Seung Jae Heo
Sungkyunkwan University · 医学
研究室紹介
Professor Seung Jae Heo's research lab specializes in radiation oncology and advanced radiotherapy techniques, with a focus on improving treatment outcomes for cervical cancer and other malignancies through image-guided brachytherapy and intensity-modulated radiation therapy (IMRT). The lab investigates the biological and clinical impacts of radiation dose optimization, including the use of FDG-PET/CT for accurate target delineation and the effects of physiological factors like bladder distention on treatment planning. They also explore molecular mechanisms of tumor suppression, particularly in melanoma, to identify novel therapeutic targets.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Lymph node metastasis was a poor prognostic factor and adjuvant RT may be useful in patients with microscopic residual tumor. However, because there were high loco-regional recurrences, additional study is needed to determine more effective RT such as increased RT dose or use of radiosensitizers.
The use of IMRT is steadily increasing to treat cancer and is concentrated in metropolitan areas.
Patterns of cancer incidence, use of radiotherapy and infrastructure, and national HIS are very similar between Korea and Japan. However, there are some differences in health insurance management systems for advanced radiation technologies.
This study sought to evaluate the differential effects of bladder distention on point A-based (AICBT) and three-dimensional conformal intracavitary brachytherapy (3D-ICBT) planning for cervical cancer. Two sets of CT scans were obtained for ten patients to evaluate the effect of bladder distention. After the first CT scan, with an empty bladder, a second set of CT scans was obtained with the bladder filled. The clinical target volume (CTV), bladder, rectum, and small bowel were delineated on eac
The aim of the study was to evaluate the treatment outcomes in cervical cancer patients treated with 18F-fluorodeoxyglucose (FDG)-positron emission tomography (PET)/computed tomography (CT)-guided 3-dimensional brachytherapy (3D-BT) planning for the first brachytherapy session.We retrospectively analyzed 87 patients with cervical cancer who received definitive radiotherapy (RT). Primary tumor size was ≤4 cm in 22 patients (25.3%), >4 cm and ≤6 cm in 45 patients (51.7%), and >6 cm in 20 patients
BACKGROUND: A putative tumor suppressor gene at chromosome 10p15, which contains KLF6 and other genes, is predicted to be lost during melanoma development, and its identity is unknown. In this study, we investigated the biological roles and identity of this tumor suppressor gene. METHODS: The human UACC 903 melanoma cell line containing introduced DNA fragments from the 10p15 region with (10E6/3, 10E6/11, and 10E6/18) and without (10ER4S.2/1) the tumor suppressor gene was used. Xenograft tumors