Patents by Inventor Matthias Bo Stuart
Matthias Bo Stuart 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).
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Patent number: 11602328Abstract: An ultrasound imaging system includes a transducer array (102) with a plurality of transducer elements (106) configured to transmit an ultrasound signal, receive echo signals produced in response to the ultrasound signal interacting with stationary structure and flowing structure, and generate electrical signals indicative of the echo signals. The system further includes a beamformer (112) configured to process the electrical signals and generate sequences, in time, of beamformed data. The system further includes a filter (118) configured to process the beamformed data, and remove or replace a set of frequency components based on a threshold, producing corrected beamformed data. The system further includes a flow processor (120) configured to estimate a velocity of flowing structure from the corrected beamformed data. The system further includes a rendering engine (224) configured to display the flow velocity estimate on a display (124).Type: GrantFiled: December 30, 2015Date of Patent: March 14, 2023Assignee: B-K MEDICAL APSInventors: Jacob Bjerring Olesen, Carlos Armando Villagomez-Hoyos, Jorgen Arendt Jensen, Matthias Bo Stuart
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Patent number: 11402504Abstract: An ultrasound imaging system (100) includes a 2-D transducer array (102) with a first 1-D array (104, 204) of one or more rows of transducing elements (106, 2041, . . . 2046) configured to produce first ultrasound data and a second 1-D array (104, 206) of one or more columns of transducing elements (106, 2061, . . . 2066) configured to produce second ultrasound data. The first and second 1-D arrays are configured for row-column addressing. The ultrasound imaging system further includes a controller (112) configured to control transmission and reception of the first and second 1-D arrays, and a beamformer (114) configured to beamform the received first and second echoes to produce ultrasound data, and an image processor (116) configured to process the ultrasound data to generate an image, which is displayed via a display (224).Type: GrantFiled: November 11, 2016Date of Patent: August 2, 2022Assignee: BK Medical APSInventors: Simon Holbek, Hamed Bouzari, Jonas Jensen, Matthias Bo Stuart, Mathias Engholm, Erik Vilain Thomsen, Jorgen Arendt Jensen
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Patent number: 10859696Abstract: A transducer array (302) for an ultrasound imaging system (300) includes a row-column addressed 2-D array of transducer elements (304). The row-column addressed 2-D includes a first array of 1-D arrays of elements, a second array of 1-D arrays of elements, which is orthogonal to the first array, and a double-curved surface (306). In another aspect, an apparatus includes a transducer array with an array-wise addressable 2-D array with a curved surface. The 2-D array includes a set of 1-D column array elements and a set of 1-D row array elements. The apparatus further includes transmit circuitry (308) that conveys an excitation pulse to the transducer array, receive circuitry (308) that receives a signal indicative of an ultrasound echo from the transducer array, and a beamformer (314) that processes the received signal, generating ultrasound image data.Type: GrantFiled: June 8, 2016Date of Patent: December 8, 2020Assignee: B-K Medical ApSInventors: Hamed Bouzari, Simon Holbek, Jorgen Arendt Jensen, Thomas Lehrmann Christiansen, Erik Vilain Thomsen, Matthias Bo Stuart
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Patent number: 10806432Abstract: An ultrasound imaging system includes a transducer array. The array is configured for row-column addressing. The array of transducer elements includes a plurality of first 1-D arrays and a plurality of second 1-D arrays, which is orthogonal to the plurality of first 1-D arrays. The array of transducer elements further includes a plurality of front-end circuits. A single front-end circuit of the front-end circuits is in electrical communication with a single pair of 1-D arrays, which consists of a first 1-D array of the plurality of first 1-D arrays and a second 1-D array of the plurality of second 1-D arrays. The first and second 1-D arrays are either separate sets of 1-D arrays or part of a same 2-D array. In one instance, for N rows and N columns, a number of electrical connections between the elements and front-end electronics are less than 2N.Type: GrantFiled: March 24, 2017Date of Patent: October 20, 2020Assignee: B-K Medical ApSInventors: Jorgen Arendt Jensen, Hamed Bouzari, Mathias Engholm, Erik Vilain Thomsen, Matthias Bo Stuart
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Patent number: 10705210Abstract: An ultrasound imaging system includes a probe and a console. The probe includes a row-column addressed transducer array, first beamformer configured to beamform echo signals received by the row-column addressed transducer array and produce a set of image planes for each emission with a single focus in both transmit and receive, and a first communication interface. The console includes a second complementary communication interface and a second beamformer configured to beamform the focused set of image planes and produce a three-dimensional volume of ultrasound data.Type: GrantFiled: May 31, 2017Date of Patent: July 7, 2020Assignee: B-K Medical ApSInventors: Jorgen Arendt Jensen, Hamed Bouzari, Matthias Bo Stuart
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Publication number: 20200138411Abstract: An ultrasound imaging system includes a transducer array (102) with a plurality of transducer elements (106) configured to transmit an ultrasound signal, receive echo signals produced in response to the ultrasound signal interacting with stationary structure and flowing structure, and generate electrical signals indicative of the echo signals. The system further includes a beamformer (112) configured to process the electrical signals and generate sequences, in time, of beamformed data. The system further includes a filter (118) configured to process the beamformed data, and remove or replace a set of frequency components based on a threshold, producing corrected beamformed data. The system further includes a flow processor (120) configured to estimate a velocity of flowing structure from the corrected beamformed data. The system further includes a rendering engine (224) configured to display the flow velocity estimate on a display (124).Type: ApplicationFiled: December 30, 2015Publication date: May 7, 2020Applicant: B-K Medical ApsInventors: Jacob Bjerring Olesen, Carlos Armando Villagomez-Hoyos, Jorgen Arendt Jensen, Matthias Bo Stuart
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Publication number: 20200064468Abstract: An ultrasound imaging system (100) includes a 2-D transducer array (102) with a first 1-D array (104, 204) of one or more rows of transducing elements (106, 2041, . . . 2046) configured to produce first ultrasound data and a second 1-D array (104, 206) of one or more columns of transducing elements (106, 2061, . . . 2066) configured to produce second ultrasound data. The first and second 1-D arrays are configured for row-column addressing. The ultrasound imaging system further includes a controller (112) configured to control transmission and reception of the first and second 1-D arrays, and a beamformer (114) configured to beamform the received first and second echoes to produce ultrasound data, and an image processor (116) configured to process the ultrasound data to generate an image, which is displayed via a display (224).Type: ApplicationFiled: November 11, 2016Publication date: February 27, 2020Applicant: B-K Medical ApsInventors: Simon Holbek, Hamed Bouzari, Jonas Jensen, Matthias Bo Stuart, Mathias Engholm, Erik Vilain Thomsen, Jorgen Arendt Jensen
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Publication number: 20190302256Abstract: A transducer array (302) for an ultrasound imaging system (300) includes a row-column addressed 2-D array of transducer elements (304). The row-column addressed 2-D includes a first array of 1-D arrays of elements, a second array of 1-D arrays of elements, which is orthogonal to the first array, and a double-curved surface (306). In another aspect, an apparatus includes a transducer array with an array-wise addressable 2-D array with a curved surface. The 2-D array includes a set of 1-D column array elements and a set of 1-D row array elements. The apparatus further includes transmit circuitry (308) that conveys an excitation pulse to the transducer array, receive circuitry (308) that receives a signal indicative of an ultrasound echo from the transducer array, and a beamformer (314) that processes the received signal, generating ultrasound image data.Type: ApplicationFiled: June 8, 2016Publication date: October 3, 2019Applicant: BK Medical ApsInventors: Hamed Bouzari, Simon Holbek, Jorgen Arendt Jensen, Thomas Lehrmann Christiansen, Erik Vilain Thomsen, Matthias Bo Stuart
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Publication number: 20180348624Abstract: An ultrasound imaging system includes a probe and a console. The probe includes a row-column addressed transducer array, first beamformer configured to beamform echo signals received by the row-column addressed transducer array and produce a set of image planes for each emission with a single focus in both transmit and receive, and a first communication interface. The console includes a second complementary communication interface and a second beamformer configured to beamform the focused set of image planes and produce a three-dimensional volume of ultrasound data.Type: ApplicationFiled: May 31, 2017Publication date: December 6, 2018Inventors: Jorgen Arendt Jensen, Hamed Bouzari, Matthias Bo Stuart
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Publication number: 20180271493Abstract: An ultrasound imaging system includes a transducer array. The array is configured for row-column addressing. The array of transducer elements includes a plurality of first 1-D arrays and a plurality of second 1-D arrays, which is orthogonal to the plurality of first 1-D arrays. The array of transducer elements further includes a plurality of front-end circuits. A single front-end circuit of the front-end circuits is in electrical communication with a single pair of 1-D arrays, which consists of a first 1-D array of the plurality of first 1-D arrays and a second 1-D array of the plurality of second 1-D arrays. The first and second 1-D arrays are either separate sets of 1-D arrays or part of a same 2-D array. In one instance, for N rows and N columns, a number of electrical connections between the elements and front-end electronics are less than 2N.Type: ApplicationFiled: March 24, 2017Publication date: September 27, 2018Applicant: B-K Medical ApsInventors: Jorgen Arendt JENSEN, Hamed Bouzari, Mathias Engholm, Erik Vilain Thomsen, Matthias Bo Stuart