Body Composition and Setup Errors in Radiotherapy (BODY-SET)
2026年6月23日 更新者:Chaoxing Liu、Shijiazhuang People's Hospital
The Impact of Body Composition on Setup Errors in Patients Undergoing Radiotherapy With Thermoplastic Mask Immobilization: A Single-Center Prospective Cohort Study
This single-center prospective cohort study investigates the association between body composition parameters and setup errors in 120-150 patients receiving radiotherapy with thermoplastic mask immobilization.
Body composition (skeletal muscle mass, body fat percentage, phase angle, fat-free mass) will be measured using bioelectrical impedance analysis at baseline and at fraction 20.
Setup errors (six degrees of freedom) will be recorded via daily cone-beam computed tomography.
The primary outcome is the association between baseline body composition and setup errors.
Secondary outcomes include the relationship between body composition changes during radiotherapy and setup error evolution, and identification of threshold values for clinically significant setup error increases.
This study will provide evidence on whether body composition-beyond BMI-predicts radiotherapy setup accuracy, potentially enabling personalized immobilization and image-guided strategies.
研究概览
地位
尚未招聘
条件
详细说明
Radiotherapy is a cornerstone of cancer treatment, with approximately 50-70% of patients requiring radiotherapy during their disease course.
Accurate patient positioning is essential for ensuring adequate target volume coverage while sparing organs at risk.
Thermoplastic masks are among the most commonly used immobilization devices; however, setup reproducibility varies considerably among patients.
Previous studies have demonstrated that patients with BMI ≥24 kg/m² exhibit significantly greater setup errors across multiple directions in breast, cervical, and thoracic cancers compared with normal-weight patients.
However, BMI is a crude anthropometric measure that cannot distinguish between fat and muscle mass-two tissue types with fundamentally different mechanical properties that may affect mask fit and positional reproducibility.
Bioelectrical impedance analysis (BIA) provides a non-invasive, convenient method for measuring body composition parameters, including skeletal muscle mass (SMM), body fat percentage (BFP), phase angle (PhA), and fat-free mass (FFM).
Phase angle, in particular, reflects cell membrane integrity and cellular mass, and has been validated as a sensitive marker of muscle quality and nutritional status in cancer patients.
However, the value of BIA-derived body composition parameters in predicting radiotherapy setup errors has not been systematically explored.
This study is a single-center, prospective observational cohort study conducted at the Department of Radiation Oncology, Shijiazhuang People's Hospital, China.
A total of 120-150 patients with pathologically confirmed malignancies receiving radical or adjuvant intensity-modulated radiotherapy (≥25 fractions) with thermoplastic mask immobilization will be enrolled.
Body composition parameters will be measured using BIA at baseline (T0) and at fraction 20 (T1).
Setup errors (six degrees of freedom: Tx, Ty, Tz, Rx, Ry, Rz) will be recorded via cone-beam computed tomography (week 1: 3 times; thereafter: weekly).
The primary outcome is the association between baseline body composition parameters and setup errors.
Secondary outcomes include the relationship between body composition changes and setup error evolution, and identification of threshold values for clinically significant setup error increases.
Data will be analyzed using multiple linear regression and generalized estimating equations.
Results will be disseminated through peer-reviewed publications and conference presentations.
研究类型
观察性的
注册 (估计的)
150
联系人和位置
本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。
学习联系方式
- 姓名:Chaoxing Liu, Dr
- 电话号码:86 17603119780
- 邮箱:15130068099@163.com
研究联系人备份
- 姓名:Xiaoyan Wang, Dr
- 电话号码:86 15031163260
- 邮箱:15031163260@163.com
参与标准
研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。
资格标准
适合学习的年龄
- 成人
- 年长者
接受健康志愿者
不
取样方法
概率样本
研究人群
Patients with pathologically confirmed malignancies receiving radical or adjuvant intensity-modulated radiotherapy at Shijiazhuang People's Hospital.
描述
Inclusion Criteria:
- Pathologically confirmed malignancy
- Age ≥18 years
- Receiving radical or adjuvant intensity-modulated radiotherapy (IMRT) with planned ≥25 fractions
- Immobilized with thermoplastic mask
- ECOG Performance Status 0-2
- Willing and able to provide written informed consent
Exclusion Criteria:
- Metal implants (pacemaker, artificial joints) affecting bioelectrical impedance analysis (BIA) measurements
- Severe edema or ascites
- Inability to cooperate with immobilization or CBCT scanning
- Radiotherapy interruption >5 fractions
- Pregnancy or lactation
学习计划
本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。
研究是如何设计的?
设计细节
队列和干预
团体/队列 |
|---|
|
High Muscle Mass Group
Patients with skeletal muscle mass above the sex-specific median
|
|
Low Muscle Mass Group
Patients with skeletal muscle mass below the sex-specific median
|
研究衡量的是什么?
主要结果指标
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
|
setup errors
大体时间:Through study completion, an average of 6 months.
|
Six-degree-of-freedom setup errors (Tx, Ty, Tz, Rx, Ry, Rz) measured by cone-beam computed tomography (CBCT).
|
Through study completion, an average of 6 months.
|
次要结果测量
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
|
Change in Skeletal Muscle Mass
大体时间:Baseline and fraction 20 (approximately 4 weeks after baseline)
|
Change in skeletal muscle mass (SMM) from baseline (T0) to radiotherapy fraction 20 (T1), measured by multi-frequency bioelectrical impedance analysis (BIA).
SMM is expressed in kilograms (kg).
|
Baseline and fraction 20 (approximately 4 weeks after baseline)
|
|
Change in Body Fat Percentage
大体时间:Baseline and fraction 20 (approximately 4 weeks after baseline).
|
Change in body fat percentage (BFP) from baseline (T0) to radiotherapy fraction 20 (T1), measured by multi-frequency bioelectrical impedance analysis (BIA).
BFP is expressed as a percentage (%).
|
Baseline and fraction 20 (approximately 4 weeks after baseline).
|
|
Change in Phase Angle
大体时间:Baseline and fraction 20 (approximately 4 weeks after baseline)
|
Change in phase angle (PhA) from baseline (T0) to radiotherapy fraction 20 (T1), measured by multi-frequency bioelectrical impedance analysis (BIA).
PhA is expressed in degrees (°).
|
Baseline and fraction 20 (approximately 4 weeks after baseline)
|
|
Change in Fat-Free Mass
大体时间:Baseline and fraction 20 (approximately 4 weeks after baseline)
|
Change in fat-free mass (FFM) from baseline (T0) to radiotherapy fraction 20 (T1), measured by multi-frequency bioelectrical impedance analysis (BIA).
FFM is expressed in kilograms (kg).
|
Baseline and fraction 20 (approximately 4 weeks after baseline)
|
合作者和调查者
在这里您可以找到参与这项研究的人员和组织。
调查人员
- 首席研究员:Chaoxing Liu, Dr、Shijiazhuang People's Hospital
出版物和有用的链接
负责输入研究信息的人员自愿提供这些出版物。这些可能与研究有关。
一般刊物
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- Chan AW, Tetzlaff JM, Altman DG, Laupacis A, Gotzsche PC, Krleza-Jeric K, Hrobjartsson A, Mann H, Dickersin K, Berlin JA, Dore CJ, Parulekar WR, Summerskill WS, Groves T, Schulz KF, Sox HC, Rockhold FW, Rennie D, Moher D. SPIRIT 2013 statement: defining standard protocol items for clinical trials. Ann Intern Med. 2013 Feb 5;158(3):200-7. doi: 10.7326/0003-4819-158-3-201302050-00583.
- Kecojevic A, Ranken R, Ecker DJ, Massire C, Sampath R, Blyn LB, Hsieh YH, Rothman RE, Gaydos CA. Rapid PCR/ESI-MS-based molecular genotyping of Staphylococcus aureus from nasal swabs of emergency department patients. BMC Infect Dis. 2014 Jan 9;14:16. doi: 10.1186/1471-2334-14-16.
- Polack S, Adams M, O'banion D, Baltussen M, Asante S, Kerac M, Gladstone M, Zuurmond M. Children with cerebral palsy in Ghana: malnutrition, feeding challenges, and caregiver quality of life. Dev Med Child Neurol. 2018 Sep;60(9):914-921. doi: 10.1111/dmcn.13797. Epub 2018 May 7.
- Dai X, Feng J, Chen Y, Huang S, Shi X, Liu X, Sun Y. Traditional Chinese Medicine in nonalcoholic fatty liver disease: molecular insights and therapeutic perspectives. Chin Med. 2021 Aug 3;16(1):68. doi: 10.1186/s13020-021-00469-4.
- Dou S, Ding H, Jiang W, Li R, Qian Y, Wu S, Ling Y, Zhu G. Effect of oral supplements on the nutritional status of nasopharyngeal carcinoma patients undergoing concurrent chemotherapy: A randomized controlled Phase II trial. J Cancer Res Ther. 2020;16(7):1678-1685. doi: 10.4103/jcrt.JCRT_273_20.
- Kohli K, Corns R, Vinnakota K, Steiner P, Elith C, Schellenberg D, Kwan W, Karvat A. A bioimpedance analysis of head-and-neck cancer patients undergoing radiotherapy. Curr Oncol. 2018 Jun;25(3):e193-e199. doi: 10.3747/co.25.3920. Epub 2018 Jun 28.
- Toussaint ND, Pedagogos E, Lioufas NM, Elder GJ, Pascoe EM, Badve SV, Valks A, Block GA, Boudville N, Cameron JD, Campbell KL, Chen SSM, Faull RJ, Holt SG, Jackson D, Jardine MJ, Johnson DW, Kerr PG, Lau KK, Hooi LS, Narayan O, Perkovic V, Polkinghorne KR, Pollock CA, Reidlinger D, Robison L, Smith ER, Walker RJ, Wang AYM, Hawley CM; IMPROVE-CKD Trial Investigators. A Randomized Trial on the Effect of Phosphate Reduction on Vascular End Points in CKD (IMPROVE-CKD). J Am Soc Nephrol. 2020 Nov;31(11):2653-2666. doi: 10.1681/ASN.2020040411. Epub 2020 Sep 11.
- Bas D, Atahan C, Tezcanli E. An analysis of phase angle and standard phase angle cut-off values and their association with survival in head and neck cancer patients undergoing radiotherapy. Clin Nutr. 2023 Aug;42(8):1445-1453. doi: 10.1016/j.clnu.2023.06.020. Epub 2023 Jul 6.
- Prior-Sanchez I, Herrera-Martinez AD, Zarco-Martin MT, Fernandez-Jimenez R, Gonzalo-Marin M, Munoz-Garach A, Vilchez-Lopez FJ, Cayon-Blanco M, Villarrubia-Pozo A, Munoz-Jimenez C, Zarco-Rodriguez FP, Rabat-Restrepo JM, Luengo-Perez LM, Boughanem H, Martinez-Ramirez MJ, Garcia-Almeida JM. Prognostic value of bioelectrical impedance analysis in head and neck cancer patients undergoing radiotherapy: a VALOR(R) study. Front Nutr. 2024 Feb 22;11:1335052. doi: 10.3389/fnut.2024.1335052. eCollection 2024.
- Chen J, Guo Y, Wang C, Lin S, Shao L, Lan L, Guo F. Univariate and multivariate analysis of the styrofoam fixation device on patient setup errors in radiotherapy. J Appl Clin Med Phys. 2025 Jul;26(7):e70181. doi: 10.1002/acm2.70181.
- Ruan J, Huang X, Wang T, Mai X, Lin C, Li F, Li Y, Chi F, Li B. Impact of belly board immobilization devices and body mass factor on setup displacement using daily cone-beam CT in rectal cancer radiotherapy. J Appl Clin Med Phys. 2025 Mar;26(3):e14573. doi: 10.1002/acm2.14573. Epub 2024 Nov 29.
- Baba AY, Ahmad A, Baba OY, Shahid M. Assessing Axis-specific Set-up Errors in Rectal Cancer Radiotherapy: A Prospective Cone-beam Computed Tomography-Based Study with Body Mass Index Correlation. J Med Phys. 2025 Oct-Dec;50(4):731-736. doi: 10.4103/jmp.jmp_123_25. Epub 2025 Dec 31.
- Mulla Z, Hashem R, AlMohamad A, Weber A, Habibullah H, Abdulmoula G, Mohiuddin MG, Ujaimi R. Effect of Body Mass Factors on Setup Displacement in Gynecologic Tumors and Subsequent Effect on PTV Margins. Adv Radiat Oncol. 2022 Oct 25;8(1):101108. doi: 10.1016/j.adro.2022.101108. eCollection 2023 Jan-Feb.
- Costin IC, Marcu LG. Impact of immobilization system angle, body mass index and breast size on breast radiotherapy accuracy using EPID-only setup. Heliyon. 2025 Jan 22;11(3):e42176. doi: 10.1016/j.heliyon.2025.e42176. eCollection 2025 Feb 15.
- Wan B, Huan FK, Ge YD, Zhao RA, Zheng YT, Liang M, Zhang YX, Zhang W, Hou L, Zhang Y, Wang HK. Influence of Site, Surgery, and BMI Binary Classification on Positioning Errors in Radiotherapy for Breast Cancer Patients: A Retrospective Study. Cancer Rep (Hoboken). 2025 Sep;8(9):e70343. doi: 10.1002/cnr2.70343.
研究记录日期
这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。
研究主要日期
学习开始 (估计的)
2026年7月1日
初级完成 (估计的)
2026年12月31日
研究完成 (估计的)
2027年3月31日
研究注册日期
首次提交
2026年6月18日
首先提交符合 QC 标准的
2026年6月23日
首次发布 (实际的)
2026年6月30日
研究记录更新
最后更新发布 (实际的)
2026年6月30日
上次提交的符合 QC 标准的更新
2026年6月23日
最后验证
2026年6月1日
更多信息
与本研究相关的术语
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不
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研究美国 FDA 监管的药品
不
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不
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