IP Library Granted Patent US 10,441,815
Granted Patent B2
US 10,441,815 · App. 15/925,234 · Granted Oct 15, 2019

Neutron capture therapy system and gamma ray detector for neutron capture therapy

Inventors: Kiyotaka Akabori (Kanagawa, JP); Hiroki Tanaka (Kyoto, JP)
Assignees: SUMITOMO HEAVY INDUSTRIES, LTD.; KYOTO UNIVERSITY
A61N5/1048G01T1/003G01T1/161G01T1/20G01T1/24G01T1/29G01T3/06G01T3/08A61N2005/109A61N2005/1094A61N2005/1098
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Quick Facts
Patent No.
US 10,441,815
App. No.
15/925,234
Granted
Oct 15, 2019
Kind
B2
Abstract

A neutron capture therapy system includes a neutron ray generating unit, an irradiated body placing unit on which a patient (irradiated body) is placed, and a gamma ray detecting unit that detects gamma rays emitted from the patient (irradiated body). The gamma ray detecting unit includes an emission part that emits light or electrons as the gamma rays are incident thereon, an amplification part that amplifies and outputs the light or the electrons emitted from the emission part, a first neutron ray shielding part formed of a substance containing 6-lithium, and a second neutron ray shielding part formed of a light element. The first neutron ray shielding part is provided so as to cover at least a surface opposite to an adjacent surface adjacent to the amplification part, among surfaces of the emission part.

Claims (22)

1. A neutron capture therapy system comprising:

a neutron ray generating unit that generates neutron rays;

an irradiated body placing unit on which an irradiated body irradiated with the neutron rays is placed; and

a gamma ray detecting unit that detects gamma rays emitted from the irradiated body by being irradiated with the neutron rays,

wherein the gamma ray detecting unit includes

an emission part that emits light or electrons as the gamma rays are incident thereon,

an amplification part that is provided adjacent to the emission part and amplifies and outputs the light or the electrons emitted from the emission part,

a first neutron ray shielding part formed of a substance containing 6-lithium, and

a second neutron ray shielding part provided outside the first neutron ray shielding part and formed of a light element, and

wherein the first neutron ray shielding part is provided so as to cover at least a surface opposite to an adjacent surface adjacent to the amplification part, among surfaces of the emission part.

2. The neutron capture therapy system according to claim 1 ,

wherein the gamma ray detecting unit further includes a gamma ray shielding part provided between the first neutron ray shielding part and the second neutron ray shielding part.

3. The neutron capture therapy system according to claim 1 ,

wherein the first neutron ray shielding part is provided so as to cover surfaces other than the adjacent surface among the surfaces of the emission part.

4. The neutron capture therapy system according to claim 3 ,

wherein a thickness of the first neutron ray shielding part that covers the surface opposite to the adjacent surface is greater than thicknesses of the first neutron ray shielding part that covers the other surfaces of the emission part.

5. A gamma ray detector for neutron capture therapy comprising:

an emission part that emits light or electrons as gamma rays are incident thereon;

an amplification part that is provided adjacent to the emission part and amplifies and outputs the light or the electrons emitted from the emission part;

a first neutron ray shielding part formed of a substance containing 6-lithium; and

a second neutron ray shielding part provided outside the first neutron ray shielding part and formed of a light element,

wherein the first neutron ray shielding part is provided so as to cover at least a surface opposite to an adjacent surface adjacent to the amplification part, among surfaces of the emission part.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2018
From: AKABORI, KIYOTAKA; TANAKA, HIROKI
To: SUMITOMO HEAVY INDUSTRIES, LTD.; KYOTO UNIVERSITY
Reel/Frame 045277/0727 →
Priority Claims (1)
JP 2017-066025 · Mar 29, 2017 · national
Continuity (1)
Related Publication 20180280726A1 · Oct 4, 2018
Cited By (2)
US 12,434,074 US 12,465,786