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Jaeman Son

Seoul National University · Medicine

About the Lab

Professor Jaeman Son's research lab specializes in advancing image-guided and adaptive radiotherapy through innovative technologies and patient-specific solutions. The lab focuses on the clinical integration of magnetic resonance-guided radiotherapy (MRgRT), particularly investigating the dosimetric effects of low-field (0.35 T) magnetic resonance systems on stereotactic ablative radiotherapy (SABR) for lung and liver cancers. A key research direction involves developing and validating patient-specific bolus techniques using 3D printing and biocompatible materials to improve dose conformity in superficial targets. The lab also pioneers respiratory motion management systems to enhance the precision of breath-hold and gating techniques in external beam radiotherapy.

MR-guided radiotherapypatient-specific bolusdose calculationrespiratory gating3D printed bolus

Research Overview

Papers
21
Total Citations
4
Papers (5y)
12
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
12total
2022
2023
2024
2025
2026
Citations per year (5y)
2total
20222023202420252026

Selected Papers

15
1
Article|2 citations·2023
Impact of 0.35 T Magnetic Field on Dose Calculation for Non-small Cell Lung Cancer Stereotactic Radiotherapy Plans
손재만, Lee Sung Young, 최창헌, Park Jong Min, Kim Jung-in
https://doi.org/10.14407/jrpr.2022.00150

Background: We investigated the impact of 0.35 T magnetic field on dose calculation for nonsmall cell lung cancer (NSCLC) stereotactic ablative radiotherapy (SABR) in the ViewRay system (ViewRay Inc.), which features a simultaneous use of magnetic resonance imaging (MRI) to guide radiotherapy for an improved targeting of tumors. Materials and Methods: Here, we present a comprehensive analysis of the effects induced by the 0.35 T magnetic field on various characteristics of SABR plans including t

2
Article|1 citations·2018
Effect of Low Magnetic Field on Dose Distribution in the SABR Plans for Liver Cancer
손재만, 전민수, 안현준, 강성희, 지의규, 윤정민, 최창헌, 박종민, 김정인
http://www.progmedphys.org/journal/view.html?uid=821&sort=&scale=&key=year&keyword=&s_v=29&s_n=2&pn=vol&year=2018&vmd=Full

To investigate the effect of low magnetic field on dose distribution in SABR plans for liver cancer, we calculated and evaluated the dose distribution to each organ with and without magnetic fields. Ten patients received a 50 Gy dose in five fractions using the ViewRay? treatment planning system. For planning target volume (PTV), the results were analyzed in the point minimum (Dmin), maximum (Dmax), mean dose (Dmean) and volume receiving at least 90% (V90%), 95% (V95%), and 100% (V100%) of the p

3
Article|1 citations·2019
Geometric Evaluation of Patient-Specific 3D Bolus from 3D Printed Mold and Casting Method for Radiation Therapy
안현준, 김명수, 김지성, 손재만, 최창헌, 박종민, 김정인
http://www.progmedphys.org/journal/view.html?uid=841&sort=&scale=&key=year&keyword=&s_v=30&s_n=1&pn=vol&year=2019&vmd=Full

Purpose: The objective of this study is to evaluate the geometrical accuracy of a patient-specific bolus based on a three-dimensional (3D) printed mold and casting method. Materials and Methods: Three breast cancer patients undergoing treatment for a superficial region were scanned using computed tomography (CT) and a designed bolus structure through a treatment planning system (TPS). For the fabrication of patient-specific bolus, we cast harmless certified silicone into 3D printed molds. The pr

4
Article|0 citations·2022
Evaluation of Treatment Plan Quality between Magnetic Resonance-Guided Radiotherapy and Volumetric Modulated Arc Therapy for Prostate Cancer
최창헌, 김진호, 손재만, 박종민, 김정인

Purpose: This study evaluated the quality of plans based on magnetic resonance-guided radiotherapy (MRgRT) tri-Co-60, linac, and conventional linac-based volumetric modulated arc therapy (linac-VMAT) for prostate cancer. Methods: Twenty patients suffering from prostate cancer with intermediate risk who were treated by MAT were selected. Additional treatment plans (primary and boost plans) were generated based on MRgRT-tri-Co-60 and MRgRT-linac. The planning target volume (PTV) of MRgRT-based pla

5
Article|0 citations·2024
Evaluations of a Commercial CLEANBOLUS-WHITE for Clinical Application
유금봉, 김정인, 손재만
https://www.progmedphys.org/journal/view.html?pn=current_issue&uid=935&vmd=Full&

Purpose: This study aimed to comprehensively investigate the diverse characteristics of a novel commercial bolus, CLEANBOLUS-WHITE (CBW), to ascertain its suitability for clinical application. Methods: The evaluation of CBW encompassed both physical and biological assessments. Physical parameters such as mass density and shore hardness were measured alongside analyses of element composition. Biological evaluations included assessments for skin irritation and cytotoxicity. Dosimetric properties w

6
Article|0 citations·2021
Assessing Commercial CLEANBOLUS Based on Silicone for Clinical Use
손재만, 정성문, 박종민, 최창헌, 김정인

Purpose: We investigated the properties of CLEANBOLUS based on silicone with suitable characteristics for clinical use. Methods: We evaluated the characteristics of CLEANBOLUS and compared the results with the commercial product (Super-Flex bolus). Also, we conducted physical evaluations, including shore hardness, element composition, and elongation break. Transparency was investigated through the measured absorbance within the visible region (400–700 nm). Also, dosimetric characteristics were i

7
Article|0 citations·2022
Development of a Breath Control Training System for Breath-Hold Techniques and Respiratory-Gated Radiation Therapy
전형진, 김정인, 박종민, 손재만

Purpose: This study aimed to develop a breath control training system for breath-hold technique and respiratory-gated radiation therapy wherein the patients can learn breath-hold techniques in their convenient environment. Methods: The breath control training system comprises a sensor device and software. The sensor device uses a loadcell sensor and an adjustable strap around the chest to acquire respiratory signals. The device connects via Bluetooth to a computer where the software is installed

8
Article|0 citations·2024
A Commissioning Report on the Magnetic Resonance-Compatible Geneva Brachytherapy Applicator
허윤석, 박효준, 제갈진, 이인범, 손재만, 강성희, 최창헌, 김정인, 진형민
https://www.progmedphys.org/journal/view.html?pn=current_issue&uid=947&vmd=Full&

Purpose: Brachytherapy is essential for treating gynecological cancers as it offers precise radiation delivery to tumors while minimizing radiation exposure to surrounding healthy tissues. The Geneva applicator, introduced in 2020 as a replacement for older models like the Utrecht applicator, enhances MRI-based brachytherapy with improved imaging capabilities and more accurate applicator placement. In 2021, updates to non-reimbursement policies in Korea for MRI-based 3D brachytherapy planning fu

9
Article|0 citations·2026
A Phase I/II Trial to Evaluate the Safety and Efficacy of Continuous Positive Airway Pressure in Volumetric Modulated Arc Therapy for Breast Cancer
Jung Bin Park, Tosol Yu, Jaeman Son, Chulwon Choi, Seho Kwon, Hyun-Woo Shin, Hak Jae Kim, Ji Hyun Chang
SJR Q1Cancer Research and TreatmentOA

CPAP demonstrated both safety and efficacy for breast cancer RT, achieving significant reductions in cardiac and pulmonary radiation exposure. These findings support further investigation of CPAP as a novel respiratory motion management strategy. Future studies are warranted to identify optimal CPAP pressure levels to facilitate broader clinical implementation.

OncologyMedicine
10
Article|0 citations·2018
Verification of Mechanical Leaf Gap Error and VMAT Dose Distribution on Varian VitalBeamTM Linear Accelerator
김명수, 최창헌, 안현준, 손재만, 박소현
http://www.progmedphys.org/journal/view.html?uid=824&sort=&scale=&key=year&keyword=&s_v=29&s_n=2&pn=vol&year=2018&vmd=Full

The proper position of a multi-leaf collimator (MLC) is essential for the quality of intensity-modulated radiation therapy (IMRT) and volumetric modulated arc radiotherapy (VMAT) dose delivery. Task Group (TG) 142 provides a quality assurance (QA) procedure for MLC position. Our study investigated the QA validation of the mechanical leaf gap measurement and the maintenance procedure. Two VitalBeamTM systems were evaluated to validate the acceptance of an MLC position. The dosimetric leaf gaps (D

11
Article|0 citations·2018
Efficient Verification of X-ray Target Replacement for the C-series High Energy Linear Accelerator
조진동, 전민수, 손재만, 안현준, 윤정민, 최창헌, 김정인, 박종민, 김진성
http://www.progmedphys.org/journal/view.html?uid=827&sort=&scale=&key=year&keyword=&s_v=29&s_n=3&pn=vol&year=2018&vmd=Full

The manufacturer of a linear accelerator (LINAC) has reported that the target melting phenomenon could be caused by a non-recommended output setting and the excessive use of monitor unit (MU) with intensity-modulated radiation therapy (IMRT). Due to these reasons, we observed an unexpected beam interruption during the treatment of a patient in our institution. The target status was inspected and a replacement of the target was determined. After the target replacement, the beam profile was adjust

12
Article|0 citations·2019
The Accuracy of the Calculated Dose for a Cardiac Implantable Electronic Device
성지원, 손재만, 박종민, 김정인, 최창헌
http://www.progmedphys.org/journal/view.html?uid=857&sort=book_Seq&scale=&key=year&keyword=&s_v=30&s_n=4&pn=vol&year=2019&vmd=Full

The objective of this study is to monitor the radiation doses delivered to a cardiac implantable electronic device (CIED) by comparing the absorbed doses calculated by a commercial treatment planning system (TPS) to those measured by an in vivo dosimeter. Accurate monitoring of the radiation absorbed by a CIED during radiotherapy is necessary to prevent damage to the device. We conducted this study on three patients, who had the CIED inserted and were to be treated with radiotherapy. Treatment p

13
Article|0 citations·2018
Verification of Extended Source-To-Imager Distance (SID) Correction for Portal Dosimetry
손재만, 김정인, 최창헌
http://www.progmedphys.org/journal/view.html?uid=832&sort=&scale=&key=year&keyword=&s_v=29&s_n=4&pn=vol&year=2018&vmd=Full

This study aimed to evaluate and verify a process for correcting the extended source-to-imager distance (SID) in portal dosimetry (PD). In this study, eight treatment plans (four volumetric modulated arc therapy and four intensity-modulated radiation therapy plans) at different treatment sites and beam energies were selected for measurement. A Varian PD system with portal dose image prediction (PDIP) was used for the measurement and verification. To verify the integrity of the plan, independent

14
Article|0 citations·2023
Comparison between Old and New Versions of Electron Monte Carlo (eMC) Dose Calculation
정성문, 손재만, 진형민, 강성희, 박종민, 김정인, 최창헌
https://www.progmedphys.org/journal/view.html?pn=current_issue&uid=929&vmd=Full&

This study compared the dose calculated using the electron Monte Carlo (eMC) dose calculation algorithm employing the old version (eMC V13.7) of the Varian Eclipse treatment-planning system (TPS) and its newer version (eMC V16.1). The eMC V16.1 was configured using the same beam data as the eMC V13.7. Beam data measured using the VitalBeam linear accelerator were implemented. A box-shaped water phantom (30×30×30 cm3) was generated in the TPS. Consequently, the TPS with eMC V13.7 and eMC V16.1 ca

15
Article|0 citations·2019
Acceptance Test and Clinical Commissioning of CT Simulator
안현준, 손재만, 진형민, 성지원, 전민수
http://www.progmedphys.org/journal/view.html?uid=859&sort=book_Seq&scale=&key=year&keyword=&s_v=30&s_n=4&pn=vol&year=2019&vmd=Full

This study examined the clinical use of two newly installed computed tomography (CT) simulators in the Department of Radiation Oncology. The accreditation procedure was performed by the Korean Institute for Accreditation of Medical Imaging. An Xi R/F dosimeter was used to measure the CT dose index for each plug of the CT dose index phantom. Image qualities such as the Hounsfield unit (HU) value of water, noise level, homogeneity, existence of artifacts, spatial resolution, contrast, and slice th

Research Areas

Oncology

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