Magnetic resonance imaging apparatus and automatic channel selection method of multi-channel reception coil
A camera image of a subject to be examined after mounting a reception coil, which is acquired before the subject to be examined is transported to an imaging position, information for specifying a position (target position) of an imaging site of the subject to be examined, and design information of the reception coil are collated with each other, an element of the reception coil that includes the target position is selected, and a coil region to be activated, which includes the selected element, is determined. The target position is specified by a method such as a user designation on the camera image of the subject to be examined before mounting the reception coil, or a user designation on a pre-scan image. Image reconstruction is performed using a signal received by the element in the activated coil region.
1 . A magnetic resonance imaging apparatus comprising:
an imaging unit that includes a reception coil including a plurality of coil elements, and a multiple-channel receiver which receives, through the reception coil including the plurality of coil elements, a nuclear magnetic resonance signal generated by a subject to be examined;
one or more processors that control the imaging unit and are configured to
acquire an image from a camera disposed in the magnetic resonance imaging apparatus,
specify a target position of imaging on the subject to be examined, and
collate a camera image, which is acquired by the camera and shows the subject to be examined and on which a reception coil including a plurality of coil elements is mounted, with design information of the reception coil and
determine a coil element of the reception coil that covers the specified target position; and
one or more markers attached to at least one of the reception coil or a bed and recognizable by the one or more processors, a position of the reception coil being determined by the one or more processors based on a marker amongst the one or more markers.
2 . An automatic channel selection method of a multi-channel reception coil, the method being performed by one or more processors for selecting a coil element of a multiple-channel reception coil used in a magnetic resonance imaging apparatus, the method comprising:
a step of acquiring an image from a camera disposed in the magnetic resonance imaging apparatus;
a step of specifying a target position on a subject to be examined on which the reception coil is mounted; and
a step of collating a camera image, which shows the subject to be examined on which the reception coil including a plurality of the coil elements is mounted, and the target position with design information of the reception coil and determining a coil element of the reception coil that includes the target position; and
a step of determining a position of the reception coil based on one or more markers attached to at least one of the reception coil or a bed on which the subject to be examined is placed or to be placed.
3 . The magnetic resonance imaging apparatus according to claim 1 , wherein the one or more processors are configured to receive a designation of a position by a user using a camera image which shows the subject to be examined before mounting the reception coil, and specify the designated position as the target position.
4 . The magnetic resonance imaging apparatus according to claim 1 , wherein one or more processors, upon specifying a target position, receive a designation of a position by a user using a pre-scan image of the subject to be examined, which is acquired in advance by the imaging unit and is displayed on a display device, and specifies the designated position as the target position.
5 . The magnetic resonance imaging apparatus according to claim 1 , wherein the design information of the reception coil includes a positional relationship between the coil element and the marker, and the one or more processors are configured to collate a marker position included in the camera image with the design information of the reception coil and determine the coil element of the reception coil.
6 . The magnetic resonance imaging apparatus according to claim 1 , wherein one or more processors are configured to determine a coil region in which the coil element covering the target position is disposed such that the coil region includes a predetermined FOV.
7 . The magnetic resonance imaging apparatus according to claim 1 , wherein one or more processors are configured to acquire information on an imaging guarantee area determined based on characteristics of a static magnetic field and a gradient magnetic field of the magnetic resonance imaging apparatus and without considering a coil element that is not included in the imaging guarantee area.
8 . The magnetic resonance imaging apparatus according to claim 1 , wherein
the bed incorporates the reception coil, and
the one or more processors are configured to calculate the position of the reception coil on apparatus coordinates from a camera image which shows the marker and the subject to be examined, and to determine the coil element of the reception coil that covers the target position by using the position of the reception coil on the apparatus coordinates, the target position specified by the one or more processors, and the design information of the reception coil.
9 . The magnetic resonance imaging apparatus according to claim 1 ,
wherein the subject to be examined is placed on the bed, the bed being provided with another marker amongst the one or more markers at a position where a camera image is capable of being acquired, and
wherein one or more processors are configured to calculate the position of the reception coil on apparatus coordinates from said another marker and a camera image which shows the subject to be examined and on which the reception coil is mounted and to determine the coil element of the reception coil that covers the target position by using the position of the reception coil on the apparatus coordinates, the target position specified by the one or more processors, and the design information of the reception coil.
10 . The magnetic resonance imaging apparatus according to claim 1 , wherein
a plurality of the markers are attached to the reception coil at equal intervals, and
the one or more processors are configured to calculate bending of the reception coil from the interval of the plurality of the markers included in the camera image, correct the bending of the reception coil, then collate the corrected bending with the design information of the reception coil, and determine the coil element of the reception coil.
11 . The magnetic resonance imaging apparatus according to claim 1 , wherein
the reception coil is fixed to the subject to be examined by using a flexible belt, and a plurality of the markers are attached to the flexible belt at equal intervals along a longitudinal direction of the flexible belt, and
the one or more processors are configured to calculate bending of the reception coil from the interval of the plurality of the markers included in the camera image, correct the bending of the reception coil, then collate the corrected bending with the design information of the reception coil, and determine the coil element of the reception coil.
12 . The magnetic resonance imaging apparatus according to claim 1 ,
wherein the one or more processors are configured to
detect a folding line of the reception coil from the camera image which shows the subject to be examined on which the reception coil is mounted, and
specify a coil element of another part of the reception coil, which is line-symmetric to a coil element determined for a part of the reception coil shown in the camera image with respect to the folding line, and
determine the coil element of the part and the coil element of the other part as the coil elements of the reception coil.
13 . The magnetic resonance imaging apparatus according to claim 1 , wherein
the camera is a camera including any one of a fisheye lens, a subject tracking mechanism, or a video function, and
the one or more processors are configured to acquire information on a camera image including a temporal change or a spatial change of a subject as the camera image.
14 . The automatic channel selection method of a multi-channel reception coil according to claim 2 , wherein the step of specifying the target position includes a step of receiving a designation of a site by a user in the displayed camera image, and the received site is specified as the target position.
15 . The automatic channel selection method of a multi-channel reception coil according to claim 2 , wherein the step of specifying the target position includes a step of analyzing the camera image by using an anatomical database and a step of specifying one of a plurality of sites included in the anatomical database as a target site, and a position of the camera image that corresponds to the specified target site is specified as the target position.
16 . The automatic channel selection method of a multi-channel reception coil according to claim 2 , wherein
the design information of the reception coil includes a positional relationship between the coil element and at least one of the one of more markers, and
the automatic channel selection method further comprises collating a marker position included in the camera image with the design information of the reception coil and determining the coil element of the reception coil.
17 . The magnetic resonance imaging apparatus according to claim 3 , wherein one or more processors are configured to analyze the camera image including the designated position of the user by using an anatomical database and specify a predetermined site in the anatomical database as the target position.
18 . The magnetic resonance imaging apparatus according to claim 9 , wherein the bed incorporates a second reception coil, and said another marker indicates a position of the incorporated second reception coil.
19 . The magnetic resonance imaging apparatus according to claim 18 , wherein the one or more processors are configured to set a region of the second reception coil, onto which a region where a coil element of the reception coil mounted on the subject to be examined is disposed is projected in a direction orthogonal to the bed, as a coil selection region.