IP Library Granted Patent US 9,510,797
Granted Patent B2
US 9,510,797 · App. 13/880,842 · Granted Dec 6, 2016

Integrated PET/MRI scanner

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Quick Facts
Patent No.
US 9,510,797
App. No.
13/880,842
Granted
Dec 6, 2016
Kind
B2
Abstract

In the integrated PET/MRI scanner provided with an RF coil for MRI and a plurality of PET detectors in the measuring port of the MRI scanner, the PET detectors are disposed with spaces therebetween and at least the transmitting coil elements of the RF coil for MRI are disposed between adjacent PET detectors. Here, the PET detectors are disposed in the circumferential direction of the measuring port with spaces therebetween and the transmitting coil elements are disposed in the axial direction of the measuring port. Alternatively, at least some of the PET detectors are disposed in the axial direction of the measuring port with spaces therebetween and the transmitting coil elements are disposed between adjacent PET detectors. The PET detectors can be DOI-type detectors capable of detecting position in the depth direction.

Claims (18)

1. An integrated PET/MRI scanner comprising an RF coil for MRI and a plurality of PET detectors in a measuring port of an MRI scanner, wherein

the RF coil for MRI is divided into a transmitting coil element and a receiving coil element,

the PET detectors are disposed with spaces therebetween and the transmitting coil element of the RF coil for MRI is disposed between adjacent PET detectors,

wherein, with respect to the measuring port, a radially-inner most end of the receiving coil element of the RF coil for MRI is located further radially inward than a radially-inner most end of the PET detectors,

each PET detector includes a combination of a scintillator that senses radiation and emits light and a light receiving element that senses the light emitted from the scintillator and converts the sensed light into an electrical signal, and

wherein, with respect to the measuring port, a radially inner-most end of the scintillator of each PET detector is located further radially inward than a radially inner-most end of the transmitting coil element.

2. An integrated PET/MRI scanner comprising an RF coil for MRI and a plurality of PET detectors in a measuring port of an MRI scanner, wherein

the PET detectors are disposed with spaces therebetween and at least a coil element of the RF coil for MRI is disposed between adjacent PET detectors,

each PET detector includes a radio wave shield, and with respect to the measuring port, a radially inner-most end of the coil element is located further radially inward than a radially inner-most end of the radio wave shield,

each PET detector further includes a combination of a scintillator that senses radiation and emits light and a light receiving element that senses the light emitted from the scintillator and converts the sensed light into an electrical signal, and with respect to the measuring port, the scintillator is disposed further radially inward than the light receiving element,

wherein the radio wave shield of each PET detector is disposed on non-light-receiving sides of the light receiving element rather than on the scintillator such that an outer periphery of the scintillator has no radio wave shield to cover the scintillator, and

with respect to the measuring port, a radially inner-most end of the scintillator of each PET detector is disposed further radially inward than the radially inner-most end of the coil element.

3. The integrated PET/MRI scanner according to claim 2 , wherein

the RF coil for MRI includes a transmitting coil and the coil element is a transmitting coil element.

4. The integrated PET/MRI scanner according to claim 2 , wherein

each PET detector further includes a second radio wave shield disposed between the scintillator and the light receiving element.

5. The integrated PET/MRI scanner according to claim 2 , wherein

each PET detector further includes a front end circuit, and wherein the radio wave shield of each PET detector is disposed so as to shield substantially only the light receiving element and the front end circuit.

Assignments (4)
CHANGE OF NAME Recorded Aug 9, 2016
From: NATIONAL INSTITUTE OF RADIOLOGICAL SCIENCES
To: NATIONAL INSTITUTES FOR QUANTUM AND RADIOLOGICAL SCIENCE AND TECHNOLOGY
Reel/Frame 039634/0067 →
RECORD TO CORRECT ASSIGNOR'S ORDER ON AN ASSIGNMENT DOCUMENT PREVIOUSLY RECORDED ON 04/22/2013, REEL 030257/FRAME 0417 Recorded Apr 29, 2013
From: YAMAYA, TAIGA; NISHIKIDO, FUMIHIKO; OBATA, TAKAYUKI; SUGA, MIKIO; SAITO, KAZUYUKI
To: NATIONAL INSTITUTE OF RADIOLOGICAL SCIENCES
Reel/Frame 030600/0195 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2013
From: WATANABE, MITSUO; TANAKA, EIICHI
To: HAMAMATSU PHOTONICS K.K.
Reel/Frame 030257/0381 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2013
From: YAMAYA, TAIGA; SAITO, KAZUYUKI; NISHIKIDO, FUMIHIKO; OBATA, TAKAYUKI; SUGA, MIKIO
To: NATIONAL INSTITUTE OF RADIOLOGICAL SCIENCES
Reel/Frame 030257/0417 →