IP Library Granted Patent US 10,595,725
Granted Patent B2
US 10,595,725 · App. 15/592,472 · Granted Mar 24, 2020

Magnetic resonance imaging apparatus and method

Inventors: Mitsue Miyazaki (Mount Prospect, IL); Yuichi Yamashita (Nasushiobara, JP)
Assignee: Canon Medical Systems Corporation
A61B5/00A61B5/0042A61B5/055A61B5/7285G01R33/307G01R33/385G01R33/4818G01R33/5614G01R33/5673G01R33/56333G06T7/0012G06T7/11G06T11/60A61B2576/026G06T2207/10088G06T2207/30016
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Quick Facts
Patent No.
US 10,595,725
App. No.
15/592,472
Granted
Mar 24, 2020
Kind
B2
Abstract

A magnetic resonance imaging apparatus according to an embodiment includes a collection unit and a generation unit. The collection unit collects data of an imaging area over a plurality of time phases within a certain respiratory cycle after applying a labeling pulse to a labeling area in which cerebrospinal fluid flows under a task of respiration. The generation unit generates images of a plurality of time phases depicting the cerebrospinal fluid by using the collected data.

Claims (18)

1. A magnetic resonance imaging apparatus comprising:

processing circuitry configured to

collect data of an imaging area of a subject over a plurality of time phases within a certain respiratory cycle of the subject after applying a labeling pulse to a labeling area in which cerebrospinal fluid flows under a task of respiration; and

generate images of a plurality of time phases depicting the cerebrospinal fluid by using collected data, wherein

the processing circuitry collects first data in a low frequency region of a k-space over the time phases within a first respiratory cycle and collects second data in a high frequency region of the k-space over the time phases within a second respiratory cycle that is different from the first respiratory cycle, wherein the first respiratory cycle and the second respiratory cycle are periods in which respiration of the subject fluctuates in accordance with the task of respiration; and

the processing circuitry generates the images of the time phases by combining the first data in the low frequency region collected within the first respiratory cycle and the second data in the high frequency region collected within the second respiratory cycle.

2. A magnetic resonance imaging apparatus comprising:

processing circuitry configured to

collect data of an imaging area of a subject over a plurality of time phases within a certain respiratory cycle of the subject after applying a labeling pulse to a labeling area in which cerebrospinal fluid flows under a task of respiration; and

generate images of a plurality of time phases depicting the cerebrospinal fluid by using collected data, wherein

the processing circuitry collects first data of the entire k-space for one time phase within a first respiratory cycle and collects second data in a low frequency region of the k-space over the time phases within a second respiratory cycle that is different from the first respiratory cycle, wherein the first respiratory cycle and the second respiratory cycle are periods in which respiration of the subject fluctuates in accordance with the task of respiration; and

the processing circuitry generates the images of the time phases by combining data in a high frequency region included in the first data of the entire k-space for one time phase collected within the first respiratory cycle and the second data in the low frequency region in each time phase collected within the second respiratory cycle.

3. A magnetic resonance imaging apparatus comprising:

processing circuitry configured to

collect data of an imaging area of a subject over a plurality of time phases within a certain respiratory cycle of the subject after applying a labeling pulse to a labeling area in which cerebrospinal fluid flows under a task of respiration; and

generate images of a plurality of time phases depicting the cerebrospinal fluid by using collected data, wherein

the processing circuitry collects first data in a low frequency region of a k-space over the time phases within a first respiratory cycle and collects second data in a high frequency region of the k-space for one time phase within a second respiratory cycle that is different from the first respiratory cycle, wherein the first respiratory cycle and the second respiratory cycle are periods in which respiration of the subject fluctuates in accordance with the task of respiration; and

the processing circuitry generates the images of the time phases by combining the first data in the low frequency region in each time phase collected within the first respiratory cycle and the second data in the high frequency region for one time phase collected within the second respiratory cycle.

Assignments (1)
CHANGE OF NAME Recorded Jul 26, 2019
From: TOSHIBA MEDICAL SYSTEMS CORPORATION
To: CANON MEDICAL SYSTEMS CORPORATION
Reel/Frame 049879/0342 →
Priority Claims (2)
JP 2012-085807 · Apr 4, 2012 · national
JP 2013-044619 · Mar 6, 2013 · national
Continuity (2)
Division 13856006 · Apr 3, 2013
Related Publication 20170248671A1 · Aug 31, 2017