Patents Examined by Thomas R Artman
  • Patent number: 11207546
    Abstract: Systems and methods for determining beam asymmetry in a radiation treatment system using electronic portal imaging devices (EPIDs) without implementation of elaborate and complex EPID calibration procedures. The beam asymmetry is determined based on radiation scattered from different points in the radiation beam and measured with the same region of interest ROI of the EPID.
    Type: Grant
    Filed: April 13, 2020
    Date of Patent: December 28, 2021
    Assignee: VARIAN MEDICAL SYSTEMS INTERNATIONAL AG
    Inventors: Reto Ansorge, Mathias Lehmann, Stefan J. Thieme-Marti
  • Patent number: 11207038
    Abstract: A method is for collimator element adjustment of an x-ray system with a central x-ray axis and an optical axis of an optical imaging device differing therefrom. In an embodiment, the method includes displaying a first recorded optical image of the examination object; marking a target region as a region to be shown in the displayed first recorded optical image; determination of at least one first collimator element position value based on the marked target region in the first recorded optical image; and adjustment of the collimator element position with the at least one first collimator element position value determined.
    Type: Grant
    Filed: March 16, 2020
    Date of Patent: December 28, 2021
    Assignee: Siemens Healthcare GmbH
    Inventor: Sven-Martin Sutter
  • Patent number: 11212903
    Abstract: An apparatus for generating extreme ultraviolet (EUV) radiation includes a droplet generator configured to generate target droplets. An excitation laser is configured to heat the target droplets using excitation pulses to convert the target droplets to plasma. A deformable mirror is disposed in a path of the excitation laser. A controller is configured to adjust parameters of the excitation laser by controlling the deformable mirror based on a feedback parameter.
    Type: Grant
    Filed: August 26, 2019
    Date of Patent: December 28, 2021
    Assignee: TAIWAN SEMICONDUCTOR MANUFACTURING CO., LTD.
    Inventors: Ting-Ya Cheng, Chun-Lin Chang, Li-Jui Chen, Han-Lung Chang
  • Patent number: 11191508
    Abstract: A method, system and computer readable storage media for segmenting individual intra-oral measurements and registering said individual intraoral measurements to eliminate or reduce registration errors. An operator may use a dental camera to scan teeth and a trained deep neural network may automatically detect portions of the input images that can cause registration errors and reduce or eliminate the effect of these sources of registration errors.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: December 7, 2021
    Assignee: DENTSPLY SIRONA INC.
    Inventors: Stan Mandelkern, Joseph Lasker, Fred Duewer
  • Patent number: 11191516
    Abstract: Methods and systems are provided for powering an imaging system. In one embodiment, a system comprises a direct current (DC) bus, an x-ray source coupled to the DC bus, a power distribution unit (PDU) with an input coupled to a three-phase alternating current (AC) source and an output coupled to the DC bus, and an energy storage apparatus comprising a supercapacitor, the energy storage apparatus coupled to the DC bus and configured to store electrical energy output by the PDU in the supercapacitor, and output the stored electrical energy directly to the DC bus for powering the x-ray source. In this way, an x-ray source of an imaging system may be adequately powered beyond the limitations of a PDU without upgrading the electrical utilities of a hospital and without upgrading the PDU. The supercapacitor is protected by FPGA by measuring input current, voltage, temperature, and voltage balance.
    Type: Grant
    Filed: September 19, 2019
    Date of Patent: December 7, 2021
    Assignee: GE Precision Healthcare LLC
    Inventors: Saeid Mirzaei, Eric Aasen, Todd Filtz
  • Patent number: 11193062
    Abstract: Disclosed are a quantum dot population including a plurality of cadmium free quantum dots, a quantum dot polymer composite including the same, and a display device including the same. The plurality of cadmium free quantum dots includes: a semiconductor nanocrystal core comprising indium and phosphorous, a first semiconductor nanocrystal shell disposed on the semiconductor nanocrystal core and comprising zinc and selenium, and a second semiconductor nanocrystal shell disposed on the first semiconductor nanocrystal shell and comprising zinc and sulfur, wherein an average particle size of the plurality of cadmium free quantum dots is greater than or equal to about 5.5 nm, a standard deviation of particle sizes of the plurality of cadmium free quantum dots is less than or equal to about 20% of the average particle size, and an average solidity of the plurality of cadmium free quantum dots is greater than or equal to about 0.85.
    Type: Grant
    Filed: March 20, 2020
    Date of Patent: December 7, 2021
    Assignees: SAMSUNG ELECTRONICS CO., LTD., SAMSUNG DISPLAY CO., LTD., SAMSUNG SDI CO.. LTD.
    Inventors: Garam Park, Tae Gon Kim, Nayoun Won, Shin Ae Jun, Soo Kyung Kwon, Seon-Yeong Kim, Shang Hyeun Park, Jooyeon Ahn, Yuho Won, Eun Joo Jang, Hyo Sook Jang
  • Patent number: 11191507
    Abstract: Provided are: a device (1) and a system (100) for quantitatively calculating bone density by using an X-ray image of a bone pail, in particular, an alveolar bone; and an imaging assisting tool (4) for accurately and easily performing X-ray imaging of an alveolar bone. This bone density measurement device (1) comprises: an image display unit (101) for displaying X-ray images for an imaged bone part and a reference body on the same screen; a reference body density measurement unit (103) for measuring the density of the displayed X-ray image for the reference body; a bone part density measurement unit (105) for measuring the density of the displayed X-ray image for the bone part; and a bone density calculation unit (106) for calculating the hone density of the bone part by comparing the density of the X-ray image for the bone part with the density of the X-ray image for the reference body.
    Type: Grant
    Filed: January 10, 2018
    Date of Patent: December 7, 2021
    Assignee: MEDIA CO., LTD.
    Inventors: Shinji Shimoda, Kaoru Kobayashi, Akitoshi Katsumata, Hironobu Tsuji, Yosuke Tsuji, Tatsuro Hayashi
  • Patent number: 11187647
    Abstract: In accordance with an embodiment, a method of measuring a gas concentration includes modulating an infrared light source according to a frequency-hopped sequence or according to a pulse sequence, receiving a microphone signal from an output of a microphone acoustically coupled to a gas exposed to infrared light produced by the infrared light source; bandpass filtering the microphone signal using a bandpass filter; and estimating the gas concentration from the filtered microphone signal.
    Type: Grant
    Filed: May 20, 2020
    Date of Patent: November 30, 2021
    Assignee: INFINEON TECHNOLOGIES AG
    Inventors: Cecilia Carbonelli, Renato Bessegato, Wolfgang Furtner
  • Patent number: 11166688
    Abstract: A method, system and computer readable storage media for segmenting individual intra-oral measurements and registering said individual intraoral measurements to eliminate or reduce registration errors. An operator may use a dental camera to scan teeth and a trained deep neural network may automatically detect portions of the input images that can cause registration errors and reduce or eliminate the effect of these sources of registration errors.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: November 9, 2021
    Assignee: DENTSPLY SIRONA Inc.
    Inventors: Stan Mandelkern, Joseph Lasker, Fred Duewer
  • Patent number: 11169098
    Abstract: Disclosed herein is an x-ray backscatter apparatus for non-destructive inspection of a part. The apparatus comprises an emission shaping mechanism that is configured to receive an electron emission from a cathode and to adjust a shape of the electron emission from a circular cross-sectional shape into a first elliptical cross-sectional shape. The x-ray source further comprises an anode that is configured to convert the electron emission into an unfiltered x-ray emission having a second elliptical cross-sectional shape. The apparatus also comprises an x-ray filter that comprises an emission aperture having a cross-sectional area smaller than an area of the second elliptical cross-sectional shape of the unfiltered x-ray emission. The x-ray filter is located relative to the unfiltered x-ray emission to allow only a portion of the unfiltered x-ray emission to pass through the emission aperture and form a filtered x-ray emission.
    Type: Grant
    Filed: April 2, 2020
    Date of Patent: November 9, 2021
    Assignee: The Boeing Company
    Inventor: Morteza Safai
  • Patent number: 11160516
    Abstract: Disclosed is a breast imaging system including a compressive sensing absorber (CSA) including a set of materials distributed in a medium to exhibit a random pattern of partial gamma ray absorption over different positions of the set of materials such that gamma ray emission from a breast traveling through the CSA is partially absorbed and is partially scattered by the random pattern to produce an output gamma ray radiation pattern having gamma rays in a range of different directions, a gamma imaging device configured to collect gamma rays from the output gamma ray radiation pattern produced by the CSA to convert the collected gamma rays of the breast gamma ray emission from the breast into imaging signals representing an image of the breast, and an imaging processing device configured to reconstruct images in 2D or 3D based on a spatial distribution of the collected gamma rays from the breast.
    Type: Grant
    Filed: October 10, 2019
    Date of Patent: November 2, 2021
    Assignee: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
    Inventor: Sebastian Obrzut
  • Patent number: 11156569
    Abstract: A X-ray fluorescence spectrometer of the present invention simultaneously generates an analytical pulse-height width profile and a narrow pulse-height width profile that are distributions of intensities of secondary X-rays (7) against scan angles (2?) set by an interlocking unit (10) on the basis of a differential curve which is output by a multichannel pulse-height analyzer (13), as well as a predetermined analytical pulse-height width for an analytical line that is a primary reflection line and a predetermined narrow pulse-height width that is narrower than the analytical pulse-height width. Identification of the analytical lines is performed for the analytical pulse-height width profile and the narrow pulse-height width profile, and any analytical line identified only in the narrow pulse-height width profile is added to the analytical lines identified in the analytical pulse-height width profile to obtain an identification result of the analytical lines.
    Type: Grant
    Filed: June 6, 2019
    Date of Patent: October 26, 2021
    Assignee: RIGAKU CORPORATION
    Inventors: Yasujiro Yamada, Shinya Hara, Takashi Matsuo
  • Patent number: 11154267
    Abstract: A method, system and computer readable storage media for segmenting individual intra-oral measurements and registering said individual intraoral measurements to eliminate or reduce registration errors. An operator may use a dental camera to scan teeth and a trained deep neural network may automatically detect portions of the input images that can cause registration errors and reduce or eliminate the effect of these sources of registration errors.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: October 26, 2021
    Assignee: DENTSPLY SIRONA INC.
    Inventors: Stan Mandelkern, Joseph Lasker, Fred Duewer
  • Patent number: 11152130
    Abstract: System and method for imaging an integrated circuit (IC). The imaging system comprises an x-ray source including a plurality of spatially and temporally addressable electron sources, an x-ray detector arranged such that incident x-rays are oriented normal to an incident surface of the x-ray detector and a three-axis stage arranged between the x-ray source and the x-ray detector, the three-axis stage configured to have mounted thereon an integrated circuit through which x-rays generated by the x-ray source pass during operation of the imaging system. The imaging system further comprises at least one controller configured to move the three-axis stage during operation of the imaging system and selectively activate a subset of the electron sources during movement of the three-axis stage to acquire a set of intensity data by the x-ray detector as the three-axis stage moves along a three-dimensional trajectory.
    Type: Grant
    Filed: August 15, 2017
    Date of Patent: October 19, 2021
    Assignee: Massachusetts Institute of Technology
    Inventors: Akintunde I. Akinwande, Berthold Klaus Paul Horn, Richard C. Lanza, George Barbastathis, Rajiv Gupta, Jonah Jacob
  • Patent number: 11150203
    Abstract: A method for analyzing flow of a multiphase fluid through a flowmeter is provided. In one embodiment, the method includes transmitting two beams of electromagnetic radiation along different paths through a multiphase fluid and detecting the two transmitted beams with detectors. The method also includes determining a gas fraction and a water-in-liquid ratio of the multiphase fluid. The gas fraction is determined based on the detected first beam of electromagnetic radiation and the water-in-liquid ratio of the multiphase fluid is determined based on the detected second beam of electromagnetic radiation. Additional systems, devices, and methods are also disclosed.
    Type: Grant
    Filed: February 14, 2019
    Date of Patent: October 19, 2021
    Assignee: SCHLUMBERGER TECHNOLOGY CORPORATION
    Inventors: Jianhua Zhu, Charles Toussaint, Cheng-Gang Xie, Massimiliano Fiore, Alexander Vilstrup
  • Patent number: 11145431
    Abstract: System and method for nanoscale X-ray imaging of biological specimen. The imaging system comprises an X-ray source including a plurality of spatially and temporally addressable electron sources, an X-ray detector arranged such that incident X-rays are oriented normal to an incident surface of the X-ray detector and a stage arranged between the X-ray source and the X-ray detector, the stage configured to have mounted thereon a biological specimen through which X-rays generated by the X-ray source pass during operation of the imaging system. The imaging system further comprises at least one controller configured to move the stage during operation of the imaging system and selectively activate a subset of the electron sources during movement of the stage to acquire a set of intensity data by the X-ray detector as the stage moves along a three-dimensional trajectory.
    Type: Grant
    Filed: November 14, 2019
    Date of Patent: October 12, 2021
    Assignee: Massachusetts Institute of Technology
    Inventors: Richard C. Lanza, Berthold Klaus Paul Horn, Akintunde I. Akinwande, George Barbastathis, Rajiv Gupta
  • Patent number: 11137360
    Abstract: An X-ray spectrometer includes: an excitation source that irradiates a predetermined irradiation region on a surface of a sample with an excitation ray generating a characteristic X-ray; a flat plate analyzing crystal facing the irradiation region; a slit provided between the irradiation region and the analyzing crystal, the slit being parallel to a predetermined crystal plane of the analyzing crystal; a linear sensor including linear detection elements having a length in a direction parallel to the slit are arranged in a direction perpendicular to the slit; and an energy calibration unit that measures two characteristic X-rays in which energy is known by irradiating a surface of a standard sample generating the two characteristic X-rays with the excitation ray from the excitation source, and calibrates the energy of the characteristic X-ray detected by each detection element of the X-ray linear sensor based on the measured energies of the two characteristic X-rays.
    Type: Grant
    Filed: July 25, 2018
    Date of Patent: October 5, 2021
    Assignee: SHIMADZU CORPORATION
    Inventors: Kenji Sato, Tetsuya Yoneda, Susumu Adachi, Satoshi Tokuda
  • Patent number: 11116466
    Abstract: A method, system and computer readable storage media for segmenting individual intra-oral measurements and registering said individual intraoral measurements to eliminate or reduce registration errors. An operator may use a dental camera to scan teeth and a trained deep neural network may automatically detect portions of the input images that can cause registration errors and reduce or eliminate the effect of these sources of registration errors.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: September 14, 2021
    Assignee: DENTSPLY SIRONA Inc.
    Inventors: Stan Mandelkern, Joseph Lasker, Fred Duewer
  • Patent number: 11116469
    Abstract: A method is provided for determining a relative position of an object in relation to an x-ray imaging apparatus for creating an x-ray and a recorded image. The method includes bringing an object in a ray path of an x-ray into a first position. In a first recorded image, at least one defined geometry in and/or on the object is imaged. A measure for a change in the first focus point towards a second focus point is undertaken at the x-ray source. In the second recorded image, the at least one defined geometry is imaged. A distance from the object to the x-ray source and/or to the x-ray detector is determined based on the change in the focus point, as well as on the basis of the images of the at least one defined geometry in the first and the second recorded image.
    Type: Grant
    Filed: February 5, 2020
    Date of Patent: September 14, 2021
    Assignee: Siemens Healthcare GmbH
    Inventors: Peter Bartl, Robert Brauweiler
  • Patent number: 11105756
    Abstract: A method and apparatus for rapid measurement and analysis of structure and composition of poly-crystal materials by X-ray diffraction and X-ray spectroscopy, which uses a two-dimensional energy dispersive area detector having an array of pixels, and a white spectrum X-ray beam source. A related data processing method includes separating X-ray diffraction and spectroscopy signals in the energy dispersive X-ray spectrum detected by each pixel of the two-dimensional energy dispersive detector; correcting the detected X-ray diffraction signals by a correction function; summing the corrected X-ray diffraction signals and X-ray spectroscopy signals, respectively, over all pixels to obtain an enhanced diffraction spectrum and an enhanced spectroscopy spectrum; using the enhanced diffraction and spectroscopy spectrum respectively to determine the structure and composition of the sample.
    Type: Grant
    Filed: June 3, 2019
    Date of Patent: August 31, 2021
    Assignee: NINGBO GALAXY MATERIALS TECHNOLOGY CO. LTD.
    Inventors: Xiao-dong Xiang, Hong Wang, Xiao-Ping Wang