IP Library Granted Patent US 12661530
Granted Patent B2
US 12661530 · App. 18/465,699 · Granted Jun 23, 2026

Particle beam therapy device

Inventor: Hiroshi Tsutsui (Tokyo, JP)
Assignee: SUMITOMO HEAVY INDUSTRIES, LTD.
A61N5/1081A61N5/1078G21K1/093H05H7/04H05H7/10H05H13/005A61N2005/1087H05H2007/045H05H2277/11
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Quick Facts
Patent No.
US 12661530
App. No.
18/465,699
Granted
Jun 23, 2026
Kind
B2
Abstract

A particle beam therapy device that irradiates a patient with a cation beam to perform treatment, the device including a passage selection unit that selectively passes through the cation beam among a mixed beam in which the cation beam and other species of a beam having a nuclide different from that of the cation beam are mixed after passing through a deflection magnetic field, after causing the mixed beam to pass through the deflection magnetic field, in a case where the other species of the beam is generated from the cation beam.

Claims (39)

1 . A particle beam therapy device that irradiates a patient with a cation beam to perform treatment, the device comprising:

an accelerator that emits the cation beam;

an irradiator that irradiates the patient with the cation beam; and

a transporter that transports the cation beam emitted from the accelerator to the irradiator and includes

a bending electromagnet configured to generate a deflection magnetic field, and

a passage that includes

an opening configured to selectively allow the cation beam in a mixed beam to pass through the deflection magnetic field, in a case where other species of a beam is generated from the cation beam, the mixed beam being a beam in which the cation beam and the other species of the beam having a nuclide different from that of the cation beam are mixed, and

a shield configured to shield the other species of the beam having a nuclide different from that of the cation beam in the mixed beam.

2 . The particle beam therapy device according to claim 1 , wherein

the passage allows a beam having the same momentum per unit charge as momentum per unit charge of the cation beam in the mixed beam passed through the deflection magnetic field to pass through, and shields a beam having momentum per unit charge different from the momentum per unit charge of the cation beam in the mixed beam.

3 . The particle beam therapy device according to claim 1 , wherein

the deflection magnetic field causes a trajectory of a beam included in the mixed beam to be different depending on the momentum per unit charge on an upstream side of the passage, and

the passage causes the beam included in the mixed beam to pass through at a position of a trajectory corresponding to the momentum per unit charge of the cation beam included in the mixed beam, and shields the beam included in the mixed beam at a position other than the position of the trajectory corresponding to the momentum per unit charge of the cation beam included in the mixed beam.

4 . The particle beam therapy device according to claim 1 , wherein

the cation beam is a helium ion beam, and the other species of the beam includes a deuterium ion beam.

5 . The particle beam therapy device according to claim 1 , further comprising:

a degrader that is provided on an upstream side of the deflection magnetic field and causes energy of the cation beam to be reduced.

6 . The particle beam therapy device according to claim 5 , wherein

the degrader is provided in a gantry, and the deflection magnetic field and the passage are provided in the gantry.

7 . The particle beam therapy device according to claim 6 , wherein

the degrader is disposed on a further upstream side from the deflection magnetic field.

8 . The particle beam therapy device according to claim 1 ,

wherein

the cation beam is a helium ion beam.

9 . The particle beam therapy device according to claim 8 , wherein

the accelerator is a cyclotron that accelerates a helium nucleus and emits the helium ion beam.

10 . The particle beam therapy device according to claim 8 , wherein

the transporter includes a beam duct, and a plurality of bending electromagnets and a plurality of quadrupole electromagnets disposed along the beam duct.

11 . The particle beam therapy device according to claim 8 , wherein

the transporter includes an external path for transporting the helium ion beam from the accelerator to an inlet of a gantry, and an internal path provided in the gantry for transporting the helium ion beam from the inlet of the gantry to the irradiator.

12 . The particle beam therapy device according to claim 11 , wherein

the internal path of the transporter rotates around a rotation axis as the gantry rotates.

13 . A particle beam therapy device that irradiates a patient with a cation beam to perform treatment, the device comprising:

a cyclotron that emits the cation beam;

a degrader that is provided on a downstream side of the cyclotron, reduces energy of the cation beam, and generates other species of a beam having a nuclide different from that of the cation beam from the cation beam when the energy is reduced;

a bending electromagnet that is provided on a downstream side of the degrader and is configured to generate a deflection magnetic field and deflect a mixed beam in which the cation beam and the other species of the beam are mixed to cause a trajectory of a beam included in the mixed beam to be different depending on momentum per unit charge; and

a passage provided on a downstream side of the bending electromagnet and includes

an opening configured to selectively allow the beam included in the mixed beam to pass through at a position of a trajectory of the cation beam in the mixed beam, and

a shield configured to shield the beam included in the mixed beam at a position other than the position of the trajectory of the cation beam in the mixed beam.