Patents by Inventor Vijay Parthasarathy

Vijay Parthasarathy 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: 20160143621
    Abstract: The present invention relates to an ultrasound elastography system (10) for providing an elastography measurement result of an anatomical site (32) a corresponding method. The system (10) is configured to visualize a suitability for shear wave elastography of the region of interest (33) to the user within the ultrasound image (52) and/or to recommend an elastography acquisition plane (48, 50) for conducting shear wave elastography to the user. By this, proper selection of a location for an elastography measurement may be supported.
    Type: Application
    Filed: June 25, 2014
    Publication date: May 26, 2016
    Applicant: KONINKLIJKE PHILIPS N. V.
    Inventors: VIJAY PARTHASARATHY, HUA XIE, Jean-Iuc Robert, Shiwei Zhou, Vijay Shamdasani
  • Patent number: 9263564
    Abstract: In one embodiment, a power integrated circuit device includes a main lateral high-voltage field-effect transistor (HVFET) and an adjacently-located lateral sense FET, both of which are formed on a high-resistivity substrate. A sense resistor is formed in a well region disposed in an area of the substrate between the HVFET and the sense FET. A parasitic substrate resistor is formed in parallel electrical connection with the sense resistor between the source regions of the HVFET and the sense FET. Both transistor devices share common drain and gate electrodes. When the main lateral HVFET and the sense FET are in an on-state, a voltage potential is produced at the second source metal layer that is proportional to a first current flowing through the lateral HVFET.
    Type: Grant
    Filed: March 28, 2013
    Date of Patent: February 16, 2016
    Assignee: Power Integrations, Inc.
    Inventors: Vijay Parthasarathy, Sujit Banerjee
  • Patent number: 9259155
    Abstract: A therapy system (10) includes one or more processors (98, 100). The processors (98, 100) are programmed to receive one or more of: (1) dosimetric data from dosimeters (26, 28, 202, 204, 206, 208, 210, 212) implanted within a patient and/or positioned on a vest (200); and (2) motion data from surrogates (18, 20, 22, 24) implanted within the patient. Based on the motion data, a current location and/or shape of a surrogate (18, 20, 22, 24) is determined and deviations between the current location and/or shape and a reference location and/or shape are determined. Based on the dosimetric data, a delivered dose distribution is compared with a planned dose distribution and deviations therebetween are determined. The deviations determined from the motion data and/or the dosimetric data are employed for adaptive planning, alignment, post treatment analysis, and safety.
    Type: Grant
    Filed: July 24, 2012
    Date of Patent: February 16, 2016
    Assignee: KONINKLIJKE PHILIPS N.V.
    Inventors: Shyam Bharat, Vijay Parthasarathy
  • Publication number: 20160030130
    Abstract: The invention relates to an imaging apparatus (24) for imaging an introduction element (17) like a needle or a catheter for performing a brachytherapy or a biopsy. A tracking unit (3, 4) tracks the location of the introduction element within a living being (2), an imaging unit (6) like an ultrasound imaging unit generates an image showing an inner part of the living being, which includes the tracked location of the introduction element, based on the tracked location, and a display (7) displays the image. During the brachytherapy or biopsy the display can always show the introduction element, without requiring a manual control. For instance, it is not necessary that a physician manually controls the position and image plane of the imaging unit. This allows for an accurate and fast insertion of the introduction element into the living being such that a target region is reliably reached.
    Type: Application
    Filed: April 4, 2014
    Publication date: February 4, 2016
    Applicant: KONINKLIJKE PHILIPS N.V.
    Inventors: AMIR MOHAMMAD TAHMASEBI MARAGHOOSH, SHYAM BHARAT, EHSAN DEHGHAN MARVAST, VIJAY PARTHASARATHY
  • Publication number: 20150342572
    Abstract: A method and system track a location of an object while the object is disposed within a region of interest within biological tissue, the location of the object being determined with respect to a tracking coordinate frame; generate acoustic images of the region of interest, the acoustic images being generated with respect to an acoustic image coordinate frame which is different from the tracking coordinate frame; transform the location of the object from the tracking coordinate frame to the acoustic image coordinate frame; and automatically adjust at least one image resolution parameter of the acoustic images in response to the location of the object with respect to the acoustic image coordinate frame.
    Type: Application
    Filed: January 15, 2014
    Publication date: December 3, 2015
    Inventors: AMIR MOHAMMAD TAHMASEBI MARAGHOOSH, VIJAY PARTHASARATHY
  • Patent number: 9196680
    Abstract: A laterally diffused metal oxide semiconductor field effect transistor (LDMOSFET) includes: a source contact region, a gate contact region, a drain contact region, and an n-type buried layer. The LDMOSFET also includes a p-type body region formed in an n-type epitaxial layer, the p-type body region directly contacting the source contact region and extending past an end of the source contact region toward the drain contact region. The LDMOSFET also includes a p-type reduced surface field (PRSF) region formed in the n-type epitaxial layer, the PRSF region disposed between the p-type body region and the n-type buried layer. The LDMOSFET also includes an n-type drift region formed in the n-type epitaxial layer, the n-type drift region directly contacting the drain contact region. The LDMOSFET also includes an n-type diffusion region in the n-type epitaxial layer, the n-type diffusion region electrically connecting the n-type buried layer with the n-type drift region.
    Type: Grant
    Filed: June 24, 2014
    Date of Patent: November 24, 2015
    Assignee: MAXIM INTEGRATED PRODUCTS, INC.
    Inventors: Vishnu Khemka, Ronghua Zhu, Tahir Arif Khan, Vijay Parthasarathy
  • Patent number: 9196681
    Abstract: A laterally diffused metal oxide semiconductor field effect transistor (LDMOSFET) includes a p-type body region formed in an n-type epitaxial layer, the p-type body region directly contacting a source contact region and extending past an end of the source contact region toward a drain contact region. The LDMOSFET also includes a p-type reduced surface field (PRSF) region formed in the n-type epitaxial layer, the PRSF region disposed between the p-type body region and the n-type buried layer. The LDMOSFET also includes an n-type drain drift region formed in the n-type epitaxial layer, the n-type drain drift region directly contacting the drain contact region. The LDMOSFET also includes an n-type drift region formed in the n-type epitaxial layer, the n-type drift region directly contacting the n-type drain drift region.
    Type: Grant
    Filed: June 24, 2014
    Date of Patent: November 24, 2015
    Assignee: MAXIM INTEGRATED PRODUCTS, INC.
    Inventors: Vishnu Khemka, Ronghua Zhu, Tahir Arif Khan, Vijay Parthasarathy
  • Publication number: 20150320439
    Abstract: An ultrasound system includes a 3D imaging probe and a needle guide which attaches to the probe for guidance of needle insertion into a volumetric region which can be scanned by the 3D imaging probe. The needle guide responds to the insertion of a needle through the guide by identifying a plane for scanning by the probe which is the insertion plane through which the needle will pass during insertion. The orientation of the insertion plane is communicated to the probe to cause the probe to scan the identified plane and produce images of the needle as it travels through the insertion plane.
    Type: Application
    Filed: June 28, 2013
    Publication date: November 12, 2015
    Inventors: GARY LEE ANDREWS, VIJAY PARTHASARATHY, GARY CHENG-HOW NG, DOUGLAS ALLEN STANTON, ANDREW LEE ROBINSON, JOCHEN KRUECKER, CHRISTOPHER STEPHEN HALL, JAMES ROBERTSON JAGO, VIJAY SHAMDASANI
  • Publication number: 20150324523
    Abstract: A system for indicating the quality of a medical report including a medical report system which generates a medical score based on a clinician's interpretation of medical data, a portion of the medical report including text in a natural language; and a medical report grading device which processes the portion of text in natural language and generates one or more scores of one or more categories relating to the quality of the medical report.
    Type: Application
    Filed: May 6, 2014
    Publication date: November 12, 2015
    Applicant: KONINKLIJKE PHILIPS N.V.
    Inventors: Vijay Parthasarathy, Alexander Adrianus Martinus Verbeek, Yuechen Qian
  • Publication number: 20150306423
    Abstract: A radiation therapy system (1) includes an ultrasound (US) imaging unit (2), a registration unit (30), an US motion unit (44), and a real-time dose computation engine (46). The ultrasound (US) imaging unit (2) generates a baseline and real-time US images (3) of a subject body (4) region including a target and one or more Organs At Risk (OARs). The registration unit (30) deformably registers a planning image (32) and the baseline US image (36), and maps (66) radiation absorptive properties of tissue in the planning image (32) to the baseline US image (36). The US motion unit (44) measures motion of the target volume and OARs during radiation therapy treatment based on the real-time US images. The real-time dose computation engine (46) computes a real-time time radiation dose delivered to the tissues based on the tissue radiation absorptive properties mapped from the baseline or planning images to the real-time 3D US images (3).
    Type: Application
    Filed: September 17, 2013
    Publication date: October 29, 2015
    Inventors: Shyam BHARAT, Vijay PARTHASARATHY, Ameet Kumar JAIN
  • Publication number: 20150269728
    Abstract: A method for mapping coordinates between images and tracking systems includes providing (702) a calibration tool having a fixed geometric shape. The calibration tool includes first sensors associated with an imaging mode and second sensors associated with a tracking mode. The first and second sensors are distributed and mounted at known locations on the fixed geometric shape. The first sensors are located (708) in a field of view of an imaging system to determine a position of the calibration tool in image space. The second sensors are tracked (716) to determine a same position of the calibration tool in tracking space. The image space and the tracking space are mapped (722) in a common coordinate system based on artifacts of the calibration tool.
    Type: Application
    Filed: July 17, 2013
    Publication date: September 24, 2015
    Inventors: Vijay Parthasarathy, Ameet Kumar Jain, Hua Xie, Francois Guy Gerard Marie Vignon, Christopher Stephen Hall
  • Publication number: 20150173706
    Abstract: An ultrasound system includes a 3D imaging probe and a needle guide which attaches to the probe for guidance of the insertion of multiple needles into a volumetric region which can be scanned by the 3D imaging probe. The needle guide responds to the insertion of a needle through the guide by identifying a plane for scanning by the probe which is the insertion plane through which the needle will pass during insertion. The orientation of the insertion plane is communicated to the probe to cause the probe to scan the identified plane and produce images of the needle as it travels through the insertion plane.
    Type: Application
    Filed: June 18, 2013
    Publication date: June 25, 2015
    Inventors: Gary Lee Andrews, Vijay Parthasarathy, Gary Cheng-How NG, Douglas Allen Stanton, Andrew Lee Robinson, Jochen Kruecker
  • Publication number: 20150016728
    Abstract: Systems and methods for image registration includes an image feature detection module (116) configured to identify internal landmarks of a first image (110). An image registration and transformation module (118) is configured to compute a registration transformation, using a processor, to register a second image (112) with the first image based on surface landmarks to result in a registered image. A landmark identification module (120) is configured to overlay the internal landmarks onto the second image using the registration transformation, encompass each of the overlaid landmarks within a virtual object to identify corresponding landmark pairs in the registered image, and register the second image with the first image using the registered image with the identified landmarks.
    Type: Application
    Filed: March 1, 2013
    Publication date: January 15, 2015
    Inventors: Vijay Parthasarathy, Muqing Lin, Jochen Kruecker
  • Publication number: 20150014770
    Abstract: A method for fabricating a high-voltage field-effect transistor includes forming a body region, a source region, and a drain region in a semiconductor substrate. The drain region is separated from the source region by the body region. Forming the drain region includes forming an oxide layer on a surface of the semiconductor substrate over the drain region and performing a plurality of ion implantation operations through the oxide layer while tilting the semiconductor substrate such that ion beams impinge on the oxide layer at an angle that is offset from perpendicular. The plurality of ion implantation operations form a corresponding plurality of separate implanted layers within the drain region. Each of the implanted layers is formed at a different depth within the drain region.
    Type: Application
    Filed: July 12, 2013
    Publication date: January 15, 2015
    Inventors: Vijay PARTHASARATHY, Sujit BANERJEE
  • Publication number: 20140375822
    Abstract: An interventional system employing an interventional tool (20) having a tracking point, and an imaging system (30) operable for generating at least one image of at least a portion of the interventional tool (20) relative to an anatomical region of a body. The system further employs a tracking system (40) operable for tracking any movements of the interventional tool (20) and the imaging system (30) within a spatial frame reference relative to the anatomical region of the body, wherein the tracking system (40) is calibrated to the interventional tool (20) and the imaging system (30) and a tracking quality monitor (52) operable for monitoring a tracking quality of the tracking system (40)s as a function of a calibrated location error for each image between a calibrated tracking location of the tracking point within the spatial reference frame and an image coordinate location of the tracking point in the image.
    Type: Application
    Filed: December 27, 2012
    Publication date: December 25, 2014
    Inventors: Ameet Kumar Jain, Vijay Parthasarathy
  • Patent number: 8866201
    Abstract: A high-voltage device structure comprises a resistor coupled to a tap transistor that includes a JFET in a configuration wherein a voltage provided at a terminal of the JFET is substantially proportional to an external voltage when the external voltage is less than a pinch-off voltage of the JFET. The voltage provided at the terminal being substantially constant when the external voltage is greater than the pinch-off voltage. One end of the resistor is substantially at the external voltage when the external voltage is greater than the pinch-off voltage. When the external voltage is negative, the resistor limits current injected into the substrate. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure.
    Type: Grant
    Filed: February 10, 2012
    Date of Patent: October 21, 2014
    Assignee: Power Integrations, Inc.
    Inventors: Sujit Banerjee, Vijay Parthasarathy
  • Patent number: 8823093
    Abstract: In one embodiment, a high voltage field-effect transistor (HVFET) includes a field oxide layer that covers a first well region, the field oxide layer having a first thickness and extending in a second lateral direction from a drain region to near a second well region. A gate oxide covers a channel region and has a second dimension in a first lateral direction. A gate extends in the second lateral direction from the source region to over a portion of the field oxide layer, the gate being insulated from the channel region by the gate oxide, the gate extending in the first lateral dimension over an inactive area of the HVFET beyond the second dimension of the gate oxide, the gate being insulated from the first and second well regions over the inactive area by the field oxide layer.
    Type: Grant
    Filed: June 25, 2012
    Date of Patent: September 2, 2014
    Assignee: Power Integrations, Inc.
    Inventors: Sujit Banerjee, Vijay Parthasarathy
  • Patent number: 8816433
    Abstract: In one embodiment, a transistor fabricated on a semiconductor die includes a first section of transistor segments disposed in a first area of the semiconductor die, and a second section of transistor segments disposed in a second area of the semiconductor die adjacent the first area. Each of the transistor segments in the first and second sections includes a pillar of a semiconductor material that extends in a vertical direction. First and second dielectric regions are disposed on opposite sides of the pillar. First and second field plates are respectively disposed in the first and second dielectric regions. Outer field plates of transistor segments adjoining first and second sections are either separated or partially merged.
    Type: Grant
    Filed: March 28, 2013
    Date of Patent: August 26, 2014
    Assignee: Power Integrations, Inc.
    Inventors: Vijay Parthasarathy, Sujit Banerjee, Martin H. Manley
  • Publication number: 20140206994
    Abstract: A method, system, and program product are provided for accurately visualizing soft tissue motion on an x-ray image. Real time ultrasound images are registered to an x-ray image space. A point of interest is defined. Motion of the selected point is determined from the real time ultrasound images. The determined motion is applied to the selected point on the x-ray image.
    Type: Application
    Filed: July 26, 2012
    Publication date: July 24, 2014
    Applicant: KONINKLIJKE PHILIPS N.V.
    Inventors: Ameet Kumar Jain, Vijay Parthasarathy
  • Publication number: 20140193058
    Abstract: A therapy system (10) includes one or more processors (98, 100). The processors (98, 100) are programmed to receive one or more of: (1) dosimetric data from dosimeters (26, 28, 202, 204, 206, 208, 210, 212) implanted within a patient and/or positioned on a vest (200); and (2) motion data from surrogates (18, 20, 22, 24) implanted within the patient. Based on the motion data, a current location and/or shape of a surrogate (18, 20, 22, 24) is determined and deviations between the current location and/or shape and a reference location and/or shape are determined. Based on the dosimetric data, a delivered dose distribution is compared with a planned dose distribution and deviations therebetween are determined. The deviations determined from the motion data and/or the dosimetric data are employed for adaptive planning, alignment, post treatment analysis, and safety.
    Type: Application
    Filed: July 24, 2012
    Publication date: July 10, 2014
    Applicant: KONINKLIJKE PHILIPS N.V.
    Inventors: Shyam Bharat, Vijay Parthasarathy