Patents by Inventor David M. Brooks
David M. Brooks 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: 10949200Abstract: Methods and apparatus for parallel processing are provided. A multicore processor is described. The multicore processor may include a distributed memory unit with memory nodes coupled to the processor's cores. The cores may be configured to execute parallel threads, and at least one of the threads may be data-dependent on at least one of the other threads. The distributed memory unit may be configured to proactively send shared memory data from a thread that produces the shared memory data to one or more of the threads.Type: GrantFiled: June 13, 2014Date of Patent: March 16, 2021Assignee: President and Fellows of Harvard CollegeInventors: Gu-Yeon Wei, David M. Brooks, Simone Campanoni, Kevin M. Brownell, Svilen Kanev
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Publication number: 20190038975Abstract: A system includes an emitter, a receiver, a wireless communications module, and a user interface module. The emitter, controlled by a first player, emits an emitter signal that includes emitter identification information. The receiver receives the emitter signal and generates a receiver signal that includes the emitter identification information. The gameplay cloud interface module receives the receiver signal and communicates an indication that includes player identification information associated the emitter identification information. The gameplay cloud interface module is further configured to receive scoring information that is based on the player identification information. The user interface module presents gameplay information based on the scoring information to the first player.Type: ApplicationFiled: October 9, 2018Publication date: February 7, 2019Applicant: LyteShot Inc.Inventors: Mark J. Ladd, David M. Brooks
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Patent number: 10092835Abstract: A system includes an emitter, a receiver, a wireless communications module, and a user interface module. The emitter, controlled by a first player, emits an emitter signal that includes emitter identification information. The receiver receives the emitter signal and generates a receiver signal that includes the emitter identification information. The gameplay cloud interface module receives the receiver signal and communicates an indication that includes player identification information associated the emitter identification information. The gameplay cloud interface module is further configured to receive scoring information that is based on the player identification information. The user interface module presents gameplay information based on the scoring information to the first player.Type: GrantFiled: July 6, 2016Date of Patent: October 9, 2018Inventors: Mark J. Ladd, David M. Brooks
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Publication number: 20160310846Abstract: A system includes an emitter, a receiver, a wireless communications module, and a user interface module. The emitter, controlled by a first player, emits an emitter signal that includes emitter identification information. The receiver receives the emitter signal and generates a receiver signal that includes the emitter identification information. The gameplay cloud interface module receives the receiver signal and communicates an indication that includes player identification information associated the emitter identification information. The gameplay cloud interface module is further configured to receive scoring information that is based on the player identification information. The user interface module presents gameplay information based on the scoring information to the first player.Type: ApplicationFiled: July 6, 2016Publication date: October 27, 2016Inventors: Mark J. Ladd, David M. Brooks
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Publication number: 20160313991Abstract: Methods and apparatus for parallel processing are provided. A multicore processor is described. The multicore processor may include a distributed memory unit with memory nodes coupled to the processor's cores. The cores may be configured to execute parallel threads, and at least one of the threads may be data-dependent on at least one of the other threads. The distributed memory unit may be configured to proactively send shared memory data from a thread that produces the shared memory data to one or more of the threads.Type: ApplicationFiled: June 13, 2014Publication date: October 27, 2016Applicant: President and Fellows of Harvard CollegeInventors: Gu-Yeon WEI, David M. BROOKS, Simone CAMPANONI, Kevin M. BROWNELL, Svilen KANEV
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Patent number: 9168335Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: GrantFiled: February 21, 2014Date of Patent: October 27, 2015Assignee: MALLINCKRODT LLCInventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small, Jonathan D. Gibbs, John Kevin Bruce, Gary S. Wagner
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Patent number: 9101708Abstract: A dual head contrast media injection system performs a patency check or test injection, determining flow rate and/or flow volume from the programmed protocol. The tubing that connects syringes to a patient shares only a short common section near to the patient. Appropriate injection steps are taken to compensate for tubing elasticity. A wireless remote control and a touch screen control are provided, improving functionality and information delivery. The display brightness is controlled based on the ambient light, and the display panel includes a double swivel permitting re-orientation. The orientation of the display may also be controlled based on, e.g., the current step, the tilt angle of the powerhead, or a manual control. Furthermore, the display is customizable to identify the type of fluid (contrast, saline, etc.) on either side of the injector, to provide matched color coding, and to provide a folder/tab analogy for retrieving injection protocol parameters.Type: GrantFiled: March 7, 2005Date of Patent: August 11, 2015Assignee: LIEBEL-FLARSHEIM COMPANY LLCInventors: James R. Small, David M. Brooks, Charles S. Neer, Frank M. Fago
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Publication number: 20150025374Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: ApplicationFiled: February 21, 2014Publication date: January 22, 2015Applicant: MALLINCKRODT LLCInventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small, Jonathan D. Gibbs, John Kevin Bruce, Gary S. Wagner
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Patent number: 8900187Abstract: A dual head contrast media injection system performs a patency check or test injection, determining flow rate and/or flow volume from the programmed protocol. The tubing that connects syringes to a patient shares only a short common section near to the patient. Appropriate injection steps are taken to compensate for tubing elasticity. A wireless remote control and a touch screen control are provided, improving functionality and information delivery. The display brightness is controlled based on the ambient light, and the display panel includes a double swivel permitting re-orientation. The orientation of the display may also be controlled based on, e.g., the current step, the tilt angle of the powerhead, or a manual control. Furthermore, the display is customizable to identify the type of fluid (contrast, saline, etc.) on either side of the injector, to provide matched color coding, and to provide a folder/tab analogy for retrieving injection protocol parameters.Type: GrantFiled: October 23, 2006Date of Patent: December 2, 2014Assignee: Mallinckrodt LLCInventors: James R. Small, David M. Brooks, Charles S. Neer, Frank M. Fago, Gary S. Wagner, Elaine Borgemenke, Sean Lafferty
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Publication number: 20140302919Abstract: A system includes an emitter, a receiver, a wireless communications module, and a user interface module. The emitter, controlled by a first player, emits an emitter signal that includes emitter identification information. The receiver receives the emitter signal and generates a receiver signal that includes the emitter identification information. The gameplay cloud interface module receives the receiver signal and communicates an indication that includes player identification information associated the emitter identification information. The gameplay cloud interface module is further configured to receive scoring information that is based on the player identification information. The user interface module presents gameplay information based on the scoring information to the first player.Type: ApplicationFiled: April 7, 2014Publication date: October 9, 2014Inventors: Mark J. Ladd, David M. Brooks
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Patent number: 8726910Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: GrantFiled: July 13, 2012Date of Patent: May 20, 2014Assignee: Mallinckrodt LLCInventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small
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Patent number: 8663166Abstract: A dual head contrast media injection system performs a patency check or test injection, determining flow rate and/or flow volume from the programmed protocol. The tubing that connects syringes to a patient shares only a short common section near to the patient. Appropriate injection steps are taken to compensate for tubing elasticity. A wireless remote control and a touch screen control are provided, improving functionality and information delivery. The display brightness is controlled based on the ambient light, and the display panel includes a double swivel permitting re-orientation. The orientation of the display may also be controlled based on, e.g., the current step, the tilt angle of the powerhead, or a manual control. Furthermore, the display is customizable to identify the type of fluid (contrast, saline, etc.) on either side of the injector, to provide matched color coding, and to provide a folder/tab analogy for retrieving injection protocol parameters.Type: GrantFiled: June 8, 2010Date of Patent: March 4, 2014Assignee: Mallinckrodt LLCInventors: James R. Small, David M. Brooks, Charles S. Neer
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Publication number: 20120283561Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: ApplicationFiled: July 13, 2012Publication date: November 8, 2012Inventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small
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Patent number: 8277416Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: GrantFiled: March 7, 2005Date of Patent: October 2, 2012Assignee: Mallinckrodt LLCInventors: Jonathan D. Gibbs, John Kevin Bruce, Robert J. Ziemba, David M. Brooks, Gary S. Wagner
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Patent number: 8251071Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: GrantFiled: April 14, 2010Date of Patent: August 28, 2012Assignee: Mallinckrodt LLCInventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small
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Patent number: 8180434Abstract: A contrast media injection system detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: GrantFiled: January 14, 2008Date of Patent: May 15, 2012Assignee: Mallinckrodt LLCInventors: Jonathan D. Gibbs, John Kevin Bruce, Robert J. Ziemba, David M. Brooks
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Publication number: 20110060219Abstract: A dual head contrast media injection system performs a patency check or test injection, determining flow rate and/or flow volume from the programmed protocol. The tubing that connects syringes to a patient shares only a short common section near to the patient. Appropriate injection steps are taken to compensate for tubing elasticity. A wireless remote control and a touch screen control are provided, improving functionality and information delivery. The display brightness is controlled based on the ambient light, and the display panel includes a double swivel permitting re-orientation. The orientation of the display may also be controlled based on, e.g., the current step, the tilt angle of the powerhead, or a manual control. Furthermore, the display is customizable to identify the type of fluid (contrast, saline, etc.) on either side of the injector, to provide matched color coding, and to provide a folder/tab analogy for retrieving injection protocol parameters.Type: ApplicationFiled: June 8, 2010Publication date: March 10, 2011Inventors: James R. Small, David M. Brooks, Charles S. Neer
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Publication number: 20110060217Abstract: A contrast media injection system includes detects the absolute position of the syringe ram using a non-contact sensor. A series of magnets and Hall-Effect sensors may be used or an opto-reflective system. Illuminated knobs that are connected to the drive mechanism for the syringe ram rotate with the drive and provide visual feedback on operation through the illumination. Analog Hall-Effect sensors are used to determine the presence or absence of magnets that identify the type of faceplate being used. The faceplates include control electronics, connected to the powerhead through connectors, which may be interchangeably used by the two faceplates. The faceplate electronics include detectors for automatically detecting the capacity of pre-filled syringes.Type: ApplicationFiled: April 14, 2010Publication date: March 10, 2011Inventors: Charles S. Neer, Robert J. Ziemba, David M. Brooks, James R. Small
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Patent number: 7865747Abstract: A method and structure of reducing power consumption in a microprocessor includes at least one storage structure in which the activity of the storage structure is dynamically measured and the size of the structure is controlled based on the activity. The storage structure includes a plurality of blocks, and the size of the structure is controlled in units of block size, based on activity measured in the blocks. An exemplary embodiment is an adaptive out-of-order queue.Type: GrantFiled: October 5, 2001Date of Patent: January 4, 2011Assignee: International Business Machines CorporationInventors: Alper Buyuktosunoglu, Stanley E. Schuster, David M. Brooks, Pradip Bose, Peter W. Cook, David H. Albonesi
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Publication number: 20100232469Abstract: Systems and methods for efficiently operating a gas discharge excimer laser are disclosed. The excimer laser may include a chamber containing laser gases, first and second electrodes within the chamber, and a plurality of reflective elements defining an optical resonant cavity. The method may include setting the laser gases to a first pressure; after setting the gases to the first pressure, applying a first voltage to the electrodes, thereby propagating a laser beam in the optical resonant cavity; measuring energy of the beam; adjusting the first voltage until the energy of the beam is substantially equal to a target pulse energy; operating the laser for an amount of time; after the amount of time, measuring energy of the beam; and changing the pressure of the gases to a second pressure different from the first pressure.Type: ApplicationFiled: November 17, 2009Publication date: September 16, 2010Applicant: PHOTOMEDEXInventors: Jeffrey I. Levatter, James H. Morris, David M. Brooks