Cheol-Hwan Park
Yonsei University · Medicine
About the Lab
Professor Cheol-Hwan Park's research lab specializes in advanced medical imaging and reconstructive surgery, with a focus on improving diagnostic accuracy in cardiovascular and musculoskeletal conditions through innovative CT and MRI techniques. The lab also conducts pioneering work in microvascular reconstruction, particularly using anatomically reliable flaps such as the chondrocutaneous postauricular flap for complex facial defects. Additionally, the lab contributes to the standardization of imaging protocols and anatomical classification systems, especially in congenital ear deformities and lung transplantation size matching. Their interdisciplinary approach bridges radiology, cardiac imaging, and plastic surgery to enhance clinical outcomes through precise, non-invasive diagnostics and safe, aesthetic surgical reconstruction.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15CAC quantification with NCCT using a wide detector, high pitch, and high temporal resolution scanning modes correlates very highly with ECG-gated CaCT, and 1.25-mm slice thickness NCCT images are more reliable than other NCCT images.
An improved burying method for salvaging an amputated auricle is presented. We elevated a mastoid skin flap and a fascial flap simultaneously and inserted the denuded auricular cartilage between them. This procedure can maintain the auricular cartilage in a more natural form by eliminating undue skin tension and can give a favorable aesthetic result.
Use of the auriculomastoid region as a donor-site for a microvascular free flap is still not the general consensus. This report presents three patients with composite tissue defects of the face aesthetically reconstructed with a chondrocutaneous postauricular free flap. For its safe surgical application, additional anatomic knowledge was refined with cadaver study. Use of the chondrocutaneous postauricular free flap has some merits. Its dissection is straightforward and safer than when only the
BACKGROUND: The classification and corrective methods for the constricted ears continue to be controversial. To clarify them, the authors have reviewed and analyzed cases operated on at their Center from January of 1992 to January of 2014. METHODS: A total of 164 ear cases (involving 139 patients), showing features of lidded helix, compression of scapha and fossa triangularis, and/or cup-like protrusions, were included in their study (microtias with constricted ear features were excluded) and re
Donor-recipient size matching in lung transplantation (LTx) by computed tomography lung volume (CTvol) may be a reasonable approach because size matching is an anatomical issue. The purpose of this study is to evaluate the feasibility of CTvol as a surrogate marker of size matching in LTx by comparing CTvol and predicted total lung capacity (pTLC) to reference total lung capacity (TLC) values.From January to December 2014, data from 400 patients who underwent plethysmography, pulmonary function
The diagnosis of myocarditis can be challenging given that symptoms, clinical exam findings, electrocardiogram results, biomarkers, and echocardiogram results are often non-specific. Endocardial biopsy is an established method for diagnosing myocarditis, but carries the risk of complications and false negative results. Cardiac magnetic resonance imaging (MRI) has become the primary non-invasive imaging tool in patients with suspected myocarditis. Myocarditis can be diagnosed by using three tissu
Research Areas
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