Magnetic Resonance Imaging System for Infants and Children and Imaging Method thereof
20170224247 ยท 2017-08-10
Inventors
Cpc classification
G01R33/3802
PHYSICS
G01R33/28
PHYSICS
G01R33/3854
PHYSICS
A61B5/055
HUMAN NECESSITIES
G01R33/4215
PHYSICS
G01R33/3806
PHYSICS
International classification
A61B5/055
HUMAN NECESSITIES
Abstract
A magnetic resonance imaging (MRI) system for infants and children and imaging method thereof are disclosed. The system includes: a base; a housing, with a bottom fixed to the base; a monitoring shield, pivotably connected to the top of the housing; a pair of open magnets, which are spaced apart from each other and fixed to the base by a magnet holder such that an imaging area is defined between them; an operating table, fixed in the imaging area; an incubator, movably connected to the operating table and configured to house an infant or child and to adjust the position of the infant or child in the imaging area. The monitoring shield has a closed configuration and an open configuration. In the closed configuration of the monitoring shield, the magnet holder, the open magnet, the operating table and the incubator are all situated within a space delimited by the base, the housing and the monitoring shield. With this optimized structure, the system allows a radiologist to more accurately and intuitively adjust and understand the position and angle at which the infant or child is imaged. In addition, with the incubator, the system can provide the infant or child with a safer and more comfortable environment. Therefore, it entails a systematic MRI solution for newborns, infants and children.
Claims
1. A magnetic resonance imaging (MRI) system for infants and children, comprising: a base; a housing, with a bottom thereof fixed to the base; a monitoring shield, pivotably connected to a top of the housing; open magnets, which are spaced apart from each other and fixed to the base by a magnet holder such that an imaging area is defined between the open magnets; an operating table, fixed in the imaging area; and an incubator, movably connected to the operating table and configured to house an infant or child and to adjust a position of the infant or child in the imaging area, wherein the monitoring shield has a closed configuration in which the operating table and the incubator are electromagnetically shielded from an external environment and an open configuration in which the operating table and the incubator are exposed to the external environment, and wherein in the closed configuration of the monitoring shield, each of the magnet holder, the open magnets, the operating table and the incubator is situated within a space delimited by the base, the housing and the monitoring shield.
2. The MRI system for infants and children of claim 1, further comprising: an amplifier for amplifying a nuclear magnetic resonance (NMR) signal generated in the imaging area; and a spectrometer for analyzing the NMR signal.
3. The MRI system for infants and children of claim 1, wherein the incubator is provided with a radio frequency (RF) receiving coil.
4. The MRI system for infants and children of claim 1, wherein a gradient coil and a shim coil are arranged around the open magnets.
5. The MRI system for infants and children of claim 4, wherein the gradient coil is a quiet gradient coil.
6. The MRI system for infants and children of claim 1, wherein the monitoring shield is made of a transparent material.
7. A magnetic resonance imaging (MRI) method for infants and children, using an MRI system as defined in claim 1 and comprising the steps of: S1: placing the infant or child in the incubator; S2: closing the monitoring shield; and S3: performing an MRI process after a temperature of the incubator as well as a position thereof relative to the open magnets have been so adjusted that a target site of the infant or child is situated within the imaging area.
8. The MRI method for infants and children as defined in claim 7, further comprising: amplifying a nuclear magnetic resonance (NMR) signal generated in the imaging area and analyzing the NMR signal.
9. The MRI method for infants and children as defined in claim 7, wherein the incubator is provided with a radio frequency (RF) receiving coil.
10. The MRI method for infants and children as defined in claim 7, wherein a gradient coil and a shim coil are arranged around the open magnets.
11. The MRI method for infants and children as defined in claim 10, wherein the gradient coil is a quiet gradient coil.
12. The MRI method for infants and children as defined in claim 7, wherein the monitoring shield is made of a transparent material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024] In these figures, 10 denotes a base; 20, a housing; 30, a monitoring shield; 31, sealing edges; 40, an open magnet; 50, a magnet holder; 60, an operating table; 70, an incubator; and 80, an amplifier and a spectrometer.
DETAILED DESCRIPTION
[0025] In order to more fully describe the subject matter of the present invention, several particular embodiments are listed below for demonstration of its technical effects. It is noted that these examples are provided for illustration only, without limiting the scope of the invention in any way.
[0026] As shown in
[0027] Preferably, with focused reference to
[0028] Preferably, the gradient coil is a quiet gradient coil provided with a vacuum insulation layer which can minimize the noise level during the imaging process and hence provide the infant or child with a quiet and comfortable accommodation.
[0029] Preferably, the monitoring shield 30 is made of a transparent material which allows the radiologist and parent(s) to more directly observe the whole diagnostic process to make sure the infant or child is in a good condition and hence provides a better user experience while imparting a sufficient shielding ability to the monitoring shield 30.
[0030] In addition, with the open magnet 40, the optimized RF coil design and the dedicated sequence design for infants and children, the MRI system according to the present invention can reduce the exposure to radiation energy and is therefore more suitable for infant and child patients.
[0031] The present invention also provides an MRI method for infants and children, using the above-described MRI system and comprising the steps of:
[0032] S1: placing the infant or child in the incubator 70;
[0033] S2: closing the monitoring shield 30; and
[0034] S3: performing an MRI process after a temperature of the incubator 70 as well as the position thereof relative to the open magnet 40 have been so adjusted that a target site of the infant or child is situated within the imaging area.
[0035] In summary, the present invention provides an MRI system for infants and children and imaging method thereof. The system comprises a base 10, a housing 20, a monitoring shield 30, an open magnet 40, a magnet holder 50, an operating table 60 and an incubator 70. The housing 20 is secured at the bottom to the base 10 and is pivotably connected at the top to the monitoring shield 30. The monitoring shield 30, together with an electromagnetic shielding layer in the housing 20 and a transmission board, provides a complete electromagnetic shield for the MRI system. The magnet holder 50 is fixed to the base 10, and the open magnet 40 is fixed to the magnet holder 50. The open magnet 40 defines an imaging area in which the operating table 60 is fixedly disposed. The incubator 70 is movably connected to the operating table 60. The magnet holder 50, the open magnet 40, the operating table 60 and the incubator 70 are all disposed within a space delimited by the base 10, the housing 20 and the monitoring shield 30. With the optimized structure, particular arrangement of the open magnet 40 and specially designed incubator 70 and operating table 60, the MRI system according to the present invention allows a radiologist to more accurately and intuitively adjust and understand the position and angle at which the infant or child is imaged with the latter being always held in a warm and comfortable environment.
[0036] It will be apparent to those skilled in the art that various changes and modifications can be made to the invention without departing from the spirit and scope thereof Accordingly, it is intended that the present invention also include these modifications and variations if they come within the scope of the appended claims and their equivalents.