
浏览全部资源
扫码关注微信
复旦大学附属肿瘤医院放射治疗中心,复旦大学上海医学院肿瘤学系,上海 200032
[ "第一作者:崔健淳(ORCID:0009-0007-5325-3916),技师。" ]
陆 维(ORCID:0009-0003-2935-7302),主管技师,复旦大学附属肿瘤医院放疗科技术组副组长。
收稿:2024-05-23,
修回:2024-09-12,
纸质出版:2024-10-30
移动端阅览
崔健淳, 陆维, 李乾永. 体表引导自动摆位在盆腔肿瘤放疗中的临床应用价值[J]. 中国癌症杂志, 2024,34(10):966-971.
Jianchun CUI, Wei LU, Qianyong LI. Clinical application value of surface-guided automatic positioning in pelvic tumor radiotherapy[J]. China Oncology, 2024, 34(10): 966-971.
崔健淳, 陆维, 李乾永. 体表引导自动摆位在盆腔肿瘤放疗中的临床应用价值[J]. 中国癌症杂志, 2024,34(10):966-971. DOI: 10.19401/j.cnki.1007-3639.2024.10.006.
Jianchun CUI, Wei LU, Qianyong LI. Clinical application value of surface-guided automatic positioning in pelvic tumor radiotherapy[J]. China Oncology, 2024, 34(10): 966-971. DOI: 10.19401/j.cnki.1007-3639.2024.10.006.
背景与目的:
放疗作为对抗盆腔肿瘤的重要手段,如何增进放疗准确性且提高疗效成为目前研究的重点。本研究旨在比较分析体表引导放射治疗(surface guided radiation therapy,SGRT)自动摆位与传统体表标记摆位在患者临床放疗时摆位误差大小方面的影响。
方法:
回顾性分析复旦大学附属肿瘤医院2023年4月—2024年4月接受放射治疗且行简易体位固定方法的盆腔肿瘤患者。按照两种摆位技术准则进行摆位后采集锥形束X射线计算机体层成像(cone beam computed tomography,CBCT)影像,与初始定位参考CT图像进行六维方向的比对后校正治疗。记录六维方向的校正误差值,使用SPSS 27.0对两组患者数据进行统计学分析,计算均值、标准差及数值在不同区间分布的个案数与概率,并对观察组患者进行六维方向的相关程度进行分析。
结果:
共50例患者纳入本研究,其中观察组患者(25例)采用自动摆位标记,对照组患者采用(25例)体表标记。两组相比较仅在头脚与俯仰角方向出现显著差异(
P
<
0.05)。观察组各方向误差小于3 mm及小于1°的个案数(概率)分别为108(86.4%)、93(74.4%)、108(86.4%)及96(76
.8%)、111(88.8%)、107(85.6%),对照组为113(90.4%)、107(85.6%)、118(94.4%)和71(56.8%)、95(76.0%)、110(88.0%)。Spearman相关系数分析显示,观察组中左右与俯仰角、横滚角及偏转角方向呈负相关,其余方向均呈正相关,其中头脚与俯仰角、左右与横滚角、俯仰角与横滚角的差异有统计学意义(
P
<
0.05),且呈正相关关系(
r
= 0.270、
r
= 0.301、
r
= 0.247)。
结论:
应用SGRT自动摆位可以达到常规体表标记线摆位的效果,在旋转方向调整具有优势,在条件允许的情况下可以替代体表标记线摆位。
Background and purpose:
Radiotherapy is an important means to treat pelvic tumors. It is important to improve the accuracy of radiotherapy and enhance the effectiveness. This study aimed to compare and analyze the influence of positioning errors during the radiotherapy of patients using surface guided radiotherapy (SGRT) automatic positioning versus traditional surface marking positioning.
Methods:
We performed a retrospective analysis of 50 patients with pelvic tumors who received radiotherapy and had simple positioning fixation methods at the Fudan University Shanghai Cancer Center from April 2023 to April 2024. A total of 25 patients were treated using SGRT (observation group)
and 25 patients were treated using traditional surface marking (control group). After positioning according to the two positioning techniques
cone beam computed tomography (CBCT) images were collected. These data were compared with the initial reference computed tomography (CT) images within 6 dimensions. The correction error values of the six dimensions were recorded. We calculated the averages
standard deviations
and the number of cases and probabilities in different interval distributions. SPSS 27.0 was used to perform statistical analysis of the data from the two groups of patients. We also analyzed the correlation of patients in the observation group within the 6 dimensions.
Results:
The non-parametric test showed significant differences in only the LNG and PITCH directions (
P
<
0.05). The number of cases (probability)
in the observation group with errors less than 3 mm and less than 1 were 108 (86.4%)
93 (74.4%)
108 (86.4%)
and 96 (76.8%)
111 (88.8%)
107 (85.6%)
respectively. In the control group
the numbers were 113 (90.4%)
107 (85.6%)
118 (94.4%)
and 71 (56.8%)
95 (76.0%)
110 (88.0%)
respectively. The Spearman correlation analysis showed that in the observation group
the left-right direction had a negative correlation with pitch
roll and yaw
while all other directions were positively correlated. Statistically significant positive correlations (
P
<
0.05) were found between the superior-inferior and pitch directions
left-right and roll directions
as well as pitch and roll directions
with positive correlation coefficients (
r
= 0.270
r
= 0.301
and
r
= 0.247).
Conclusion:
The application of SGRT automatic positioning can achieve the effect of regular surface marking line positioning
has advantages in rotation direction adjustment
and can replace surface marking line positioning where conditions permit.
VISWANATHAN A N , LEE L J , ESWARA J R , et al. Complications of pelvic radiation in patients treated for gynecologic malignancies [J ] . Cancer , 2014 , 120 ( 24 ): 3870 - 3883 . DOI: 10.1002/cncr.28849 http://doi.org/10.1002/cncr.28849
TREURNIET-DONKER A D , VAN PUTTEN W L , WERELDSMA J C , et al. Postoperative radiation therapy for rectal cancer. An interim analysis of a prospective, randomized multicenter trial in The Netherlands [J ] . Cancer , 1991 , 67 ( 8 ): 2042 - 2048 .
COX J D , GUSE C , ASBELL S , et al. Tolerance of pelvic normal tissues to hyperfractionated radiation therapy: results of Protocol 83-08 of the Radiation Therapy Oncology Group [J ] . Int J Radiat Oncol Biol Phys , 1988 , 15 ( 6 ): 1331 - 1336 .
D’AMBROSIO D J , BAYOUTH J , CHETTY I J , et al. Continuous localization technologies for radiotherapy delivery: report of the American Society for Radiation Oncology Emerging Technology Committee [J ] . Pract Radiat Oncol , 2012 , 2 ( 2 ): 145 - 150 . DOI: 10.1016/j.prro.2011.10.005 http://doi.org/10.1016/j.prro.2011.10.005
沈晶 , 陈琬琦 , 侯晓荣 , 等 . 光学体表监测技术引导的放射治疗应用现状与前景 [J ] . 2024 , 15 ( 1 ): 135 - 140 .
SHEN J , CHEN W Q , HOU X R , et al. Current status and prospects of radiation therapy guided by optical surface monitoring technology [J ] . Med J Peking Union Medical College Hospital , 2024 , 15 ( 1 ): 135 - 140 .
RIGLEY J , ROBERTSON P , SCATTERGOOD L . Radiotherapy without tattoos: could this work? [J ] . Radiography , 2020 , 26 ( 4 ): 288 - 293 . DOI: S1078-8174(20)30017-1 http://doi.org/S1078-8174(20)30017-1
SEWAK S , GRAHAM P , NANKERVIS J . Tattoo allergy in patients receiving adjuvant radiotherapy for breast cancer [J ] . Australas Radiol , 1999 , 43 ( 4 ): 558 - 561 .
李鹏 , 李长龙 , 张明涛 , 等 . 六点标记法提高盆腔肿瘤放疗摆位精度 [J ] . 中国医学物理学杂志 , 2015 , 32 ( 4 ): 578 - 581 .
LI P , LI C L , ZHANG M T , et al. Improving the setup accuracy in radiotherapy for pelvic tumors by six marks location method [J ] . Chin J Med Phys , 2015 , 32 ( 4 ): 578 - 581 .
王宇 , 唐斌 , 王相飞 , 等 . 光学体表引导技术在放射治疗中的应用进展 [J ] . 肿瘤预防与治疗 , 2023 , 36 ( 1 ): 75 - 81 .
WANG Y , TANG B , WANG X F . Advances in application of optical surface guidance in radiotherapy [J ] . J Cancer Control Treat , 2023 , 36 ( 1 ): 75 - 81 .
LIU J , CUI Z , SUN T , et al. Dosimetry study of radiation toxicity in young patients with mediastinal lymphoma by the use of an inclined board and deep inspiration breath-holding, under the guidance of an optical surface management system [J ] . Int J Radiat Oncol Biol Physics , 2022 , 114 ( suppl 3 ): e351-e352.
LI T , LIU Q , ZHANG T , et al. The accuracy of surface guided hypofractionated radiotherapy for intracranial metastasis with open face mask immobilization [J ] . Int J Radiat Oncol Biol Phys , 2021 , 111 ( suppl 3 ): e534.
JIANG X , ZHU Q . The feasibility of markerless positioning on breast-conserving radiotherapy patients [J ] . Int J Radiat Oncol Biol Phys , 2022 , 114 ( suppl 3 ): e17-e18.
易良波 , 岳海振 , 李俊禹 , 等 . CBCT引导下对三维治疗床与六维治疗床配准放疗摆位误差的研究 [J ] . 中国医疗设备 , 2024 , 39 ( 4 ): 47 - 52 .
YI L B , YUE H Z , LI J Y , et al. Analysis of setup errors in radiotherapy between three-dimensional treatment couch and six-dimensional treatment couch registration by cone beam CT image [J ] . China Med Devices , 2024 , 39 ( 4 ): 47 - 52 .
姜树坤 , 王俊杰 , 王皓 , 等 . 六自由度床在直肠癌术前放疗影像引导放射治疗中减小摆位误差的作用 [J ] . 中华肿瘤杂志 , 2021 , 43 ( 1 ): 155 - 159 .
JIANG S K , WANG J J , WANG H , et al. Assessment of setup errors of IGRT combined with a six degrees of freedom bed for patients with primary rectal cancer [J ] . Chin J Oncol , 2021 , 43 ( 1 ): 155 - 159 .
郇福奎 , 冯鑫 , 芦凤玉 , 等 . 光学表面监测系统引导放射治疗对提高四肢肿瘤位置准确性和减小靶区外放的有效性研究 [J ] . 中国医学装备 , 2022 , 19 ( 06 ): 10 - 14 .
XUN F K , FENG X , LU F Y , et al. Study on the effectiveness of optical surface monitoring system guided radiotherapy in improving the accuracy of limb tumor location and reducing out of target radiation [J ] . China Med Equip , 2022 , 19 ( 06 ): 10 - 14 .
张光伟 , 吴何苟 , 刘剑锋 , 等 . 光学表面监测系统自动摆位功能对乳腺癌放疗患者治疗精度及摆位时间的影响 [J ] . 中国医学物理学杂志 , 2021 , 38 ( 4 ): 411 - 415 .
ZHANG G W , WU H G , LIU J F , et al. Effects of automatic setup function of optical surface monitoring system on treatment accuracy and setup time of breast cancer patients undergoing radiotherapy [J ] . Chin J Med Phys , 2021 , 38 ( 4 ): 411 - 415 .
LEE J , KIM Y J , GOH Y , et al. Application of surface-guided radiation therapy in prostate cancer: Comparative analysis of differences with skin marking-guided patient setup [J ] . Radiat Oncol J , 2023 , 41 ( 3 ): 172 - 177 . DOI: 10.3857/roj.2023.00521 http://doi.org/10.3857/roj.2023.00521
叶峰 , 翟振宇 , 牟忠德 . OSMS在腹部肿瘤放疗摆位中的应用 [J ] . 中国医学物理学杂志 , 2020 , 37 ( 7 ): 828 - 833 .
YE F , ZHAI Z Y , (MOU/MU) Z D . Application of OSMS in positioning for abdominal tumor radiotherapy [J ] . Chin J Med Phys , 2020 , 37 ( 7 ): 828 - 833 .
LIU Q , SU L , TANG D , et al. PO-1840 the feasibility of SGRT on locally advanced cervical cancer patients with bladder protocol [J ] . Radiother Oncol , 2022 , 170 : S1633-S1634.
0
浏览量
1185
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621