Jong-Ho Kim
경희대학교 행정학과 · 의학
김종호 교수의 연구실은 건강 행동과 정서적 웰빙을 중심으로 한 휴식과 운동의 상호작용을 심층적으로 탐구하며, 특히 대학생을 대상으로 한 스트레스 대처 전략과 레저 활동의 영향을 질적·양적 방법으로 분석하고 있습니다. 동시에 나노소재 기반의 혁신적 센서 기술과 약물 전달 시스템 개발을 통해 의료 및 헬스케어 분야의 응용 가능성을 모색하고 있습니다. 특히 생체 적합성 있는 고분자 기반 나노입자와 전기적·기계적 성능을 동시에 확보한 센서 기술이 핵심 연구 주제입니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
This study aims at investigating the in-depth information regarding impacts of physical exercise on psychological well-being in university students with an emphasis on coping with stress in the context of leisure. A qualitative research, based on interview to draw findings in an inductive way, was conducted. Nine university students (N = 9) in a large mid-west university took part in a face- to face, semi-structured interviews using ten open-ended questions with respect to benefits of leisure ti
Force sensors have attracted tremendous attention owing to their applications in various fields such as touch screens, robots, smart scales, and wearable devices. The force sensors reported so far have been mainly focused on high sensitivity based on delicate microstructured materials, resulting in low reproducibility and high fabrication cost that are limitations for wide applications. As an alternative, we demonstrate a novel capacitive-type force sensor with enhanced performance owing to the
Intracellular thiol can trigger effective drug release from polymeric nanoparticles having multiple disulfide linkages in the hydrophobic domain.
Background: Research on health behavior within the context of leisure and stress coping in university students is limited. Purpose: This study investigated the associations between leisure, health behavior, and perceived stress in university students. Other impacts, such as gender, grade point average (GPA), body mass index (BMI), and parents’ education on stress and health behavior, were also examined. Method: Researchers employed a cross-sectional research design by distributing surveys in cla
Nanotechnology, including self-aggregated nanoparticles, has shown high effectiveness in the treatment of solid tumors. To overcome the limitations of conventional cancer therapies and promote therapeutic efficacy, a combination of PDT and chemotherapy can be considered an effective strategy for cancer treatment. This study presents the development of tumor-targeting polysialic acid (PSA) nanoparticles for chemo-PDT to increase the cellular uptake and cytotoxic effect in cancer cells. Chlorin e6