic lumbar surgery has emerged as an alternative technique to classic open microscopic laminectomy or discectomy. It is gaining popularity due to its advantages in terms of minimal invasiveness, while achieving equivalent clinical outcomes. Remarkable technical developments in surgical techniques and instruments have expanded the indications of this surgical method. However, as the utilization of endoscopic surgery increases, related complications inevitably arise and become major c
OBJECTIVE: We developed a novel multi-torsional mechanical stretch stress loading device for ligamentum flavum cells and evaluated its influence on the development of ligamentum flavum hypertrophy, a common cause of lumbar spinal canal stenosis. MATERIALS AND METHODS: Stretch strength of the device was optimized by applying 5% and 15% MSS loads for 24, 48, and 72 h. A cytotoxicity assay of human ligamentum flavum cells was performed and the results were compared to control (0% stress). Inflammat
Spinal cord injury (SCI) following high-energy trauma often leads to lasting neurologic deficits and severe socioeconomic impact. Effective neurointensive care, particularly in the early stages post-injury, is essential for optimizing outcomes. This review discusses the role of neurointensive care in managing SCI, emphasizing early assessment, stabilization, and intervention strategies based on recent evidence-based practices. SCI results from primary mechanical damage to the spinal cord, trigge
Research Areas
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