김동익 교수
Dongik Kim
성균관대학교 의학과 · 의학
연구실 소개
김동익 교수의 연구실은 뇌 기능 연결성과 정신질환, 특히 조현병의 신경생물학적 기반을 fMRI를 활용해 탐색하는 데 초점을 맞추고 있습니다. 또한 말초동맥질환 환자를 대상으로 한 혈관신생 유도 치료, 특히 유전자 치료 및 자가 골수줄기세포 이식을 통한 혈관재생 전략을 개발하고 있습니다. 이와 더불어 레이저 공정 제어 및 나노구조 분석 기술 등 정밀 재료 공학 분야의 응용 연구도 병행하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Deficits in the connectivity between brain regions have been suggested to play a major role in the pathophysiology of schizophrenia. A functional magnetic resonance imaging (fMRI) analysis of schizophrenia was implemented using independent component analysis (ICA) to identify multiple temporally cohesive, spatially distributed regions of brain activity that represent functionally connected networks. We hypothesized that functional connectivity differences would be seen in auditory networks compr
This phase 1 clinical trial tested the safety of intramuscular gene transfer by using naked plasmid DNA encoding the gene for VEGF, and analyzed the potential therapeutic benefits in patients with severe peripheral arterial disease (PAD). This study was an open-labeled, dose- escalating, single-center trial on nine male patients with severe debilitating PAD who had not responded to conventional therapy. Seven had Buerger's disease and two had arteriosclerosis obliterans. Plasmid DNA (pCK) contai
We hypothesized that angiogenesis can be triggered by autologous whole bone marrow stem cell transplantation. Twenty-seven patients (34 lower limbs) with Buerger's disease, who were not candidates for surgical revascularization or radiologic intervention, were enrolled in this study. Six sites of the tibia bone were fenestrated using a 2.5-mm-diameter screw under fluoroscopic guidance. Clinical status and outcome were determined using the "Recommended Standards for Reports." To mobilize endothel
MRI is likely to modify the traditional role of angiography for the management of VM and become a new standard, at least for diagnosis. MRI also is an excellent parameter in the assessment of treatment results.
Transmitted Kikuchi diffraction (TKD) is an emerging SEM-based technique that enables investigation of highly refined grain structures. It offers higher spatial resolution by utilizing conventional electron backscattered diffraction equipment on electron-transparent samples. A successful attempt has been made to reveal nano-oxide grain structures as well as ultrafine severely deformed metallic grains. The effect of electron beam current was studied. Higher beam currents enhance pattern contrast
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