Patents by Inventor Alexander Gyles PANTHER

Alexander Gyles PANTHER has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20180103890
    Abstract: A magnetic resonance imaging (MRI) system is provided for imaging immune response of soft tissue to therapy by, prior to therapy, administering a contrast agent to the soft tissue; imaging a region of interest using delta relaxation enhanced magnetic resonance (DREMR) to define a functional section; selectively sampling local cells in the functional section; conducting immuno-assay analysis on the sampled local cells; and following therapy, further imaging said region of interest using DREMR to assess immune response of said cells to therapy.
    Type: Application
    Filed: March 11, 2015
    Publication date: April 19, 2018
    Inventors: Cameron Anthony PIRON, Chad Tyler HARRIS, Jeff STAINSBY, Alexander Gyles PANTHER
  • Patent number: 9915712
    Abstract: A magnetic resonance imaging (MRI) system is provided. The system includes a main field magnet generating a main magnetic field B0. Moreover, the system further includes radio frequency (RF) receiver coils including a first combination of two coils, the two coils of the first combination decoupled based on quadrature decoupling such that the two coils of the first combination are able to receive signals orthogonal to each other and to B0. The two coils can be butterfly coils, the loop plane of the butterfly coils arranged along a surface, the longitudinal axis of the butterfly coils being substantially orthogonal and crossing at substantially midpoint. The surface can be substantially orthogonal to B0 and be curved. The first of the two coils can also be a loop coil and the second of the two coils a butterfly coil.
    Type: Grant
    Filed: February 17, 2017
    Date of Patent: March 13, 2018
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Cameron Anthony Piron, Alexander Gyles Panther
  • Publication number: 20180052210
    Abstract: Some implementations provide a method for safe operation of a magnetic resonance imaging (MRI) system, the method including: determining, at least in part by using a sensor device, location information that indicates a location of an MR-incompatible object relative to the MRI system, the MRI system generating a polarizing magnetic field for imaging a subject; based on the determined location information, determining, by a control unit associated with the MRI system, that the MR-incompatible object poses an operational hazard to the MRI system; and in response to determining that the MR-incompatible object poses an operational hazard to the MRI system, reducing, by the control unit, a strength of the polarizing magnetic field.
    Type: Application
    Filed: March 11, 2015
    Publication date: February 22, 2018
    Inventors: Cameron Anthony Piron, Chad Tyler Harris, Jeff Alan Stainsby, Alexander Gyles Panther, Gal Sela
  • Publication number: 20180031654
    Abstract: A system and method of acquiring an image at a magnetic resonance imaging (MRI) system is provided. Accordingly, an analog signal based on a pulse sequence and a first gain is obtained. The analog signal is converted into a digitized signal. A potential quantization error is detected in the digitized signal based on a boundary. When the detection is affirmative, a replacement analog signal based on the pulse sequence is received. At least one portion of the replacement analog signal can be based on an adjusted gain. The adjusted gain is a factor of the first gain. The replacement analog signal is digitized into a replacement digitized signal. At least one portion of the replacement digitized signal corresponding to the at least one portion of the replacement analog signal is adjusted based on a reversal of the factor.
    Type: Application
    Filed: September 15, 2017
    Publication date: February 1, 2018
    Inventors: Cameron Anthony PIRON, Alexander Gyles PANTHER, Chad Tyler HARRIS, Stephen B.E. MCFADYEN
  • Publication number: 20180024212
    Abstract: A method for operating a magnetic resonance imaging (MRI) system that includes: accessing data indicating a first region for imaging a portion of a subject, the portion being placed in a main magnet of the MRI system and the main magnet generating a magnetic field; selecting, from a group of available shimming coils, a first subset of shimming coils arranged and configured such that, when the shimming coils in the first subset are driven, a homogeneity of the magnetic field at the first region is increased; and driving the shimming coils in the selected first subset of shimming coils without driving other shimming coils in the group of available shimming coils such that the homogeneity of the magnetic field at the first region increases relative to the homogeneity of the magnetic field at the first region when the shimming coils of the selected first subset are not driven.
    Type: Application
    Filed: April 10, 2015
    Publication date: January 25, 2018
    Applicant: Synaptive Medical (Barbados) Inc.
    Inventors: Chad Tyler Harris, Philip J. Beatty, Alexander Gyles Panther, Jeff Alan Stainsby, David Mark Deschenes
  • Publication number: 20180000467
    Abstract: A medical navigation system is provided for performing at least part of an assessment of a non-living body. The medical navigation system comprises a positioning device having a positioning arm with an end effector at the end of the positioning arm, an imaging device coupled to the end effector, and a controller electrically coupled to the positioning device and the imaging device. The controller has a processor coupled to a memory and a display. The controller is configured to generate a signal to move the positioning arm to position the imaging device through a range of motion to perform a scan of a surface of the body and receive and save as data in the memory signals generated by the imaging device during the range of motion.
    Type: Application
    Filed: March 23, 2015
    Publication date: January 4, 2018
    Inventors: Kai Michael HYNNA, Joshua Lee RICHMOND, Alexander Gyles PANTHER, Thanh Vinh VUONG
  • Publication number: 20170312545
    Abstract: Some implementations provide a method that includes: placing a human subject on a moveable platform located in a room with a magnetic resonance imaging (MRI) scanner and a radiation therapy machine; moving the platform into a first position such that the human subject is positioned to be imaged by MRI; operating the MRI scanner while the platform is in the first position to obtain an image of the human subject; moving the platform into a second position such that the human subject is in position to receive radiation therapy from the radiation therapy machine; reducing the magnetic field such that the magnetic field at the radiation therapy machine is below a threshold value; and while the platform is in the second position and the magnetic field at the radiation therapy machine is below the threshold value, operating the radiation therapy machine to perform radiation therapy on the human subject.
    Type: Application
    Filed: November 4, 2014
    Publication date: November 2, 2017
    Inventor: Alexander Gyles Panther
  • Patent number: 9797968
    Abstract: A method of data acquisition at a magnetic resonance imaging (MRI) system is provided. The system receives at least a portion of raw data for an image, and detects anomalies in the portion of raw data received. When anomalies are detected, the system can correct those anomalies dynamically, without waiting for a new scan to be ordered. The system can attempt to scan the offending portion of the raw data, either upon detection of the anomaly or at some point during the scan. The system can also correct anomalies using digital correction methods based on expected values. The anomalies can be detected based on variations from thresholds, masks and expected values all of which can be obtained using one of the ongoing scan, previously performed scans and apriori information relating to the type of scan being performed.
    Type: Grant
    Filed: September 15, 2014
    Date of Patent: October 24, 2017
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Cameron Anthony Piron, Alexander Gyles Panther, Chad Tyler Harris, Stephen B. E. McFadyen
  • Publication number: 20170293005
    Abstract: A delta-relaxation magnetic resonance imaging (DREMR) system is provided. The system includes a main field magnet and field shifting coils. A main magnetic field with a strength B0 can be generated using the main filed magnet and the strength B0 of the main magnetic field can be varied through the use of the field-shifting coils. The DREMR system can be used to perform signal acquisition based on a pulse sequence for acquiring at least one of T2*-weighted signals imaging; MR spectroscopy signals; saturation imaging signals and MR signals for fingerprinting. The MR signal acquisition can be augmented by varying the strength B0 of the main magnetic field for at least a portion of the pulse sequence used to acquire the MR signal.
    Type: Application
    Filed: February 23, 2015
    Publication date: October 12, 2017
    Inventors: Alexander Gyles PANTHER, Cameron Anthony PIRON, Jeff Alan STAINSBY, Chad Tyler HARRIS
  • Publication number: 20170258528
    Abstract: A medical imaging system for illuminating tissue samples using three-dimensional structured illumination microscopy is port-based surgery is provided. The system comprises: an image sensor; a mirror device; zoom optics; a light modulator; a processor; and collimating optics configured to convey one or more images from the modulator to the mirror, the mirror configured to convey the images to the zoom optics, the zoom optics configured: to convey the image(s) from the mirror to a tissue sample; and convey one or more resulting images, formed by the image(s) illuminating the sample, back to the mirror, which conveys the resulting image(s) from the zoom optics to the image sensor, and, the processor configured to control the modulator to form the image(s), the image(s) including at least one pattern selected to interact with the sample to generate different depth information in each of resulting image(s).
    Type: Application
    Filed: August 24, 2015
    Publication date: September 14, 2017
    Applicant: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Yanhui BAI, Michael Frank Gunter WOOD, Siu Wai Jacky MAK, Murugathas YUWARAJ, Alexander Gyles PANTHER, Sean Jy-Shyang CHEN
  • Patent number: 9696392
    Abstract: A method of data acquisition at a magnetic resonance imaging (MRI) system is provided. The system receives at least a portion of raw data for an image, and detects anomalies in the portion of raw data received. When anomalies are detected, the system can correct those anomalies dynamically, without waiting for a new scan to be ordered. The system can attempt to scan the offending portion of the raw data, either upon detection of the anomaly or at some point during the scan. The system can also correct anomalies using digital correction methods based on expected values. The anomalies can be detected based on variations from thresholds, masks and expected values all of which can be obtained using one of the ongoing scan, previously performed scans and apriori information relating to the type of scan being performed.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: July 4, 2017
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Cameron Anthony Piron, Alexander Gyles Panther, Vincent Luciani, Chad Tyler Harris
  • Publication number: 20170160359
    Abstract: A method of data acquisition at a magnetic resonance imaging (MRI) system is provided. The system receives at least a portion of raw data for an image, and detects anomalies in the portion of raw data received. When anomalies are detected, the system can correct those anomalies dynamically, without waiting for a new scan to be ordered. The system can attempt to scan the offending portion of the raw data, either upon detection of the anomaly or at some point during the scan. The system can also correct anomalies using digital correction methods based on expected values. The anomalies can be detected based on variations from thresholds, masks and expected values all of which can be obtained using one of the ongoing scan, previously performed scans and apriori information relating to the type of scan being performed.
    Type: Application
    Filed: September 15, 2014
    Publication date: June 8, 2017
    Inventors: Cameron Anthony PIRON, Alexander Gyles PANTHER, Chad Tyler HARRIS, Stephen B.E. MCFADYEN
  • Publication number: 20170160355
    Abstract: A magnetic resonance imaging (MRI) system is provided. The system includes a main field magnet generating a main magnetic field B0. Moreover, the system further includes radio frequency (RF) receiver coils including a first combination of two coils, the two coils of the first combination decoupled based on quadrature decoupling such that the two coils of the first combination are able to receive signals orthogonal to each other and to B0. The two coils can be butterfly coils, the loop-plain of the butterfly coils arranged along a surface, the longitudinal axis of the butterfly coils being substantially orthogonal and crossing at substantially midpoint. The surface can be substantially orthogonal to B0 and be curved. The first of the two coils can also be a loop coil and the second of the two coils a butterfly coil.
    Type: Application
    Filed: February 17, 2017
    Publication date: June 8, 2017
    Inventors: Cameron Anthony PIRON, Alexander Gyles PANTHER
  • Patent number: 9612303
    Abstract: A magnetic resonance imaging (MRI) system is provided. The system includes a main field magnet generating a main magnetic field B0. Moreover, the system further includes radio frequency (RF) receiver coils including a first combination of two coils, the two coils of the first combination decoupled based on quadrature decoupling such that the two coils of the first combination are able to receive signals orthogonal to each other and to B0. The two coils can be butterfly coils, the loop-plain of the butterfly coils arranged along a surface, the longitudinal axis of the butterfly coils being substantially orthogonal and crossing at substantially midpoint. The surface can be substantially orthogonal to B0 and be curved. The first of the two coils can also be a loop coil and the second of the two coils a butterfly coil.
    Type: Grant
    Filed: March 14, 2014
    Date of Patent: April 4, 2017
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Cameron Anthony Piron, Alexander Gyles Panther
  • Publication number: 20170067979
    Abstract: A method of correcting warping of an acquired image in an MRI system, caused by non-linearities in gradient field profiles of gradient coils is set forth, comprising a) constructing a computer model representing conducting pathways for each gradient coil in said MRI system; b) calculating a predicted magnetic field at each point in space for each said gradient coil in said model; c) measuring actual magnetic field at each point in space for each said gradient coil in said MRI system; d) verifying accuracy of said model by comparing said predicted magnetic field to said actual magnetic field at each said point in space and in the event said model is not accurate then repeating a)-d), and in the event said model is accurate then; constructing a distortion map for mapping coordinates in real space to coordinates in warped space of said acquired image based on deviations of said predicted magnetic field from linearity; and unwarping said warping of the acquired image using said distortion map.
    Type: Application
    Filed: November 17, 2016
    Publication date: March 9, 2017
    Inventors: Alexander Gyles Panther, Chad Tyler Harris, Philip J. Beatty
  • Publication number: 20170067975
    Abstract: A method of configuring a conducting grid of elements interconnected at intersecting nodes by switches is described.
    Type: Application
    Filed: November 15, 2016
    Publication date: March 9, 2017
    Inventors: Chad Tyler Harris, Alexander Gyles Panther, Stephen B.E. McFadyen
  • Patent number: 9529068
    Abstract: A method of correcting warping of an acquired image in an MRI system, caused by non-linearities in gradient field profiles of gradient coils is set forth, comprising a) constructing a computer model representing conducting pathways for each gradient coil in said MRI system; b) calculating a predicted magnetic field at each point in space for each said gradient coil in said model; c) measuring actual magnetic field at each point in space for each said gradient coil in said MRI system; d) verifying accuracy of said model by comparing said predicted magnetic field to said actual magnetic field at each said point in space and in the event said model is not accurate then repeating a)-d), and in the event said model is accurate then; constructing a distortion map for mapping coordinates in real space to coordinates in warped space of said acquired image based on deviations of said predicted magnetic field from linearity; and unwarping said warping of the acquired image using said distortion map.
    Type: Grant
    Filed: April 27, 2015
    Date of Patent: December 27, 2016
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Alexander Gyles Panther, Chad Tyler Harris, Phillip J. Beatty
  • Patent number: 9523751
    Abstract: A method of configuring a conducting grid of elements interconnected at intersecting nodes by switches is described.
    Type: Grant
    Filed: April 27, 2015
    Date of Patent: December 20, 2016
    Assignee: SYNAPTIVE MEDICAL (BARBADOS) INC.
    Inventors: Chad Tyler Harris, Alexander Gyles Panther, Stephen B. E. McFadyen
  • Publication number: 20160313426
    Abstract: A method of configuring a conducting grid of elements interconnected at intersecting nodes by switches is described.
    Type: Application
    Filed: April 27, 2015
    Publication date: October 27, 2016
    Inventors: Chad Tyler HARRIS, Alexander Gyles PANTHER, Stephen B.E. MCFADYEN
  • Publication number: 20160313434
    Abstract: A method of correcting warping of an acquired image in an MRI system, caused by non-linearities in gradient field profiles of gradient coils is set forth, comprising a) constructing a computer model representing conducting pathways for each gradient coil in said MRI system; b) calculating a predicted magnetic field at each point in space for each said gradient coil in said model; c) measuring actual magnetic field at each point in space for each said gradient coil in said MRI system; d) verifying accuracy of said model by comparing said predicted magnetic field to said actual magnetic field at each said point in space and in the event said model is not accurate then repeating a)-d), and in the event said model is accurate then; constructing a distortion map for mapping coordinates in real space to coordinates in warped space of said acquired image based on deviations of said predicted magnetic field from linearity; and unwarping said warping of the acquired image using said distortion map.
    Type: Application
    Filed: April 27, 2015
    Publication date: October 27, 2016
    Inventors: Alexander Gyles Panther, Chad Tyler Harris, Phillip J. Beatty