Current practices and challenges in inverse planning for gynecologic brachytherapy: insights from a multi-institutional study.

This study investigated the feasibility and reproducibility of inverse planning (IP) in gynecologic high-dose-rate brachytherapy (BT) across ten institutions (five IP and five manual). Two pre-defined cases (high-risk clinical target volume, CTVHR: 62.8 and 27.4 cm3) included the organs at risk (OARs), a tandem, ovoids, and 8 and 3 interstitial needles, respectively. Each institution generated BT plans according to its policy, assuming 30 Gy/15 fractions of whole-pelvis irradiation and 20 Gy/10 fractions of central shielding. Plans were evaluated using dose-volume histogram (DVH) parameters. Dwell-time distributions were compared with conventional Manchester-based pear-shaped plans to identify deviations (e.g. needle dominance and high-dose characteristics) that may not be captured by DVH alone. Institutional interviews assessed clinical acceptability and optimization strategies. All plans were considered clinically acceptable, with no significant differences between IP and non-IP groups in CTVHR D90% and OARs ${{D}}_{{2}\ {\mathrm{cm}}^{{3}}}$. IP institutions used institution-specific strategies to preserve uterine dose conformity, including fixing dwell times for selected applicators and applying optimization constraints based on Manchester-derived contours, delineated ovoids or delineated uterine structures. Overall, IP plans were comparable to non-IP plans for CTVHR D90%, CTVHR V100% (cm3) and OARs ${{D}}_{{2}\ {\mathrm{cm}}^{{3}}}$. In contrast, differences in dose distribution around the uterine fundus and the wide range of the body V100% (cm3) suggested varying institutional strategies for fundus dose. These findings highlight the need for planning QA that incorporates dwell-time review in addition to DVH parameters, and provide a foundation for optimizing and standardizing IP in gynecologic BT to improve planning reproducibility and patient outcomes.

Authors

Institutions

Publication Details

Journal
PubMed
Published
2026-09-25
DOI
https://doi.org/10.1093/jrr/rrag084
Primary Topic
Endometrial and Cervical Cancer Treatments
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Current practices and challenges in inverse planning for gynecologic brachytherapy: insights from a multi-institutional study.

Tomoko Kawamura, Setsuo Tamenaga, Hiroki Ushijima, Yoshifumi Oku et al.
PubMed
Endometrial and Cervical Cancer Treatments
article

Current practices and challenges in inverse planning for gynecologic brachytherapy: insights from a multi-institutional study.

Tomoko Kawamura, Setsuo Tamenaga, Hiroki Ushijima, Yoshifumi Oku, Jun Takatsu, 安藤 謙, Ayaka Nagao, Naoya Murakami, Ueda Yoshihiro, K. Matsumoto, Hiromi Sakaguchi, Soichiro Ito, Noriyuki Okonogi, Kotaro Iijima, Tatsuya Ohno, Noriko Ii, Masahiro Morimoto, Kenji Yoshida, Kazutoshi Murata, Hiroyuki Okamoto
article en

Abstract

This study investigated the feasibility and reproducibility of inverse planning (IP) in gynecologic high-dose-rate brachytherapy (BT) across ten institutions (five IP and five manual). Two pre-defined cases (high-risk clinical target volume, CTVHR: 62.8 and 27.4 cm3) included the organs at risk (OARs), a tandem, ovoids, and 8 and 3 interstitial needles, respectively. Each institution generated BT plans according to its policy, assuming 30 Gy/15 fractions of whole-pelvis irradiation and 20 Gy/10 fractions of central shielding. Plans were evaluated using dose-volume histogram (DVH) parameters. Dwell-time distributions were compared with conventional Manchester-based pear-shaped plans to identify deviations (e.g. needle dominance and high-dose characteristics) that may not be captured by DVH alone. Institutional interviews assessed clinical acceptability and optimization strategies. All plans were considered clinically acceptable, with no significant differences between IP and non-IP groups in CTVHR D90% and OARs ${{D}}_{{2}\ {\mathrm{cm}}^{{3}}}$. IP institutions used institution-specific strategies to preserve uterine dose conformity, including fixing dwell times for selected applicators and applying optimization constraints based on Manchester-derived contours, delineated ovoids or delineated uterine structures. Overall, IP plans were comparable to non-IP plans for CTVHR D90%, CTVHR V100% (cm3) and OARs ${{D}}_{{2}\ {\mathrm{cm}}^{{3}}}$. In contrast, differences in dose distribution around the uterine fundus and the wide range of the body V100% (cm3) suggested varying institutional strategies for fundus dose. These findings highlight the need for planning QA that incorporates dwell-time review in addition to DVH parameters, and provide a foundation for optimizing and standardizing IP in gynecologic BT to improve planning reproducibility and patient outcomes.

PubMed
Kagoshima University (JP), Jikei University School of Medicine (JP), Kyushu University (JP), Gunma University (JP), Juntendo University (JP), National Institutes for Quantum Science and Technology (JP), Mie University Hospital (JP), Kagoshima University Hospital (JP), Saitama Cancer Center (JP), Tottori University Hospital (JP), Osaka International Cancer Institute (JP), Ise Red Cross Hospital (JP)
Openalex Percentile: Top 9%
Endometrial and Cervical Cancer Treatments
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.