Hye-Yeon Seo
Seoul National University
About the Lab
Professor Hye-Yeon Seo's research lab focuses on oncology nursing and cancer survivorship care, with an emphasis on improving patient outcomes through knowledge dissemination and psychological support. The lab investigates hereditary breast cancer awareness, anxiety management in cancer patients, and the implementation of survivorship care practices among oncology nurses in Korea. Additionally, the lab explores molecular imaging techniques, particularly using 64Cu-labeled tracers to detect endogenous hydrogen sulfide, a key gasotransmitter involved in inflammation and hypoxia. These interdisciplinary efforts bridge clinical nursing science with molecular imaging innovation.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
3Purpose: The purpose of the study was to understand the levels of knowledge about hereditary breast cancer and anxiety among patients with breast cancer and to identify the relationship between knowledge and anxiety. Methods: The data were collected from 100 patients with breast cancer in Seoul in 2013. A 15-item hereditary breast cancer knowledge questionnaire and 20-item anxiety state questionnaire were used to measure knowledge and anxiety, respectively. The data were analyzed using descripti
Purpose: The purpose of this study was to examine the cancer survivorship care practices among oncology nurses in Korea. Methods: This study was a secondary analysis based on the Korean data from the international service-mapping study for the survivorship care for patients with cancer after treatment completion in the Asia-Pacific Region. The data, collected from 100 Korean nurses who took care of cancer patients, were analyzed using descriptive statistics, t-test, ANOVA, Pearson’s correlation
Hydrogen sulfide (H2S), recognized as the third gasotransmitter with specific implications for inflammation and hypoxia, exhibits affinity for 64Cu immobilization. This study explores the viability of 64Cu-labeled PET tracers in detecting endogenous H2S. In vitro reactivity experiments involved evaluating the interaction between various concentrations of NaHS and 64Cu-labeled chelators at 37℃ in a shaking incubator. In vivo molecular PET imaging studies were conducted using two distinct mouse mo
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