Patents by Inventor Edward Seppi
Edward Seppi 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: 10022565Abstract: A method of delivering external radiation beams to a target volume in a body portion includes positioning a radioactive isotope source at a plurality of locations spaced apart around the body portion, and collimating radiation beams of the radioactive isotope source from the plurality of locations, whereby the target volume in the body portion is deposited with a predetermined dose distribution. A radiation device employs a member having a configuration adapted to surround a body portion to be irradiated. The member has a channel and a plurality of collimators spaced apart along and coupled to the channel. The plurality of collimators define a plurality of dwelling locations for a radioactive isotope source in the channel and are configured to collimate radiation beams of the radioactive isotope source.Type: GrantFiled: July 11, 2016Date of Patent: July 17, 2018Assignee: Varian Medical Systems, Inc.Inventors: Stavros Prionas, Michael C. Green, Edward Seppi, Larry D. Partain, James Clayton, Stanley Mansfield, John Boone
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Publication number: 20160317839Abstract: A method of delivering external radiation beams to a target volume in a body portion includes positioning a radioactive isotope source at a plurality of locations spaced apart around the body portion, and collimating radiation beams of the radioactive isotope source from the plurality of locations, whereby the target volume in the body portion is deposited with a predetermined dose distribution. A radiation device employs a member having a configuration adapted to surround a body portion to be irradiated. The member has a channel and a plurality of collimators spaced apart along and coupled to the channel. The plurality of collimators define a plurality of dwelling locations for a radioactive isotope source in the channel and are configured to collimate radiation beams of the radioactive isotope source.Type: ApplicationFiled: July 11, 2016Publication date: November 3, 2016Inventors: Stavros Prionas, Michael C. Green, Edward Seppi, Larry D. Partain, James Clayton, Stanley Mansfield, John Boone
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Patent number: 9387342Abstract: A method of delivering external radiation beams to a target volume in a body portion includes positioning a radioactive isotope source at a plurality of locations spaced apart around the body portion, and collimating radiation beams of the radioactive isotope source from the plurality of locations, whereby the target volume in the body portion is deposited with a predetermined dose distribution. A radiation device employs a member having a configuration adapted to surround a body portion to be irradiated. The member has a channel and a plurality of collimators spaced apart along and coupled to the channel. The plurality of collimators define a plurality of dwelling locations for a radioactive isotope source in the channel and are configured to collimate radiation beams of the radioactive isotope source.Type: GrantFiled: July 21, 2008Date of Patent: July 12, 2016Assignee: Varian Medical Systems, Inc.Inventors: Stavros Prionas, Michael C. Green, Edward Seppi, Larry D. Partain, James Clayton, Stanley Mansfield, John Boone
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Patent number: 9268037Abstract: An x-ray imaging device may include a detector array and an x-ray converting layer coupled to the detector array. The detector array and the x-ray converting layer may be configured such that x-rays traverse the detector array before propagating in the x-ray converting layer. The x-ray imaging device may also include a buildup layer behind the x-ray converting layer. The x-ray imaging device may be used as a “universal” imager for both MV and kV imaging.Type: GrantFiled: May 31, 2013Date of Patent: February 23, 2016Assignee: Varian Medical Systems, Inc.Inventors: Larry Partain, Edward Seppi, George Zentai, Hassan Mostafavi, Ivan Mollov, Daniel Morf
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Publication number: 20140353513Abstract: An x-ray imaging device may include a detector array and an x-ray converting layer coupled to the detector array. The detector array and the x-ray converting layer may be configured such that x-rays traverse the detector array before propagating in the x-ray converting layer. The x-ray imaging device may also include a buildup layer behind the x-ray converting layer. The x-ray imaging device may be used as a “universal” imager for both MV and kV imaging.Type: ApplicationFiled: May 31, 2013Publication date: December 4, 2014Inventors: Larry Partain, Edward Seppi, George Zentai, Hassan Mostafavi, Ivan Mollov, Daniel Morf
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Patent number: 8859976Abstract: A radiation detector includes a conversion element that converts an incoming radiation beam into electrical signals, which in turn can be used to generate data about the radiation beam. The conversion element may include, for example, a scintillator that converts the radiation beam into light, and a sensor that generates the signals in response to the light. The conversion element can be used in different schemes or data collection modes. For instance, the conversion element can be oriented normal to the radiation beam or transverse to the radiation beam. In either of these orientations, for example, the detector can be used in an integrating mode or in a counting mode.Type: GrantFiled: May 20, 2013Date of Patent: October 14, 2014Assignee: Varian Medical Systems, Inc.Inventors: Gary Virshup, Edward Seppi, James Clayton, Edward Shapiro
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Publication number: 20130248723Abstract: A radiation detector includes a conversion element that converts an incoming radiation beam into electrical signals, which in turn can be used to generate data about the radiation beam. The conversion element may include, for example, a scintillator that converts the radiation beam into light, and a sensor that generates the signals in response to the light. The conversion element can be used in different schemes or data collection modes. For instance, the conversion element can be oriented normal to the radiation beam or transverse to the radiation beam. In either of these orientations, for example, the detector can be used in an integrating mode or in a counting mode.Type: ApplicationFiled: May 20, 2013Publication date: September 26, 2013Applicant: Varian Medical Systems, Inc.Inventors: Gary VIRSHUP, Edward SEPPI, James CLAYTON, Edward SHAPIRO
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Patent number: 8466421Abstract: A radiation detector includes a conversion element that converts an incoming radiation beam into electrical signals, which in turn can be used to generate data about the radiation beam. The conversion element may include, for example, a scintillator that converts the radiation beam into light, and a sensor that generates the signals in response to the light. The conversion element can be used in different schemes or data collection modes. For instance, the conversion element can be oriented normal to the radiation beam or transverse to the radiation beam. In either of these orientations, for example, the detector can be used in an integrating mode or in a counting mode.Type: GrantFiled: July 30, 2010Date of Patent: June 18, 2013Assignee: Varian Medical Systems Inc.Inventors: Gary Virshup, Edward Seppi, James Clayton, Edward G Shapiro
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Patent number: 8194821Abstract: Disclosed are systems, methods, and computer program products that generate estimates of errors caused by extraneous radiation in tomographic systems, such as cone-beam computerized tomography (CBCT) systems, fluoroscopic tomography systems, radiographic tomography systems, laminar tomography imaging systems, and the like. In one group of inventions, spatial errors are estimated from projection data collected where a known spatial perturbation has been introduced into radiation intensity of the source. In another group of inventions, temporal errors are estimated from a sequence of projections where a known perturbation in the radiation intensity of the source for different projections has been introduced.Type: GrantFiled: September 26, 2008Date of Patent: June 5, 2012Assignee: Varian Medical Systems, Inc.Inventors: Edward Seppi, Edward Shapiro, Gary Virshup, Josh Star-Lack
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Publication number: 20120025084Abstract: A radiation detector includes a conversion element that converts an incoming radiation beam into electrical signals, which in turn can be used to generate data about the radiation beam. The conversion element may include, for example, a scintillator that converts the radiation beam into light, and a sensor that generates the signals in response to the light. The conversion element can be used in different schemes or data collection modes. For instance, the conversion element can be oriented normal to the radiation beam or transverse to the radiation beam. In either of these orientations, for example, the detector can be used in an integrating mode or in a counting mode.Type: ApplicationFiled: July 30, 2010Publication date: February 2, 2012Inventors: Gary VIRSHUP, Edward SEPPI, James CLAYTON, Edward G. SHAPIRO
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Publication number: 20100128839Abstract: A radiation apparatus includes a first radiation source configured to generate radiation suitable for therapeutic treatment, and a structure for supporting a body. The structure comprises a curved surface adapted to receive a body portion to be treated during a therapeutic treatment.Type: ApplicationFiled: November 21, 2008Publication date: May 27, 2010Applicant: Varian Medical Systems, Inc.Inventors: Larry D. Partain, Gary Virshup, Edward Seppi, David Humber
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Publication number: 20100080337Abstract: Disclosed are systems, methods, and computer program products that generate estimates of errors caused by extraneous radiation in tomographic systems, such as cone-beam computerized tomography (CBCT) systems, fluoroscopic tomography systems, radiographic tomography systems, laminar tomography imaging systems, and the like. In one group of inventions, spatial errors are estimated from projection data collected where a known spatial perturbation has been introduced into radiation intensity of the source. In another group of inventions, temporal errors are estimated from a sequence of projections where a known perturbation in the radiation intensity of the source for different projections has been introduced.Type: ApplicationFiled: September 26, 2008Publication date: April 1, 2010Applicant: Varian Medical Systems, Inc.Inventors: Edward Seppi, Edward Shapiro, Gary Virshup, Josh Star-Lack
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Patent number: 7660384Abstract: A method of imaging a patient's uncompressed region of interest using X-ray cone beam computed tomography or cone beam digital tomography comprises the step of introducing an effective amount of a contrast agent to the uncompressed region of interest. A system for imaging a patient's uncompressed region of interest using cone beam computed tomography (CBCT) or cone beam digital tomography (CBDT) comprises an X-ray source transmitting an X-ray to the uncompressed region of interest, an image acquisition system acquiring a plurality of two-dimensional projection images data for a CBCT or CBDT data set with at least one of the projection images acquired in 35 milliseconds or less, and a processor generating a three-dimensional computed tomography image data set resolving voxels with dimensions of 0.4 mm or less in at least two orthogonal directions.Type: GrantFiled: May 23, 2008Date of Patent: February 9, 2010Assignee: Varian Medical Systems, Inc.Inventors: Larry Partain, Stavros Prionas, Edward Seppi, Robert Sutherland, David Humber, Hassan Mostafavi, Felix Fernando, John Boone
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Publication number: 20100016649Abstract: A method of delivering external radiation beams to a target volume in a body portion includes positioning a radioactive isotope source at a plurality of locations spaced apart around the body portion, and collimating radiation beams of the radioactive isotope source from the plurality of locations, whereby the target volume in the body portion is deposited with a predetermined dose distribution. A radiation device employs a member having a configuration adapted to surround a body portion to be irradiated. The member has a channel and a plurality of collimators spaced apart along and coupled to the channel. The plurality of collimators define a plurality of dwelling locations for a radioactive isotope source in the channel and are configured to collimate radiation beams of the radioactive isotope source.Type: ApplicationFiled: July 21, 2008Publication date: January 21, 2010Applicant: VARIAN MEDICAL SYSTEMS, INC.Inventors: Stavros Prionas, Michael C. Green, Edward Seppi, Larry D. Partain, James Clayton, Stanley Mansfield, John Boone
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Publication number: 20080226018Abstract: A method of imaging a patient's uncompressed region of interest using X-ray cone beam computed tomography or cone beam digital tomography comprises the step of introducing an effective amount of a contrast agent to the uncompressed region of interest. A system for imaging a patient's uncompressed region of interest using cone beam computed tomography (CBCT) or cone beam digital tomography (CBDT) comprises an X-ray source transmitting an X-ray to the uncompressed region of interest, an image acquisition system acquiring a plurality of two-dimensional projection images data for a CBCT or CBDT data set with at least one of the projection images acquired in 35 milliseconds or less, and a processor generating a three-dimensional computed tomography image data set resolving voxels with dimensions of 0.4 mm or less in at least two orthogonal directions.Type: ApplicationFiled: May 23, 2008Publication date: September 18, 2008Applicant: Varian Medical Systems Technologies, Inc.Inventors: Larry D. Partain, Stavros Prionas, Edward Seppi, Robert Sutherland, David Humber, Hassan Mostafavi, Felix Fernando, John Boone
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Patent number: 7394889Abstract: A method of imaging a patient's uncompressed region of interest using X-ray cone beam computed tomography or cone beam digital tomography comprises the step of introducing an effective amount of a contrast agent to the uncompressed region of interest. A system for imaging a patient's uncompressed region of interest using cone beam computed tomography (CBCT) or cone beam digital tomography (CBDT) comprises an X-ray source transmitting an X-ray to the uncompressed region of interest, an image acquisition system acquiring a plurality of two-dimensional projection images data for a CBCT or CBDT data set with at least one of the projection images acquired in 35 milliseconds or less, and a processor generating a three-dimensional computed tomography image data set resolving voxels with dimensions of 0.4 mm or less in at least two orthogonal directions.Type: GrantFiled: May 18, 2006Date of Patent: July 1, 2008Assignee: Varian Medical Systems Technologies, Inc.Inventors: Larry D. Partain, Stavros Prionas, Edward Seppi, Robert Sutherland, David Humber, Hassan Mostafavi, Felix Fernando, John Boone
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Patent number: 7336760Abstract: Disclosed are imaging systems, methods, and computer program products that generate estimates of scattered radiation in tomographic imaging systems, such as cone-beam computerized tomography (CBCT) systems, and the like. In an exemplary embodiment, a first group of projections is taken of an object with the radiation covering a wide band of the object, and a second group of projections is taken of the object with the radiation covering a narrower band of the object. The projections of the second group cover less of the object, but have less scattered radiation. The scattered radiation within the narrower band may be estimated from differences between projections from the first and second groups, or from representations thereof.Type: GrantFiled: July 28, 2006Date of Patent: February 26, 2008Assignee: Varian Medical Systems Technologies, Inc.Inventors: Gary Virshup, Roland Suri, Edward Seppi, Edward Shapiro, Josh Star-Lack, Erik William Chell
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Publication number: 20080025458Abstract: Disclosed are imaging systems, methods, and computer program products that generate estimates of scattered radiation in tomographic imaging systems, such as cone-beam computerized tomography (CBCT) systems, and the like. In an exemplary embodiment, a first group of projections is taken of an object with the radiation covering a wide band of the object, and a second group of projections is taken of the object with the radiation covering a narrower band of the object. The projections of the second group cover less of the object, but have less scattered radiation. The scattered radiation within the narrower band may be estimated from differences between projections from the first and second groups, or from representations thereof.Type: ApplicationFiled: July 28, 2006Publication date: January 31, 2008Inventors: Gary Virshup, Roland Suri, Edward Seppi, Edward Shapiro, Josh Star-Lack, Erik William Chell
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Publication number: 20070269000Abstract: A method of imaging a patient's uncompressed region of interest using X-ray cone beam computed tomography or cone beam digital tomography comprises the step of introducing an effective amount of a contrast agent to the uncompressed region of interest. A system for imaging a patient's uncompressed region of interest using cone beam computed tomography (CBCT) or cone beam digital tomography (CBDT) comprises an X-ray source transmitting an X-ray to the uncompressed region of interest, an image acquisition system acquiring a plurality of two-dimensional projection images data for a CBCT or CBDT data set with at least one of the projection images acquired in 35 milliseconds or less, and a processor generating a three-dimensional computed tomography image data set resolving voxels with dimensions of 0.4 mm or less in at least two orthogonal directions.Type: ApplicationFiled: May 18, 2006Publication date: November 22, 2007Inventors: Larry Partain, Stavros Prionas, Edward Seppi, Robert Sutherland, David Humber, Hassan Mostafavi, Felix Fernando, John Boone
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Publication number: 20070253529Abstract: Systems and methods are provided for implementing an analytical approach to digital volumetric laminar tomography. The volumetric data visualizations generally take the form of volumetric images which approximate the spatial distribution of an x-ray attenuation coefficient throughout the region of interest in the object, such as a person, under examination. These visualizations are produced from a set of basic two dimensional data. One numerical technique employed in this regard takes the form of a process of convolution and back projection, where the convolution function is determined through the use of various analytic and empirical techniques.Type: ApplicationFiled: April 13, 2006Publication date: November 1, 2007Inventor: Edward Seppi