IP Library Patent Application 13935812
Patent Application
App. No. 13/935,812

PET-MRI APPARATUS

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Patent No.
US None
App. No.
13/935,812
Abstract

A PET-MRI apparatus according to an embodiment includes a static magnetic field magnet, a gradient coil, a high-frequency coil, an MR image reconstruction unit, a PET detector, and a PET image reconstruction unit. The high-frequency coil applies a high-frequency magnetic field to a subject placed in the static magnetic field and detects a magnetic resonance signal emitted from the subject in response to application of the high-frequency magnetic field and a gradient magnetic field. The PET detector has a ring shape and detects a gamma ray emitted from a positron-emitting radionuclide injected into the subject. The coil conductor of the high-frequency coil is made up of a first high-frequency shield that covers the outer surface of the PET detector.

Claims (41)

1 . A PET-MRI apparatus comprising:

a static magnetic field magnet configured to generate a static magnetic field;

a gradient coil configured to apply a gradient magnetic field to a subject placed in the static magnetic field;

a high-frequency coil configured to apply a high-frequency magnetic field to the subject and detect a magnetic resonance signal emitted from the subject in response to application of the high-frequency magnetic field and the gradient magnetic field;

an MR image reconstruction unit configured to reconstruct an MR image based on the magnetic resonance signal detected by the high-frequency coil;

a PET detector having a ring shape and configured to detect a gamma ray emitted from a positron-emitting radionuclide injected into the subject; and

a PET image reconstruction unit configured to reconstruct a PET image from projection data generated based on the gamma ray detected by the PET detector,

wherein a coil conductor of the high-frequency coil is made up of a first high-frequency shield that covers the outer surface of the PET detector.

2 . The PET-MRI apparatus according to claim 1 , further comprising a second high-frequency shield arranged between the gradient coil and the high-frequency coil and configured to shield the high frequency generated by the high-frequency coil.

3 . The PET-MRI apparatus according to claim 1 , wherein the high-frequency coil includes a plurality of coil conductors and at least one of the coil conductors is made up of the first high-frequency shield that covers the outer surface of the PET detector.

4 . The PET-MRI apparatus according to claim 3 , comprising at least two PET detectors,

wherein at least one of the coil conductors is made up of a first high-frequency shield that covers at least one of the at least two PET detectors.

5 . The PET-MRI apparatus according to claim 4 , wherein

at least two of the at least two PET detectors are arranged such that a magnetic field center of the static magnetic field is between the PET detectors, and

at least two of the coil conductors are made up of two first high-frequency shields that cover the two PET detectors, which are arranged such that the magnetic field center is between the PET detectors.

6 . The PET-MRI apparatus according to claim 4 , wherein the high-frequency coil is a bird cage coil that is formed to be approximately cylindrical and at least one of two end rings of the bird cage coil is made up of the first high-frequency shield that covers one of the at least two PET detectors.

7 . A PET-MRI apparatus comprising:

a static magnetic field magnet configured to generate a static magnetic field;

a gradient coil configured to apply a gradient magnetic field to a subject;

a transmitting high-frequency coil configured to apply a high-frequency magnetic field to the subject placed in the static magnetic field;

a receiving high-frequency coil configured to detect a magnetic resonance signal emitted from the subject in response to application of the high-frequency magnetic field and the gradient magnetic field;

an MR image reconstruction unit configured to reconstruct an MR image based on the magnetic resonance signal detected by the receiving high-frequency coil;

a PET detector having a ring shape and configured to detect a gamma ray emitted from a positron-emitting radionuclide injected into the subject; and

a PET image reconstruction unit configured to reconstruct a PET image from projection data generated based on the gamma ray detected by the PET detector,

wherein at least one of a coil conductor of the transmitting high-frequency coil and a coil conductor of the receiving high-frequency coil is made up of a high-frequency shield that covers the outer surface of the PET detector.

8 . The PET-MRI apparatus according to claim 7 , further comprising a second high-frequency shield arranged between the gradient coil and the transmitting high-frequency coil and configured to shield the high frequency generated by the transmitting high-frequency coil.

9 . The PET-MRI apparatus according to claim 7 , wherein the transmitting high-frequency coil includes a plurality of coil conductors and at least one of the coil conductors is made up of the first high-frequency shield that covers the outer surface of the PET detector.

10 . The PET-MRI apparatus according to claim 9 , comprising at least two PET detectors,

wherein at least one of the coil conductors is made up of a first high-frequency shield that covers at least one of the at least two PET detectors.

11 . The PET-MRI apparatus according to claim 10 , wherein

at least two of the at least two PET detectors are arranged such that a magnetic field center of the static magnetic field is between the PET detectors, and

at least two of the coil conductors are made up of two first high-frequency shields that cover the two PET detectors, which are arranged such that the magnetic field center is between the PET detectors.

12 . The PET-MRI apparatus according to claim 10 , wherein the transmitting high-frequency coil is a bird cage coil that is formed to be approximately cylindrical and at least one of two end rings of the bird cage coil is made up of the first high-frequency shield that covers one of the at least two PET detectors.

13 . The PET-MRI apparatus according to claim 1 , where the PET detector converts the gamma ray to an analog signal and outputs the analog signal, the PET-MRI apparatus further comprising:

a signal amplifier configured to amplify the analog signal output from the PET detector;

a first signal converter configured to convert the analog signal amplified by the signal amplifier;

a second signal converter configured to convert the digital signal, which is obtained by the first signal converter, to an optical signal; and

an optical fiber that transfers the optical signal obtained by the second signal converter,

wherein the first high-frequency shield is formed so as to cover the signal amplifier, the digital signal converter, and the optical signal converter in addition to the PET detector.

14 . The PET-MRI apparatus according to claim 1 , wherein the first high-frequency shield has a slit.

15 . The PET-MRI apparatus according to claim 1 , further comprising a cooling unit provided on the outer surface or the inner side of the first high-frequency shield.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038831/0922 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2013
From: OKAMOTO, KAZUYA; TAKAYAMA, TAKUZO; YAMAGATA, HITOSHI
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 030743/0044 →