Yamashita Hideomi, Yamashita Mami, Futaguchi Masahiko, Takenaka Ryousuke, Shibata Shino, Yamamoto Kentaro, Nomoto Akihiro, Sakumi Akira, Kida Satoshi, Kaneko Yoshihiro, Takenaka Shigeharu, Shiraki Takashi, Nakagawa Keiichi
Department of Radiology, The University of Tokyo Hospital, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8655 Japan.
Springerplus. 2014 Mar 7;3:131. doi: 10.1186/2193-1801-3-131. eCollection 2014.
Assessment of physiologic renal motion in order to optimize abdominal intensity-modulated radiation therapy and stereotactic body radiation therapy.
Twenty patients with a median age of 47 years underwent computed tomography simulation and four-dimensional computed tomography acquisition. Thirty-nine kidneys were contoured during ten phases of respiration to estimate renal motion.
Kidney motion was not related to age (p = 0.42), sex (p = 0.28), height (p = 0.75), or body weight (p = 0.63). The average +/- standard deviation (SD) of movement of the center of gravity for all subjects was 11.1 +/- 4.8 mm in the cranio-caudal (CC) direction (range, 2.5-20.5 mm), 3.6 +/- 2.1 mm in the anterior-posterior (AP) direction (range, 0.6-8.0 mm), and 1.7 +/- 1.4 mm in the right-left (RL) direction (range, 0.4-5.9 mm). Renal motion strongly correlated with the respiratory phases (r > 0.97 and p < 0.01 in all three directions).
Renal motion was independent of age, sex, height, or body weight. Renal motion in all directions was strongly respiration dependent, but motion in the cranio-caudal direction showed wide individual variation. In a clinical setting, it will be necessary to evaluate renal respiratory motion separately in each individual.
评估生理性肾脏运动,以优化腹部调强放射治疗和立体定向体部放射治疗。
20例中位年龄47岁的患者接受了计算机断层扫描模拟和四维计算机断层扫描采集。在呼吸的十个阶段对39个肾脏进行轮廓勾画,以估计肾脏运动。
肾脏运动与年龄(p = 0.42)、性别(p = 0.28)、身高(p = 0.75)或体重(p = 0.63)无关。所有受试者重心移动的平均±标准差(SD)在头足方向(CC)为11.1±4.8毫米(范围2.5 - 20.5毫米),在前后方向(AP)为3.6±2.1毫米(范围0.6 - 8.0毫米),在左右方向(RL)为1.7±1.4毫米(范围0.4 - 5.9毫米)。肾脏运动与呼吸阶段密切相关(在所有三个方向上r>0.97且p<0.01)。
肾脏运动与年龄、性别、身高或体重无关。各个方向的肾脏运动都强烈依赖于呼吸,但头足方向的运动显示出较大的个体差异。在临床环境中,有必要对每个个体分别评估肾脏的呼吸运动。