Eunjung Lee
Yonsei University · 医学
研究室紹介
Professor Eunjung Lee's research lab specializes in advanced functional materials and biomedical technologies, with a focus on nanomaterials for optoelectronics, piezoelectric nanogenerators, and AI-driven medical diagnostics. The lab develops innovative devices such as electrically tunable graphene-based fiber optics and high-performance nanocomposite generators for energy harvesting, while also pioneering deep learning applications in thyroid cancer detection using ultrasound. Additionally, the lab explores minimally invasive therapeutic technologies, including magnetic resonance-guided focused ultrasound for neurological disorders. These interdisciplinary efforts bridge materials science, biomedical engineering, and artificial intelligence to create smart, responsive, and clinically impactful solutions.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Active manipulation of light in optical fibres has been extensively studied with great interest because of its compatibility with diverse fibre-optic systems. While graphene exhibits a strong electro-optic effect originating from its gapless Dirac-fermionic band structure, electric control of all-fibre graphene devices remains still highly challenging. Here we report electrically manipulable in-line graphene devices by integrating graphene-based field effect transistors on a side-polished fibre.
A high-performance piezoelectric nanocomposite generator (PNG) based on chemically reinforced composites is demonstrated by incorporating amine-functionalized lead zirconate titanate (PZT-NH<sub>2</sub>) nanoparticles into a polymer matrix.
BACKGROUND: We designed a deep convolutional neural network (CNN) to diagnose thyroid malignancy on ultrasound (US) and compared the diagnostic performance of CNN with that of experienced radiologists. METHODS: Between May 2012 and February 2015, 589 thyroid nodules in 519 patients were diagnosed as benign or malignant by surgical excision. Experienced radiologists retrospectively reviewed the US of the thyroid nodules in a test set. CNNs were trained and tested using retrospective data of 439 a
Magnetic resonance-guided focused ultrasound (MRgFUS) is an emerging new technology with considerable potential to treat various neurological diseases. With refinement of ultrasound transducer technology and integration with magnetic resonance imaging guidance, transcranial sonication of precise cerebral targets has become a therapeutic option. Intensity is a key determinant of ultrasound effects. High-intensity focused ultrasound can produce targeted lesions via thermal ablation of tissue. MRgF
OBJECTIVE: To perform a meta-analysis on the distribution and characteristics of the obstructive site in patients with obstructive sleep apnea (OSA) using data from a variety of published studies that evaluated the obstruction with drug-induced sleep endoscopy (DISE). METHODS: A literature search was performed to identify studies in which DISE was used to identify the obstruction site in adult patients with OSA, and the obstruction site was described in sufficient detail. Four items were evaluat
Kaempferide, kaempferol, and galangin belong to flavonol, one of flavonoid classes. Even they have the same moiety as flavonol, their binding affinities for a hexahistidine-tagged C-terminal nucleotide-binding domain are different with each other. The dissociation constants of flavonol, kaempferide, kaempferol, and galangin are 10.1, 4.5, 6.7, and 5.3 mM, respectively. Galangin contains two more hydroxyl groups than flavonol, and kaempferol has three more hydroxyl groups. Kaempferide differs wit
In this study, depending on the degree of smartphone addictiveness, the differences in high-school students’ impulsivity and perceived parenting attitudes were investigated. The subjects were 562 tenth grade students(252 boys and 310 girls) from five high schools in Seoul. The instruments were a self-diagnostic scale developed by National Information Society Agency(NIA, 2011) for smartphone addiction of the adolescents, the impulsivity scale BIS 11 editions(Lee, 1992), the parent's autonomy and
Advanced glycation end products (AGEs) play a causative role in the development of diabetic nephropathy via induction of matrix protein deposition in kidneys. This study investigated inhibitory effects of chrysin, present in bee propolis and herbs, on glomerulosclerosis in db/db mice and AGEs-exposed renal mesangial cells. The in vivo study explored the demoting effects of 10 mg/kg chrysin on glomerular fibrosis in a type 2 diabetic model. Oral supplementation of chrysin inhibited the collagen f