Patents by Inventor Nicholas A. Accomando
Nicholas A. Accomando 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: 10650537Abstract: A method includes obtaining reference imaging data. The reference imaging data is acquired at a first time and includes tissue of interest. The method further includes obtaining update imaging data. The update imaging data is acquired at a second time. The second time is subsequent to the first time. The method further includes identifying a difference between the reference imaging data and the update imaging data. The method further includes changing the reference imaging data based on the identified difference. The method further includes displaying the changed reference imaging data.Type: GrantFiled: August 22, 2014Date of Patent: May 12, 2020Assignee: B-K Medical ApSInventors: John P O'Connor, Nicholas A Accomando
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Publication number: 20190213743Abstract: A method includes obtaining reference imaging data. The reference imaging data is acquired at a first time and includes tissue of interest. The method further includes obtaining update imaging data. The update imaging data is acquired at a second time. The second time is subsequent to the first time. The method further includes identifying a difference between the reference imaging data and the update imaging data. The method further includes changing the reference imaging data based on the identified difference. The method further includes displaying the changed reference imaging data.Type: ApplicationFiled: August 22, 2014Publication date: July 11, 2019Inventors: John P O'CONNOR, Nicholas A ACCOMANDO
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Patent number: 10068322Abstract: One or more techniques and/or systems are described for inspecting an object, such as a tire. The system comprises a radiation imaging system configured to examine the object via radiation to generate a radiation image depicting an interior aspect of the object and a machine vision system configured to measure visible light and/or infrared wavelengths to generate a vision image depicting an exterior aspect of the object. The radiation image and the vision image may be correlated to facilitate an inspection of the object which includes an inspection of the exterior aspect as well as the interior aspect.Type: GrantFiled: December 22, 2013Date of Patent: September 4, 2018Assignee: ANALOGIC CORPORATIONInventors: John P. O'Connor, Charles Shaughnessy, Eric Zanin, Nicholas A. Accomando
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Patent number: 10026191Abstract: A method includes obtaining first 3D imaging data for a volume of interest. The first 3D imaging data includes structural imaging data and a target tissue of interest. The method further includes obtaining 2D imaging data. The 2D imaging data includes structural imaging data for a plane of the volume of interest. The plane includes at least three fiducial markers of a set of fiducial markers. The method further includes locating a plane, including location and orientation, in the first 3D imaging data that corresponds to the plane of the 2D imaging data by matching the at least three fiducial markers with corresponding fiducial markers identified in the first 3D imaging data and using the map. The method further includes visually displaying the first 3D imaging data with the 2D imaging data superimposed over at the corresponding plane located in the first 3D imaging data.Type: GrantFiled: November 27, 2013Date of Patent: July 17, 2018Assignee: Analogic CorporationInventors: Nicholas A Accomando, David Lieblich, John O'Connor, Louis Poulo
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Publication number: 20170281135Abstract: A method includes receiving an input signal indicative of a set of coordinates for tissue of interest in first imaging data. The set of coordinates corresponds to user identified measurement points on a perimeter of the tissue of interest in the first imaging data. The method further includes determining a measurement for the set of measurement points. The method further includes generating a set of fiducial markers for the first imaging data corresponding to the coordinates. The method further includes registering the first imaging data with second imaging data based on the fiducial markers. The method further includes visually displaying the second imaging data with the registered first imaging data superimposed there over.Type: ApplicationFiled: September 12, 2014Publication date: October 5, 2017Inventors: David L. LEONG, Nicholas A. ACCOMANDO
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Publication number: 20170169577Abstract: A method includes obtaining first 3D imaging data for a volume of interest. The first 3D imaging data includes structural imaging data and a target tissue of interest. The method further includes obtaining 2D imaging data. The 2D imaging data includes structural imaging data for a plane of the volume of interest. The plane includes at least three fiducial markers of a set of fiducial markers. The method further includes locating a plane, including location and orientation, in the first 3D imaging data that corresponds to the plane of the 2D imaging data by matching the at least three fiducial markers with corresponding fiducial markers identified in the first 3D imaging data and using the map. The method further includes visually displaying the first 3D imaging data with the 2D imaging data superimposed over at the corresponding plane located in the first 3D imaging data.Type: ApplicationFiled: November 27, 2013Publication date: June 15, 2017Inventors: Nicholas A Accomando, David Lieblich, John O'Connor, Louis Poulo
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Patent number: 9558405Abstract: A method includes obtaining real-time imaging data of at least a sub-portion of an object and a region of interest therein. The method further includes displaying the real-time imaging data as the real-time imaging is obtained. The method further includes tracking extraction of a sample from the region of interest by an extraction device based on the real-time imaging data. The method further includes identifying an extraction location for the extracted sample based on the tracking and the real-time imaging data and generating a signal indicative thereof.Type: GrantFiled: January 16, 2015Date of Patent: January 31, 2017Assignee: Analogic CorporationInventors: David L. Leong, Nicholas A. Accomando, John P. O'Connor
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Publication number: 20160335756Abstract: One or more techniques and/or systems are described for inspecting an object, such as a tire. The system comprises a radiation imaging system configured to examine the object via radiation to generate a radiation image depicting an interior aspect of the object and a machine vision system configured to measure visible light and/or infrared wavelengths to generate a vision image depicting an exterior aspect of the object. The radiation image and the vision image may be correlated to facilitate an inspection of the object which includes an inspection of the exterior aspect as well as the interior aspect.Type: ApplicationFiled: December 22, 2013Publication date: November 17, 2016Inventors: John P. O'CONNOR, Charles SHAUGHNESSY, Eric ZANIN, Nicholas A. ACCOMANDO
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Publication number: 20160210511Abstract: A method includes obtaining real-time imaging data of a least a sub-portion of an object and a region of interest therein. The method further includes displaying the real-time imaging data as the real-time imaging is obtained. The method further includes tracking extraction of a sample from the region of interest by an extraction device based on the real-time imaging data. The method further includes identifying an extraction location for the extracted sample based on the tracking and the real-time imaging data and generating a signal indicative thereof.Type: ApplicationFiled: January 16, 2015Publication date: July 21, 2016Inventors: David L. Leong, Nicholas A. Accomando, John P. O'Connor
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Patent number: 8983146Abstract: A multimodal biometric identification system captures and processes images of both the iris and the retina for biometric identification. Another multimodal ocular system captures and processes images of the iris and/or the from both eyes of a subject. Biometrics based on data provided by these systems are more accurate and robust than using biometrics that include data from only the iris or only the retina from a single eye. An exemplary embodiment emits photons to the iris and the retina of both eyes, an iris image sensor that captures an image of the iris when the iris reflects the emitted light, a retina image sensor that captures an image of the retina when the retina reflects the emitted light, and a controller that controls the iris and the retina illumination sources, where the captured image of the iris and the captured image of the retina contain biometric data.Type: GrantFiled: January 29, 2013Date of Patent: March 17, 2015Assignee: MorphoTrust USA, LLCInventors: Marc D. Friedman, Pablo Casaverde, Don Yansen, Tim McNerney, Yasunari Tosa, David Usher, Nicholas A. Accomando, David Muller, Gregory L. Heacock, John Marshall
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Patent number: 8644562Abstract: Biometric systems capture and combine biometric information from more than one modality, employing digital processing algorithms to process and evaluate captured images having data for a biometric characteristic. Such digital algorithms may include a pupil segmentation algorithm for determining a pupil image in the captured image, an iris segmentation algorithm for determining an iris image in the captured image, an eyelid/eyelash segmentation algorithm for determining an eyelid/eyelash image in the captured image, and an algorithm for measuring the focus on the iris. Some embodiments employ an auto-capture process which employs such algorithms, in part; to evaluate captured images and obtain the best possible images for biometric identification.Type: GrantFiled: April 30, 2012Date of Patent: February 4, 2014Assignee: MorphoTrust USA, Inc.Inventors: Yasunari Tosa, David Usher, Nicholas A. Accomando, Vladimir Ruzhitsky, Faisal Bashir
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Patent number: 8577093Abstract: A system for multimodal biometric identification has a first imaging system that detects one or more subjects in a first field of view, including a targeted subject having a first biometric characteristic and a second biometric characteristic; a second imaging system that captures a first image of the first biometric characteristic according to first photons, where the first biometric characteristic is positioned in a second field of view smaller than the first field of view, and the first image includes first data for biometric identification; a third imaging system that captures a second image of the second biometric characteristic according to second photons, where the second biometric characteristic is positioned in a third field of view which is smaller than the first and second fields of view, and the second image includes second data for biometric identification. At least one active illumination source emits the second photons.Type: GrantFiled: February 20, 2012Date of Patent: November 5, 2013Assignee: Identix IncorporatedInventors: Marc D. Friedman, Nicholas A. Accomando, Faisal Bashir, Pablo Casaverde, Stephen F. Daly, David J. Hitchcock, Romina Marie Johnson Jose, Tim McNerney, David Muller, Vladimir Ruzhitsky, Yasunari Tosa, David Usher
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Patent number: 8391567Abstract: A multimodal biometric identification system captures and processes images of both the iris and the retina for biometric identification. Another multimodal ocular system captures and processes images of the iris and/or the from both eyes of a subject. Biometrics based on data provided by these systems are more accurate and robust than using biometrics that include data from only the iris or only the retina from a single eye. An exemplary embodiment emits photons to the iris and the retina of both eyes, an iris image sensor that captures an image of the iris when the iris reflects the emitted light, a retina image sensor that captures an image of the retina when the retina reflects the emitted light, and a controller that controls the iris and the retina illumination sources, where the captured image of the iris and the captured image of the retina contain biometric data.Type: GrantFiled: August 2, 2011Date of Patent: March 5, 2013Assignee: Identix IncorporatedInventors: Marc D. Friedman, Pablo Casaverde, Don Yansen, Tim McNerney, Yasunari Tosa, David Usher, Nicholas A. Accomando, David Muller, Greg Heacock, John Marshall
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Publication number: 20120200689Abstract: A system for multimodal biometric identification has a first imaging system that detects one or more subjects in a first field of view, including a targeted subject having a first biometric characteristic and a second biometric characteristic; a second imaging system that captures a first image of the first biometric characteristic according to first photons, where the first biometric characteristic is positioned in a second field of view smaller than the first field of view, and the first image includes first data for biometric identification; a third imaging system that captures a second image of the second biometric characteristic according to second photons, where the second biometric characteristic is positioned in a third field of view which is smaller than the first and second fields of view, and the second image includes second data for biometric identification. At least one active illumination source emits the second photons.Type: ApplicationFiled: February 20, 2012Publication date: August 9, 2012Applicant: IDENTIX INCORPORATEDInventors: Marc D. Friedman, Nicholas A. Accomando, Faisal Bashir, Pablo Casaverde, Stephen F. Daly, David J. Hitchcock, Romina Marie Johnson Jose, Tim McNerney, David Muller, Vladimir Ruzhitsky, Yasunari Tosa, David Usher
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Patent number: 8121356Abstract: A system for multimodal biometric identification has a first imaging system that detects one or more subjects in a first field of view, including a targeted subject having a first biometric characteristic and a second biometric characteristic; a second imaging system that captures a first image of the first biometric characteristic according to first photons, where the first biometric characteristic is positioned in a second field of view smaller than the first field of view, and the first image includes first data for biometric identification; a third imaging system that captures a second image of the second biometric characteristic according to second photons, where the second biometric characteristic is positioned in a third field of view which is smaller than the first and second fields of view, and the second image includes second data for biometric identification. At least one active illumination source emits the second photons.Type: GrantFiled: September 10, 2008Date of Patent: February 21, 2012Assignee: Identix IncorporatedInventors: Marc D. Friedman, Nicholas A. Accomando, Faisal Bashir, Pablo Casaverde, Stephen F. Daly, David J. Hitchcock, Romina Marie Johnson Jose, Tim McNerney, David Muller, Vladimir Ruzhitsky, Yasunari Tosa, David Usher
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Publication number: 20110285836Abstract: A multimodal biometric identification system captures and processes images of both the iris and the retina for biometric identification. Another multimodal ocular system captures and processes images of the iris and/or the from both eyes of a subject. Biometrics based on data provided by these systems are more accurate and robust than using biometrics that include data from only the iris or only the retina from a single eye. An exemplary embodiment emits photons to the iris and the retina of both eyes, an iris image sensor that captures an image of the iris when the iris reflects the emitted light, a retina image sensor that captures an image of the retina when the retina reflects the emitted light, and a controller that controls the iris and the retina illumination sources, where the captured image of the iris and the captured image of the retina contain biometric data.Type: ApplicationFiled: August 2, 2011Publication date: November 24, 2011Applicant: IDENTIX INCORPORATEDInventors: Marc D. Friedman, Pablo Casaverde, Don Yansen, Tim McNerney, Yasunari Tosa, David Usher, Nicholas A. Accomando, David Muller, Greg Heacock, John Marshall
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Patent number: 8014571Abstract: A multimodal biometric identification system captures and processes images of both the iris and the retina for biometric identification. Another multimodal ocular system captures and processes images of the iris and/or the from both eyes of a subject. Biometrics based on data provided by these systems are more accurate and robust than using biometrics that include data from only the iris or only the retina from a single eye. An exemplary embodiment emits photons to the iris and the retina of both eyes, an iris image sensor that captures an image of the iris when the iris reflects the emitted light, a retina image sensor that captures an image of the retina when the retina reflects the emitted light, and a controller that controls the iris and the retina illumination sources, where the captured image of the iris and the captured image of the retina contain biometric data.Type: GrantFiled: May 14, 2007Date of Patent: September 6, 2011Assignee: Identix IncorporatedInventors: Marc D. Friedman, Pablo Casaverde, Don Yansen, Tim McNerney, Yasunari Tosa, David Usher, Nicholas A. Accomando, David Muller, Greg Heacock, John Marshall
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Publication number: 20100290668Abstract: A system for multimodal biometric identification has a first imaging system that detects one or more subjects in a first field of view, including a targeted subject having a first biometric characteristic and a second biometric characteristic; a second imaging system that captures a first image of the first biometric characteristic according to first photons, where the first biometric characteristic is positioned in a second field of view smaller than the first field of view, and the first image includes first data for biometric identification; a third imaging system that captures a second image of the second biometric characteristic according to second photons, where the second biometric characteristic is positioned in a third field of view which is smaller than the first and second fields of view, and the second image includes second data for biometric identification. At least one active illumination source emits the second photons.Type: ApplicationFiled: September 10, 2008Publication date: November 18, 2010Inventors: Marc D. Friedman, Nicholas A. Accomando, Faisal Bashir, Pablo Casaverde, Stephen F. Daly, David J. Hitchcock, Romina Marie Johnson Jose, Tim McNerney, David Muller, Vladimir Ruzhitsky, Yasunari Tosa, David Usher
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Publication number: 20080253622Abstract: Biometric systems capture and combine biometric information from more than one modality, employing digital processing algorithms to process and evaluate captured images having data for a biometric characteristic. Such digital algorithms may include a pupil segmentation algorithm for determining a pupil image in the captured image, an iris segmentation algorithm for determining an iris image in the captured image, an eyelid/eyelash segmentation algorithm for determining an eyelid/eyelash image in the captured image, and an algorithm for measuring the focus on the iris. Some embodiments employ an auto-capture process which employs such algorithms, in part, to evaluate captured images and obtain the best possible images for biometric identification.Type: ApplicationFiled: September 10, 2007Publication date: October 16, 2008Applicant: Retica Systems, Inc.Inventors: Yasunari Tosa, David Usher, Nicholas A. Accomando, Vladimir Ruzhitsky, Faisal Bashir
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Publication number: 20080044063Abstract: A multimodal biometric identification system captures and processes images of both the iris and the retina for biometric identification. Another multimodal ocular system captures and processes images of the iris and/or the from both eyes of a subject. Biometrics based on data provided by these systems are more accurate and robust than using biometrics that include data from only the iris or only the retina from a single eye. An exemplary embodiment emits photons to the iris and the retina of both eyes, an iris image sensor that captures an image of the iris when the iris reflects the emitted light, a retina image sensor that captures an image of the retina when the retina reflects the emitted light, and a controller that controls the iris and the retina illumination sources, where the captured image of the iris and the captured image of the retina contain biometric data.Type: ApplicationFiled: May 14, 2007Publication date: February 21, 2008Applicant: RETICA SYSTEMS, INC.Inventors: Marc Friedman, Pablo Casaverde, Don Yansen, Tim McNerney, Yasunari Tosa, David Usher, Nicholas Accomando, David Muller, Greg Heacock, John Marshall