IP Library Granted Patent US 10,751,553
Granted Patent B2
US 10,751,553 · App. 16/304,701 · Granted Aug 25, 2020

Radiation therapy apparatus

Inventors: Yuichiro Ueno (Tokyo, JP); Takahiro Tadokoro (Tokyo, JP); Yasushi Nagumo (Tokyo, JP); Katsunori Ueno (Tokyo, JP); Kouichi Okada (Tokyo, JP); Shuichi Hatakeyama (Tokyo, JP)
Assignee: HITACHI, LTD.
A61N5/1071A61B6/425A61B6/4216A61N5/1042A61N5/1067A61N5/1081
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Quick Facts
Patent No.
US 10,751,553
App. No.
16/304,701
Granted
Aug 25, 2020
Kind
B2
Abstract

A radiation therapy apparatus capable of improving the accuracy of a dose distribution includes an X-ray generation device that is provided at an arm portion of a rotation gantry, a radiation detector that is insertable into the body of a patient, a dose calculation device, and a feedback control device. An X-ray generated due to collision of an electron beam with a target in the X-ray generation device is applied to an affected part (cancer) of a patient on a bed. The radiation detector which is insertable into the body detects the X-ray applied to the affected part so as to output a photon to obtain a dose rate and a dose based thereon. The feedback control device either controls the X-ray generation device such that the obtained dose becomes a set dose or controls the radiation generation device such that the obtained dose rate becomes a set dose rate.

Claims (51)

1. A radiation therapy apparatus comprising:

a radiation generation device that generates radiation;

a rotation gantry in which the radiation generation device is provided;

a radiation detector that is insertable into a body of a patient, and has a light emitting portion detecting the radiation and outputting photons;

a calculation device that obtains a counting rate of the photons output from the radiation detector, obtains a dose rate on the basis of the photon counting rate, and obtains a dose on the basis of the dose rate; and

a first control device that performs any one of first control of either controlling the radiation generation device such that the dose obtained by the calculation device becomes a set dose or controlling the radiation generation device such that the dose rate obtained by the calculation device becomes a first set dose rate in feedback control, second control of either adjusting a shape of an opening of a variable collimator attached to an irradiation head provided in the rotation gantry such that the dose becomes the set dose or adjusting the shape of the opening of the variable collimator such that the dose rate becomes the first set dose rate, and third control of either adjusting a position of a bed supporting a radiation irradiation target such that the dose becomes the set dose or adjusting the position of the bed such that the dose rate becomes the first set dose rate.

2. The radiation therapy apparatus according to claim 1 ,

wherein the light emitting portion contains at least one rare earth element.

3. The radiation therapy apparatus according to claim 1 ,

wherein the calculation device includes

a conversion device that converts the photons output from the light emitting portion into electric pulses,

a counting device that obtains a counting rate of the electric pulses output from the conversion device, and

a calculation unit that obtains a dose rate on the basis of the counting rate of the electric pulses, and obtains a dose on the basis of the dose rate.

4. The radiation therapy apparatus according to claim 1 ,

wherein the radiation therapy apparatus is an X-ray therapy apparatus, and

wherein the X-ray therapy apparatus includes an X-ray generation device that is the radiation generation device and generates an X-ray which is the radiation.

5. The radiation therapy apparatus according to claim 1 ,

wherein the radiation therapy apparatus is an X-ray therapy apparatus,

wherein the X-ray therapy apparatus includes an X-ray generation device that is the radiation generation device and generates an X-ray which is the radiation, and

wherein the first control device controls the X-ray generation device so as to adjust an intensity of the X-ray generated by the X-ray generation device, in the first control.

6. The radiation therapy apparatus according to claim 1 ,

wherein the radiation therapy apparatus is an X-ray therapy apparatus,

wherein the X-ray therapy apparatus includes an X-ray generation device that is the radiation generation device and generates an X-ray which is the radiation, and

wherein the first control device controls the X-ray generation device so as to adjust energy of the X-ray generated by the X-ray generation device, in the first control.

7. A radiation therapy apparatus comprising:

a radiation generation device that generates radiation;

a radiation detector that is insertable into a body of a patient, and has a light emitting portion detecting the radiation and outputting photons;

a calculation device that obtains a counting rate of the photons output from the radiation detector, and obtains a dose rate on the basis of the photon counting rate; and

a second control device that controls the radiation generation device such that a radiation irradiation target is irradiated with the radiation in a case where the dose rate obtained by the calculation device is equal to or lower than a second set dose rate in respiratory synchronization control, and the radiation irradiation target is stopped being irradiated with the radiation in a case where the dose rate exceeds the second set dose rate.

8. The radiation therapy apparatus according to claim 7 ,

wherein the calculation device is a calculation device which obtains a dose rate on the basis of the counting rate of the photons, and obtains a dose on the basis of the dose rate, and

wherein the radiation therapy apparatus further comprises

a rotation gantry in which the radiation generation device is provided, and

a first control device that performs any one of first control of either controlling the radiation generation device such that the dose obtained by the calculation device becomes a set dose or controlling the radiation generation device such that the dose rate obtained by the calculation device becomes a first set dose rate in feedback control, second control of either adjusting a shape of an opening of a variable collimator attached to an irradiation head provided in the rotation gantry such that the dose becomes the set dose or adjusting the shape of the opening of the variable collimator such that the dose rate becomes the first set dose rate, and third control of either adjusting a position of a bed supporting a radiation irradiation target such that the dose becomes the set dose or adjusting the position of the bed such that the dose rate becomes the first set dose rate.

9. The radiation therapy apparatus according to claim 7 ,

wherein the radiation therapy apparatus is a particle beam therapy apparatus, and

wherein the particle beam therapy apparatus includes

an ion beam generation device that is the radiation generation device and generates a particle beam which is the radiation,

a beam transport system that guides the beam emitted from the ion beam generation device,

a rotation gantry, and

an irradiation device that is provided in the rotation gantry, and applies the beam which is input from the beam transport system to the radiation irradiation target.

10. The radiation therapy apparatus according to claim 9 ,

wherein the light emitting portion contains at least one rare earth element.

11. The radiation therapy apparatus according to claim 9 ,

wherein the calculation device includes

a conversion device that converts the photons output from the light emitting portion into electric pulses,

a counting device that obtains a counting rate of the electric pulses output from the conversion device, and

a calculation unit that obtains a dose rate on the basis of the counting rate of the electric pulses, and obtains a dose on the basis of the dose rate.

12. The radiation therapy apparatus according to claim 7 ,

wherein the radiation therapy apparatus is an electron beam therapy apparatus, and

wherein the electron beam therapy apparatus includes an ion beam generation device that is the radiation generation device and generates an electron beam which is the radiation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2018
From: UENO, YUICHIRO; TADOKORO, TAKAHIRO; NAGUMO, YASUSHI; UENO, KATSUNORI; OKADA, KOUICHI; HATAKEYAMA, SHUICHI
To: HITACHI, LTD.
Reel/Frame 047586/0094 →
Priority Claims (1)
JP 2016-127309 · Jun 28, 2016 · national
Continuity (1)
Related Publication 20190209870A1 · Jul 11, 2019
Cited By (1)
US 12,245,355