Magnetic resonance imaging patient temperature monitoring system and related methods
Abstract
A system for monitoring a patient during MRI imaging to prevent patient burns. The system includes a barrel to provide an MRI image of a patient and an infrared camera to image the patient separately from the MRI image. The infrared camera includes an adjustable field of view and is positionable at a plurality of viewing angles relative to the longitudinal axis of the barrel. The infrared camera is coupled to a processor adapted to monitor the surface temperature of the patient based on the output of the infrared camera. The processor is further adapted to control at least one of the field of view of the infrared camera and/or the viewing angle of the camera during MRI imaging of the patient. The system further includes a patient gown formed of an infrared transmissive material that provides visual concealment for the patient.
Claims
exact text as granted — not AI-modified1 . A method of performing magnetic resonance imaging (MRI) without burning a patient with associated radio-frequency (RF) energy, the method comprising:
providing a patient barrel, the patient barrel defining a central longitudinal axis; positioning a thermal video camera outside of the patient barrel and above the central longitudinal axis of the patient barrel, such that the thermal video camera is vertically offset from the central longitudinal axis of the patient barrel and has a line of sight oriented downward at an angle relative to the central longitudinal axis of the patient barrel, the thermal video camera providing an output to a processor, wherein the output includes at least a plurality of image frames from a thermal video stream of the patient barrel, wherein each of the plurality of image frames includes a first region of interest and a second region of interest, wherein the first region of interest and the second region of interest each include a plurality of points within a boundary, such that the first region of interest includes a first plurality of points within a first boundary and the second region of interest includes a second plurality of points within a second boundary; performing an MRI scan of a patient in the patient barrel to obtain an MRI image of at least a portion of the patient; monitoring, with the processor based on the output of the thermal video camera during the MRI scan, a first mean surface temperature of the first plurality of points within the first region of interest in an image frame and a second mean surface temperature of the second plurality of points within the second region of interest in the image frame; determining a rate of change in the first mean surface temperature relative to a prior mean temperature within the first region of interest and determining a rate of change in the second mean surface temperature relative to a prior mean temperature within the second region of interest; for each of the first and second regions of interest, comparing the rate of change in the mean surface temperature therein with a plurality of tiered threshold values for the respective region of interest; and causing an alert if the rate of change in the mean surface temperature exceeds any one of the plurality of tiered threshold values for any one of the first or second regions of interest.
2 . The method of claim 1 , further comprising altering a field of view of the thermal video camera during the MRI scan to provide observation at multiple locations of the patient within the patient barrel of the MRI device.
3 . The method of claim 1 , further comprising donning the patient with an infrared-transmissive gown formed from polyethylene, polypropylene, or combinations thereof.
4 . The method of claim 1 , wherein the angle is defined between the line of sight of the thermal video camera and the central longitudinal axis of the patient barrel, the method further comprising adjusting the angle to image the patient within the patient barrel.
5 . The method of claim 1 , further comprising terminating the MRI scan in response to the rate of change in the first or second mean surface temperature exceeding any one of the plurality of tiered threshold values for the respective region of interest.
6 . A system for monitoring a patient undergoing magnetic resonance imaging (MRI), the system comprising:
a patient barrel arranged to surround a patient, the patient barrel defining a central longitudinal axis; a thermal video camera configured to image the patient and having a field of view, the thermal video camera being positioned outside of the patient barrel and above the central longitudinal axis of the patient barrel and including an output, such that the thermal video camera is vertically offset from the central longitudinal axis of the patient barrel and has a line of sight oriented downward at an angle relative to the central longitudinal axis of the patient barrel, the output including at least a plurality of image frames from a thermal video stream of the patient barrel, wherein each of the plurality of image frames includes a first region of interest and a second region of interest, wherein the first region of interest and the second region of interest each include a plurality of points within a boundary, such that the first region of interest includes a first plurality of points within a first boundary and the second region of interest includes a second plurality of points within a second boundary; and a processor adapted to:
monitor a first mean surface temperature of the first plurality of points within the first region of interest and a second mean surface temperature of the second plurality of points within the second region of interest based on the output of the thermal video camera during magnetic resonance imaging of the patient,
determine a rate of change of the first mean surface temperature relative to a prior mean surface temperature within the first region of interest and determine a rate of change of the second mean surface temperature relative to a prior mean surface temperature within the second region of interest,
compare the rate of change in the mean surface temperature for each of the first and second regions of interest with a plurality of tiered threshold values for the respective region of interest, and
cause an alert if the rate of change in the mean surface temperature exceeds any one of the plurality of tiered threshold values for any one of the first or second regions of interest.
7 . The system of claim 6 , wherein the processor is further configured to alter the field of view of the thermal video camera during magnetic resonance imaging of the patient to provide observation at multiple locations of the patient within the patient barrel.
8 . The system of claim 6 , wherein the processor is further adapted to terminate magnetic resonance imaging of the patient in response to the rate of change in the mean surface temperature exceeding any one of the plurality of tiered threshold values for any one of the first or second regions of interest.
9 . The system of claim 6 , further comprising a patient gown formed of an infrared transmissive material for wavelengths between 8 microns and 14 microns, inclusive.
10 . The system of claim 9 , wherein the patient gown is formed of at least one of polyethylene, polypropylene, and combinations thereof.
11 . The system of claim 6 , further comprising an electrically conductive enclosure at least partially housing the thermal video camera therein.
12 . The system of claim 6 wherein the thermal video camera includes an adjustable scanning frequency.
13 . The system of claim 6 wherein the thermal video includes an adjustable lens tilt angle.
14 . A system comprising:
an infrared-transmissive gown for a patient; a thermal video camera having a field of view and providing an output, the thermal video camera being positioned such that the patient is within the field of view of the thermal video camera while the patient is in a supine position and at least partially concealed by the infrared-transmissive gown, the output of the thermal video camera including a plurality of image frames in a thermal video stream, wherein each of the plurality of image frames includes a first region of interest and a second region of interest, wherein the first region of interest and the second region of interest each include a plurality of points within a boundary, such that the first region of interest includes a first plurality of points within a first boundary and the second region of interest includes a second plurality of points within a second boundary; and a processor adapted to:
monitor a first mean surface temperature of the first plurality of points within the first region of interest and a second mean surface temperature of the second plurality of points within the second region of interest based on the output of the thermal video camera,
determine a rate of change of the first mean surface temperature relative to a prior mean surface temperature within the first region of interest and determine a rate of change of the second mean surface temperature relative to a prior mean surface temperature within the second region of interest,
compare the rate of change in the mean surface temperature for each of the first and second regions of interest with a plurality of tiered threshold values for the respective region of interest, and
cause a notification if the rate of change in the mean surface temperature exceeds any one of the plurality of tiered threshold values for any one of the first or second regions of interest.
15 . The system of claim 14 , wherein the processor is further configured to alter the field of view of the thermal video camera to provide observation at multiple locations of the patient.
16 . The system of claim 14 , wherein the gown formed of an infrared transmissive material for wavelengths between 8 microns and 14 microns, inclusive.
17 . The system of claim 14 , wherein the gown is formed of at least one of polyethylene, polypropylene, and combinations thereof.
18 . The system of claim 14 , further comprising an electrically conductive enclosure at least partially housing the thermal video camera therein.
19 . The system of claim 14 , wherein the thermal video camera includes an adjustable scanning frequency.Join the waitlist — get patent alerts
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