US 12,343,564 B2
Irradiation terminal based on combination of rotating beam lines and application of the same
Jiancheng Yang, Lanzhou (CN); Yajun Zheng, Lanzhou (CN); Jiawen Xia, Lanzhou (CN); Wenlong Zhan, Lanzhou (CN); Zhengguo Hu, Lanzhou (CN); Hushan Xu, Lanzhou (CN); Shuang Ruan, Lanzhou (CN); Guodong Shen, Lanzhou (CN); Yaqing Yang, Lanzhou (CN); Lina Sheng, Lanzhou (CN); Qinggao Yao, Lanzhou (CN); Jinquan Zhang, Lanzhou (CN); Jie Liu, Lanzhou (CN); Ruliang Wang, Lanzhou (CN); Wei Wu, Lanzhou (CN); Wenjun Chen, Lanzhou (CN); Guimei Ma, Lanzhou (CN); and Anhui Feng, Lanzhou (CN)
Assigned to INSTITUTE OF MODERN PHYSICS, CHINESE ACADEMY OF SCIENCES, Lanzhou (CN)
Filed by INSTITUTE OF MODERN PHYSICS, CHINESE ACADEMY OF SCIENCES, Lanzhou (CN)
Filed on Sep. 20, 2024, as Appl. No. 18/891,471.
Application 18/891,471 is a continuation of application No. PCT/CN2023/093423, filed on May 11, 2023.
Claims priority of application No. 202211251705.1 (CN), filed on Oct. 13, 2022.
Prior Publication US 2025/0050136 A1, Feb. 13, 2025
Int. Cl. A61N 5/10 (2006.01)
CPC A61N 5/1067 (2013.01) [A61N 5/1082 (2013.01)] 12 Claims
OG exemplary drawing
 
1. An irradiation terminal based on a combination of rotating beam lines, comprising:
a combination of rotating beam lines, which is fixed on a first rotating gantry, and includes a rotator beam line and terminal beam lines, wherein the terminal beam lines include a horizontal beam line and an inclined beam line at a certain angle to the ground, the horizontal beam line and the inclined beam line are branches of the rotator beam line;
the first rotating gantry, including two end girders and two parallel arranged main girders, wherein the two end girders are arranged in gaps at both ends of the two main girders and connected the two main girders together;
a number of first operation rooms, which are uniformly arranged along a circumferential direction of rotation of the horizontal beam line and form a first layer of operation rooms, a wall of each of the first operation rooms being provided with an installation hole;
a number of second operation rooms, which are uniformly arranged along a circumferential direction of rotation of the inclined beam line and form a second layer of operation rooms, a wall of each of the second operation rooms being provided with an installation hole;
a number of irradiation heads, which respectively correspond to the first operation rooms and the second operation rooms in a one-to-one manner, wherein the irradiation heads pass through installation holes to receive ion beams transmitted by the combination of rotating beam lines and then perform irradiation on a patient or sample; and
a driving mechanism, which is connected to the first rotating gantry in a motion transmission manner and is configured to drive the first rotating gantry to rotate 0-360 degrees along a circular guide rail, so that the combination of rotating beam lines form as beam lines that can rotate 0-360 degrees.