Patents by Inventor Ciaran Bolger
Ciaran Bolger 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: 12329513Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: GrantFiled: December 7, 2020Date of Patent: June 17, 2025Inventors: Michael Baltay, Clark B. Foster, Ciaran Bolger, Martin Acquadro, Bruce A. Rasmussen
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Publication number: 20250176902Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: ApplicationFiled: December 19, 2024Publication date: June 5, 2025Inventors: Michael Baltay, Bruce Rasmussen, Yahya Shehabi, Ciaran Bolger, Martin Acquadro, Clark B. Foster
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Patent number: 12207936Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: GrantFiled: January 11, 2021Date of Patent: January 28, 2025Assignee: BRAINSTEM BIOMETRICS, INC.Inventors: Michael Baltay, Bruce Rasmussen, Yahya Shehabi, Ciaran Bolger, Martin Acquadro, Clark B. Foster
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Publication number: 20240016471Abstract: The invention relates to a medical system comprising a tool including: a body; a location measurement device adapted to emit an ultrasound location signal and receive a reflected location signal; a location processing device adapted to compare each of the echoes of the reflected location signal to a pre-determined location threshold, emit an information signal if no target location echo corresponding to the interface between first and second anatomical structures has been identified within an analysis time window, the target location echo having an amplitude that exceeds the location threshold.Type: ApplicationFiled: February 3, 2015Publication date: January 18, 2024Applicant: SPINEGUARDInventors: Maurice Bourlion, Randal R. Betz, Ciaran Bolger, Andrè Kaelin, Larry T. Khoo, John I. Williams, Hee-Kit Wong
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Patent number: 11291381Abstract: A medical system including a body; a first electrode; a second electrode; an electric generator; and a processing device suitable for determining an electrical characteristic that represents the capacity of the tissue of an anatomical structure between first and second contact surfaces of the first and second electrodes to conduct the electric current, and for emitting a warning signal corresponding to the determined electrical characteristic, the warning signal being intermittent. The processing device is suitable for detecting a variation in the electrical characteristic and for varying at least one variable parameter of the warning signal after a time delay, in accordance with the variation in the electrical characteristic, has elapsed.Type: GrantFiled: April 6, 2016Date of Patent: April 5, 2022Assignee: SPINEGUARDInventors: Maurice Bourlion, Ciaran Bolger, Olivier Frezal, Stéphane Bette
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Publication number: 20210236051Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: ApplicationFiled: January 11, 2021Publication date: August 5, 2021Inventors: Michael Baltay, Bruce Rasmussen, Yahya Shehabi, Ciaran Bolger, Martin Acquadro, Clark B. Foster
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Publication number: 20210113115Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: ApplicationFiled: December 7, 2020Publication date: April 22, 2021Inventors: Michael Baltay, Clark B. Foster, Ciaran Bolger, Martin Acquadro, Bruce A. Rasmussen
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Patent number: 10888268Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brainstem activity is provided. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient is also provided.Type: GrantFiled: December 8, 2016Date of Patent: January 12, 2021Inventors: Michael Baltay, Bruce Rasmussen, Yahya Shehabi, Ciaran Bolger, Martin Acquadro, Clark B. Foster
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Patent number: 10856774Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: GrantFiled: October 16, 2017Date of Patent: December 8, 2020Inventors: Michael M Baltay, Clark B Foster, Ciaran Bolger, Martin Acquadro, Bruce A Rasmussen
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Publication number: 20180160968Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brainstem activity is provided. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient is also provided.Type: ApplicationFiled: December 8, 2016Publication date: June 14, 2018Inventors: Michael Baltay, Bruce Rasmussen, Yahya Shehabi, Ciaran Bolger, Martin Acquadro, Clark B. Foster
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Publication number: 20180116558Abstract: An eye sensor, system and method for measuring fixational eye movements of an individual's eyeball (e.g., ocular microtremors and microsaccades) to provide a variable voltage biosignal for measuring the individual's brain stem activity. The eye sensor comprises a sensor mounted on the individual's closed or opened eyelid so as to be deflected by the fixational eye movements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the sensor to an amplifier located on the individual's skin where the biosignal is amplified. The amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician. A method for analyzing the biosignal to determine the brainstem activity of a patient.Type: ApplicationFiled: October 16, 2017Publication date: May 3, 2018Inventors: Michael M. Baltay, Clark B. Foster, Ciaran Bolger, Martin Acquadro, Bruce A. Rasmussen
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Publication number: 20180098714Abstract: The invention relates to a medical system including: a body; a first electrode; a second electrode; an electric generator; and a processing device suitable for determining an electrical characteristic that represents the capacitance of the tissue of an anatomical structure between first and second contact surfaces of the first and second electrodes to conduct the electric current, and for emitting a warning signal corresponding to the determined electrical characteristic, the warning signal being intermittent. In said medical system, the processing device is suitable for detecting a variation in the electrical characteristic and for varying at least one variable parameter of the warning signal after a time delay, in accordance with the variation in the electrical characteristic, has elapsed.Type: ApplicationFiled: April 6, 2016Publication date: April 12, 2018Applicant: SPINEGURADInventors: Maurice Bourlion, Ciaran Bolger, Olivier Frezel, Stéphane Bette
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Patent number: 9788760Abstract: An ocular micro tremor (OMT) sensor, system and method for measuring micromovements of an individual's eyeball having an amplitude of 40 micrometers or less to provide a variable voltage biosignal for measuring the individual's brain stem activity. The OMT sensor includes a flexible piezo-active sensing element mounted at the individual's closed or opened eyelid so as to be deflected by the micromovements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the piezo-active sensing element to an OMT amplifier located on the individual's skin where the biosignal is amplified. The OMT amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician.Type: GrantFiled: December 8, 2015Date of Patent: October 17, 2017Inventors: Michael M Baltay, Clark B Foster, Ciaran Bolger, Martin Acquadro, Bruce A Rasmussen
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Publication number: 20170156637Abstract: An ocular micro tremor (OMT) sensor, system and method for measuring micromovements of an individual's eyeball having an amplitude of 40 micrometers or less to provide a variable voltage biosignal for measuring the individual's brain stem activity. The OMT sensor includes a flexible piezo-active sensing element mounted at the individual's closed or opened eyelid so as to be deflected by the micromovements of the eyeball. A shielded flexible ribbon assembly supplies the biosignal generated by the piezo-active sensing element to an OMT amplifier located on the individual's skin where the biosignal is amplified. The OMT amplifier is interconnected with a signal processor and a display by which graphical and numerical representations of the biosignal are made accessible to an anesthesiologist, intensivist or clinician.Type: ApplicationFiled: December 8, 2015Publication date: June 8, 2017Inventors: Michael M. Baltay, Clark B. Foster, Ciaran Bolger, Martin Acquadro, Bruce A. Rasmussen
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Publication number: 20170007199Abstract: The invention relates to a system comprising: a view measurement device adapted to emit an ultrasound view signal and receive a reflected view signal; a view processing device adapted to detect, in the reflected view signal, a target view echo corresponding to an interface between first and second anatomical structures, to measure a flight time between the emission of an ultrasound view signal and the detection of the target view echo, and to represent an external surface of the first anatomical structure from the measured flight times.Type: ApplicationFiled: February 3, 2015Publication date: January 12, 2017Applicant: SPINEGUARDInventors: Maurice Bourlion, Randal R. Betz, Ciaran Bolger, Andrè Kaelin, Larry Khoo, John I. Williams, Hee-Kit Wong
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Publication number: 20140180161Abstract: An apparatus consistent with the present invention comprises a sensor for receiving a signal representing eye tremor and a processor for monitoring eye tremor while receiving the signal. A method consistent with the present invention includes receiving a signal representing eye tremor, comparing the received signal representing eye tremor to at least one reference value; and classifying a patient's brain stem function using the comparison of the received signal representing eye tremor to at least one reference value. An embodiment consistent with the present invention includes an ocular micro tremor (OMT) sensor and associated signal processing hardware and software for clinical analyses.Type: ApplicationFiled: July 2, 2013Publication date: June 26, 2014Inventors: Ciaran Bolger, Steven W. Arms, Christopher P. Townsend, Kurt R. Smith
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Patent number: 8500282Abstract: An apparatus consistent with the present invention comprises a sensor for receiving a signal representing eye tremor and a processor for monitoring eye tremor while receiving the signal. A method consistent with the present invention includes receiving a signal representing eye tremor, comparing the received signal representing eye tremor to at least one reference value, and classifying a patient's brain stem function using the comparison of the received signal representing eye tremor to at least one reference value. An embodiment consistent with the present invention includes an ocular micro tremor (OMT) sensor and associated signal processing hardware and software for clinical analyses.Type: GrantFiled: September 22, 2011Date of Patent: August 6, 2013Assignee: Boston Brainstem, Inc.Inventors: Ciaran Bolger, Steven W. Arms, Christopher P. Townsend, Kurt R. Smith
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Publication number: 20120010536Abstract: An apparatus consistent with the present invention comprises a sensor for receiving a signal representing eye tremor and a processor for monitoring eye tremor while receiving the signal. A method consistent with the present invention includes receiving a signal representing eye tremor, comparing the received signal representing eye tremor to at least one reference value, and classifying a patient's brain stem function using the comparison of the received signal representing eye tremor to at least one reference value.Type: ApplicationFiled: September 22, 2011Publication date: January 12, 2012Inventors: Ciaran Bolger, Steven W. Arms, Christopher P. Townsend, Kurt R. Smith
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Patent number: 8025404Abstract: An apparatus consistent with the present invention comprises a sensor for receiving a signal representing eye tremor and a processor for monitoring eye tremor while receiving the signal. A method consistent with the present invention includes receiving a signal representing eye tremor, comparing the received signal representing eye tremor to at least one reference value, and classifying a patient's brain stem function using the comparison of the received signal representing eye tremor to at least one reference value. An embodiment consistent with the present invention includes an ocular micro tremor (OMT) sensor and associated signal processing hardware and software for clinical analyses.Type: GrantFiled: September 30, 2009Date of Patent: September 27, 2011Assignee: EyeTect, L.L.C.Inventors: Ciaran Bolger, Steven W. Arms, Christopher P. Townsend, Kurt R. Smith
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Patent number: 7875061Abstract: The present invention relates to a vertebral osteosynthesis plate to maintain relative vertebral orientation correction using a correction instrument. The osteosynthesis plate has an overall rectangular shape and comprises at least four slots to insert, in each, fixation devices, wherein at least two of the slots opens onto a lateral edge of the osteosynthesis plate to enable positioning and fixation of the plate with no prior removal of the relative vertebral orientation correction instrument. The edge of the plate is defined by an edge located in the same direction as the longitudinal direction of the plate. The longitudinal direction of the plate is roughly identical to that of the direction of the spinal column.Type: GrantFiled: March 27, 2002Date of Patent: January 25, 2011Assignee: Spinevision S.A.Inventors: Ciaran Bolger, John Bolger