Patents by Inventor Peter Olcott
Peter Olcott 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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Publication number: 20260207972Abstract: This application relates to methods for delivering radiation to a positron-emitting target within a subject under continuous PET guidance. Instead of directing radiation at a collinear path along each detected positron line-of-response (LOR), the methods generally include detecting a pattern of LORs that intersect the target. In response to the pattern, radiation may be delivered along paths that are not necessarily collinear to any of the LORs. Methods for further modifying radiation delivery as well as the detected LOR population are also described.Type: ApplicationFiled: November 18, 2025Publication date: July 23, 2026Inventors: Yevgen VORONENKO, Rostem BASSALOW, Peter OLCOTT, Brent HARPER, David LARKIN
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Publication number: 20260175050Abstract: Described here are systems, devices, and methods for imaging and radiotherapy procedures. Generally, a radiotherapy system may include a radiotransparent patient platform, a radiation source coupled to a multi-leaf collimator, and a detector facing the collimator. The radiation source may be configured to emit a first beam through the collimator to provide treatment to a patient on the patient platform. A controller may be configured to control the radiotherapy system.Type: ApplicationFiled: September 22, 2025Publication date: June 25, 2026Inventors: William PEARCE, Brent Harper, Peter Olcott, Manat Maolinbay, Rostem Bassalow, George Zdasiuk, Thomas Leroy Laurence, JR.
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Patent number: 12502554Abstract: This application relates to methods for delivering radiation to a positron-emitting target within a subject under continuous PET guidance. Instead of directing radiation at a collinear path along each detected positron line-of-response (LOR), the methods generally include detecting a pattern of LORs that intersect the target. In response to the pattern, radiation may be delivered along paths that are not necessarily collinear to any of the LORs. Methods for further modifying radiation delivery as well as the detected LOR population are also described.Type: GrantFiled: June 30, 2022Date of Patent: December 23, 2025Assignee: RefleXion Medical, Inc.Inventors: Yevgen Voronenko, Rostem Bassalow, Peter Olcott, Brent Harper, David Larkin
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Publication number: 20240350832Abstract: Disclosed herein are radiation therapy systems and methods. These radiation therapy systems and methods are used for emission-guided radiation therapy, where gamma rays from markers or tracers that are localized to patient tumor regions are detected and used to direct radiation to the tumor. The radiation therapy systems described herein comprise a gantry comprising a rotatable ring coupled to a stationary frame via a rotating mechanism such that the rotatable ring rotates up to about 70 RPM, a radiation source (e.g., MV X-ray source) mounted on the rotatable ring, and one or more PET detectors mounted on the rotatable ring.Type: ApplicationFiled: March 19, 2024Publication date: October 24, 2024Inventors: Brent HARPER, Robert WIGGERS, David LARKIN, David MEER, David NETT, Rostem BASSALOW, Peter OLCOTT, Chris JULIAN, Brent DOLAN, William Jorge PEARCE
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Publication number: 20230067048Abstract: This application relates to methods for delivering radiation to a positron-emitting target within a subject under continuous PET guidance. Instead of directing radiation at a collinear path along each detected positron line-of-response (LOR), the methods generally include detecting a pattern of LORs that intersect the target. In response to the pattern, radiation may be delivered along paths that are not necessarily collinear to any of the LORs. Methods for further modifying radiation delivery as well as the detected LOR population are also described.Type: ApplicationFiled: June 30, 2022Publication date: March 2, 2023Inventors: Yevgen VORONENKO, Rostem BASSALOW, Peter OLCOTT, Brent HARPER, David LARKIN
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Patent number: 11406846Abstract: This application relates to methods for delivering radiation to a positron-emitting target within a subject under continuous PET guidance. Instead of directing radiation at a collinear path along each detected positron line-of-response (LOR), the methods generally include detecting a pattern of LORs that intersect the target. In response to the pattern, radiation may be delivered along paths that are not necessarily collinear to any of the LORs. Methods for further modifying radiation delivery as well as the detected LOR population are also described.Type: GrantFiled: May 15, 2019Date of Patent: August 9, 2022Assignee: RefleXion Medical, Inc.Inventors: Yevgen Voronenko, Rostem Bassalow, Peter Olcott, Brent Harper, David Larkin
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Publication number: 20200368557Abstract: Disclosed herein are radiation therapy systems and methods. These radiation therapy systems and methods are used for emission-guided radiation therapy, where gamma rays from markers or tracers that are localized to patient tumor regions are detected and used to direct radiation to the tumor. The radiation therapy systems described herein comprise a gantry comprising a rotatable ring coupled to a stationary frame via a rotating mechanism such that the rotatable ring rotates up to about 70 RPM, a radiation source (e.g., MV X-ray source) mounted on the rotatable ring, and one or more PET detectors mounted on the rotatable ring.Type: ApplicationFiled: May 29, 2020Publication date: November 26, 2020Inventors: Brent HARPER, Robert WIGGERS, David LARKIN, David MEER, David NETT, Rostem BASSALOW, Peter OLCOTT, Chris JULIAN, Brent DOLAN, William Jorge PEARCE
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Patent number: 10695586Abstract: Disclosed herein are radiation therapy systems and methods. These radiation therapy systems and methods are used for emission-guided radiation therapy, where gamma rays from markers or tracers that are localized to patient tumor regions are detected and used to direct radiation to the tumor. The radiation therapy systems described herein comprise a gantry comprising a rotatable ring coupled to a stationary frame via a rotating mechanism such that the rotatable ring rotates up to about 70 RPM, a radiation source (e.g., MV X-ray source) mounted on the rotatable ring, and one or more PET detectors mounted on the rotatable ring.Type: GrantFiled: November 15, 2017Date of Patent: June 30, 2020Assignee: RefleXion Medical, Inc.Inventors: Brent Harper, Robert Wiggers, David Larkin, David Meer, David Nett, Rostem Bassalow, Peter Olcott, Chris Julian, Brent Dolan, William Jorge Pearce
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Publication number: 20190262630Abstract: This application relates to methods for delivering radiation to a positron-emitting target within a subject under continuous PET guidance. Instead of directing radiation at a collinear path along each detected positron line-of-response (LOR), the methods generally include detecting a pattern of LORs that intersect the target. In response to the pattern, radiation may be delivered along paths that are not necessarily collinear to any of the LORs. Methods for further modifying radiation delivery as well as the detected LOR population are also described.Type: ApplicationFiled: May 15, 2019Publication date: August 29, 2019Inventors: Yevgen VORONENKO, Rostem BASSALOW, Peter OLCOTT, Brent HARPER, David LARKIN
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Publication number: 20180133508Abstract: Described here are systems, devices, and methods for imaging and radiotherapy procedures. Generally, a radiotherapy system may include a radiotransparent patient platform, a radiation source coupled to a multi-leaf collimator, and a detector facing the collimator. The radiation source may be configured to emit a first beam through the collimator to provide treatment to a patient on the patient platform. A controller may be configured to control the radiotherapy system.Type: ApplicationFiled: November 15, 2017Publication date: May 17, 2018Inventors: William PEARCE, Brent HARPER, Peter OLCOTT, Manat MAOLINBAY, Rostem BASSALOW, George ZDASIUK, Thomas Leroy LAURENCE, JR.
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Publication number: 20180133518Abstract: Disclosed herein are radiation therapy systems and methods. These radiation therapy systems and methods are used for emission-guided radiation therapy, where gamma rays from markers or tracers that are localized to patient tumor regions are detected and used to direct radiation to the tumor. The radiation therapy systems described herein comprise a gantry comprising a rotatable ring coupled to a stationary frame via a rotating mechanism such that the rotatable ring rotates up to about 70 RPM, a radiation source (e.g., MV X-ray source) mounted on the rotatable ring, and one or more PET detectors mounted on the rotatable ring.Type: ApplicationFiled: November 15, 2017Publication date: May 17, 2018Inventors: Brent HARPER, Robert WIGGERS, David LARKIN, David MEER, David NETT, Rostem BASSALOW, Peter OLCOTT, Chris JULIAN, Brent DOLAN, William Jorge PEARCE
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Publication number: 20140242600Abstract: A radioluminescence microscopy system and method for imaging the distribution of radiolabeled molecules in live cell cultures and tissue sections. Cells are grown and incubated with radiolabeled molecules on a scintillator plate or a scintillator plate is placed adjacent to the cells after incubation. Scintillation light produced by decay of radiolabeled molecules inside, bound to, or surrounding the cells, is recorded on an imaging device. Fluorescence microscopy of the same cells with other types of molecules of interest that are labeled with different fluorophores can be conducted concurrently and the biological activity of the labeled molecules can be correlated.Type: ApplicationFiled: June 8, 2012Publication date: August 28, 2014Applicant: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITYInventors: Lei Xing, Colin Carpenter, Peter Olcott, Guillem Pratx, Conroy Sun
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Publication number: 20070217789Abstract: A charge multiplexed position sensing apparatus and method for measuring an incident radiation with the aid of an array of solid-state photosensitive detectors such as an array of avalanche photodiodes (APDs). The solid-state photosensitive detectors multiplex sum terminal(s) and a number of correspondent spatial terminals separately. Sum signal busses are provided to establish separate connections to the sum terminals of each solid-state photosensitive detector. Spatial signal busses interconnect correspondent spatial terminals of all of the solid-state photosensitive detectors such that correspondent spatial terminals are all connected to the same spatial signal bus. The multiplexing circuit triggers on electrical signals corresponding to sum or total voltages generated by the incident radiation.Type: ApplicationFiled: January 11, 2007Publication date: September 20, 2007Inventors: Peter Olcott, Craig Levin
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Publication number: 20070201611Abstract: The present invention provides a method of reconstructing a tomographic image. In a first step, a tomographic image is forward-projected along a list of geometrical lines in a GPU. This list of geometrical lines may be list-mode event data acquired from a tomographic scanner. Alternatively, the list may be a list of weighted lines derived from a sinogram, a histogram, or a timogram acquired from a tomographic scanner. Next, the list of geometrical lines is back-projected into a 3-dimensional volume using the GPU. The results of the forward- and back-projection are then used to reconstruct the tomographic image, which is then provided as an output, e.g. to make the image available for further processing. Examples of output include storage on a storage medium and display on a display device.Type: ApplicationFiled: February 23, 2007Publication date: August 30, 2007Inventors: Guillem Pratx, Peter Olcott, Craig Levin
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Publication number: 20070152161Abstract: A method and/or device of adaptively controlling an exposure duration for a camera. A determination is made as to whether motion is present. If it is determined that motion is present, exposure duration for one or more images is automatically decreased. If it is determined that motion is not present, the frame exposure duration is automatically increased.Type: ApplicationFiled: October 20, 2006Publication date: July 5, 2007Inventors: Peter Olcott, Craig Levin