Patents by Inventor Steven Charles Deane
Steven Charles Deane 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: 9517015Abstract: A dental apparatus (4) is provided. The dental apparatus includes a handle (6). A controller (20) operably couples to the housing and includes a calibration module (44) configured to calibrate the dental apparatus. The dental apparatus emits a modulated excitation signal and the calibration module compares a detected modulated fluorescence signal with first and second reference values such that if a difference between the detected modulated fluorescence signal and the second reference signal is greater than a difference between the first reference value and the second reference value then the first reference value is updated.Type: GrantFiled: November 14, 2013Date of Patent: December 13, 2016Assignee: KONINKLIJKE PHILIPS N.V.Inventors: Steven Charles Deane, Olaf Thomas Johan Antonie Vermeulen
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Publication number: 20160338635Abstract: A proximal body portion (210) of a detection apparatus for detecting the presence of a substance on a surface includes pump portion (124, 142) and a proximal probe portion (111, 120) in fluid communication with one another. A controller (225) processes signal readings sensed by the parameter sensor (P, P1 or P2) and determines whether the signal readings are indicative of a substance (116) obstructing the passage of fluid (130) through the open port of the distal tip (112, 112?) of a distal probe portion (110) of the detection apparatus (100, 100?, 100?, 100?a, 100?b, 100?c, 100?d, 100c). The controller (225) transmits a signal that changes dynamic pressure at the distal tip (112, 112?) upon determining that the signal readings are indicative of a substance (116) obstructing the passage of fluid (130) through the open port of the distal tip (112, 112?).Type: ApplicationFiled: January 21, 2015Publication date: November 24, 2016Inventors: MARK THOMAS JOHNSON, JOHANNES HENDRIKUS MARIA SPRUIT, MENNO WILLEM JOSE PRINS, STEVEN CHARLES DEANE, PIETER HORSTMAN, EDGAR MARTINUS VAN GOOL, OKKE OUWELTJES
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Publication number: 20160287084Abstract: A dental apparatus is provided. The dental apparatus include a handle. A controller operably couples to the housing. A subsystem is in operable communication with the controller and configured to generate an excitation signal causing an emitted fluorescence light to be reflected back to the subsystem and to the controller for analyzing one or more properties of the emitted fluorescence light. The one or more properties corresponding to a decay time of the emitted fluorescence light, wherein plaque emitted florescence light decays faster than tooth emitted florescence light. The controller is programmed to analyze detected emitted fluorescence light to determine if the emitted fluorescence light is indicative of a plaque emitted fluorescence decay time or tooth emitted florescence light decay time to detect the presence of one of dental plaque and tooth demineralization.Type: ApplicationFiled: December 17, 2013Publication date: October 6, 2016Inventors: OLAF THOMAS JOHAN ANTONIE VERMEULEN, STEVEN CHARLES DEANE
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Publication number: 20150327966Abstract: An apparatus (100, 100?) is configured such that passage of a fluid (30) through an open port (136, 2604) of a distal probe tip (112, 112?) enables detection of a substance (116) that may be present on a surface (31, 33), e.g., a surface of a tooth, based on measurement of a signal correlating to a substance at least partially obstructing the passage of fluid (30) through the open port (136, 2604). The apparatus (100, 100?) includes a proximal pump portion (124) and at least one distal probe portion (110) configured to be immersed in another fluid (11), e.g., water in toothpaste foam. A corresponding system (3000) includes one or two such apparatuses (3100, 3200). A method of detecting the presence of a substance on a surface includes probing an interaction zone (17) for at least partial obstruction of flow of the fluid (30) through the distal probe tip (112, 112?). The distal probe tip (112, 112?) may have a structural configuration for preventing blocking of the open port (136, 2604).Type: ApplicationFiled: December 20, 2013Publication date: November 19, 2015Inventors: JOHANNES HENDRIKUS MARIA SPRUIT, MARK THOMAS JOHNSON, MENNO WILLEM JOSE PRINS, OKKE OUWELTJES, STEVEN CHARLES DEANE, EDGAR MARTINUS VAN GOOL
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Publication number: 20150320531Abstract: An apparatus (100, 100?) is configured such that passage of a fluid (30) through an open port (136, 2604) of a distal probe tip (112, 112?) enables detection of a substance (116) that may be present on a surface (31, 33), e.g., a surface of a tooth, based on measurement of a signal correlating to a substance at least partially obstructing the passage of fluid (30) through the open port (136, 2604). The apparatus (100, 100?) includes a proximal pump portion (124) and at least one distal probe portion (110) configured to be immersed in another fluid (11), e.g., water in toothpaste foam. A corresponding system (3000) includes one or two such apparatuses (3100, 3200). A method of detecting the presence of a substance on a surface includes probing an interaction zone (17) for at least partial obstruction of flow of the fluid (30) through the distal probe tip (112, 112?). The distal probe tip (112, 112?) may have a structural configuration for preventing blocking of the open port (136, 2604).Type: ApplicationFiled: December 20, 2013Publication date: November 12, 2015Inventors: Edgar Martinus VAN GOOL, Johannes Hendrikus Maria SPRUIT, Mark Thomas JOHNSON, Menno Willem Jose PRINS, Okke OUWELTJES, Steven Charles DEANE
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Patent number: 9180452Abstract: A microfluidic resistance network (20) is disclosed that comprises a first microfluidic channel (112) in fluidic communication with a first fluid inlet (22); and a second microfluidic channel (114) in fluidic communication with a second fluid inlet (24); wherein the microfluidic resistance network (20) further comprises a cross-shaped dilution stage (100) having the first microfluidic channel (112) as a first dilution stage inlet and the second microfluidic channel (114) as a second dilution stage inlet, the dilution stage further comprising a first microfluidic outlet channel (122) for combining a portion of a first fluid from the first microfluidic channel with a second fluid from the second microfluidic channel (114) and a second microfluidic outlet channel (124) for receiving the remainder of first fluid. A microfluidic device (200) comprising such a microfluidic resistance network (20) is also disclosed.Type: GrantFiled: February 14, 2012Date of Patent: November 10, 2015Assignee: KONINKLIJKE PHILIPS N.V.Inventor: Steven Charles Deane
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Publication number: 20150313697Abstract: An apparatus (100, 100?) is configured such that passage of a fluid (30) through an open port of a distal tip (112, 112?) enables detection of a substance (116) that may be present on a surface (31, 33), e.g., a surface of a tooth, based on measurement of a signal correlating to a substance at least partially obstructing the passage of fluid (30) through the open port. The apparatus (100, 100?) includes a proximal pump portion (124) and at least one distal probe portion (110) configured to be immersed in another fluid (11), e.g., water in toothpaste foam. A corresponding system (3000) includes one or two such apparatuses (3100, 3200). A method of detecting the presence of a substance on a surface includes probing an interaction zone (17) for at least partial obstruction of flow of the second fluid medium (30) through a distal probe tip.Type: ApplicationFiled: December 20, 2013Publication date: November 5, 2015Inventors: MENNO WILLEM JOSE PRINS, JOHANNES HENDRIKUS MARIA SPRUIT, PETRUS THEODORUS JUTTE, MARK THOMAS JOHNSON, OLAF, THOMAS, JOHAN ANTONIE VERMEULEN, OKKE OUWELTJES, ADRIANUS WILHELMUS DIONISIUS MARIA VAN DEN BIJGAART, MARTIN JOHN EDWARDS, STEVEN CHARLES DEANE, EDGAR MARTINUS VAN GOOL
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Publication number: 20150305626Abstract: A dental implement (4) is presented that includes, in one embodiment, a light source (331) configured to emit an excitation light, and at least one optical unit for removing reflected excitation light and receiving a fluorescence light beam from the teeth. The dental implement further includes a detector (333) configured to receive the fluorescence light beam for detecting plaque and communicating a plaque identification signal of the teeth based on frequency domain lifetime measurements via a plaque detection circuit configured to reduce noise generated by a drive train at a drive train frequency (fdt). The plaque identification signal is demodulated to an intermediate frequency (fIF) such that the drive train frequency and the intermediate frequency are derived from a same master clock.Type: ApplicationFiled: December 19, 2013Publication date: October 29, 2015Inventors: STEVEN CHARLES DEANE, ALAN JAMES DAVIE
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Publication number: 20150305670Abstract: A detection apparatus (1000) enables detection of a substance (116) that may be present on the surface (31, 33) based on measurement of a stream probe signal correlating a substance (116) at least partially obstructing the passage of fluid (30, 35) through a stream probe (500) includes a distal optical gum detector transmission portion (620) and a distal optical gum detector reception portion (720) in a position to transmit and to receive, respectively, an optical signal controlled by a controller (2251), enables the controller (2251) to determine if an open port (526) of a distal tip (522) of the stream probe (500) is in contact with a substance (116) at least partially obstructing the passage of fluid (30, 35) through the open port (526) and not in contact with the gums of a subject or of a user of the detection apparatus (1000) to override false positive signals.Type: ApplicationFiled: December 20, 2013Publication date: October 29, 2015Inventors: JOHANNES HENDRIKUS MARIA SPRUIT, PETRUS THEODORUS JUTTE, OLAF THOMAS JOHAN ANTONIE VERMEULEN, ADRIANUS WILHELMUS DIONISIUS MARIA VAN DEN BIJGAART, MARTIN JOHN EDWARDS, STEVEN CHARLES DEANE, EDGAR MARTINUS VAN GOOL
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Publication number: 20150297085Abstract: A dental apparatus is provided. The dental apparatus includes a handle including a power button configured to place the dental apparatus in on/off configurations. A controller is housed within the handle and includes a mouth detection module and a tooth anomaly module. Electrical circuitry is in operable communication with the mouth detection module and tooth anomaly module and is configured to emit a low intensity excitation light having a first frequency and a high intensity excitation light which may have a second frequency. The low intensity excitation light is utilized to detect the presence of tooth material and the high intensity excitation light is utilized to detect the presence of a tooth anomaly or to treat a dental condition.Type: ApplicationFiled: December 13, 2013Publication date: October 22, 2015Inventors: PAUL RICHARD SIMONS, STEVEN CHARLES DEANE
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Publication number: 20150297089Abstract: A dental apparatus (4) is provided. The dental apparatus includes a handle (6). A controller (20) operably couples to the housing and includes a calibration module (44) configured to calibrate the dental apparatus. The dental apparatus emits a modulated excitation signal and the calibration module compares a detected modulated fluorescence signal with first and second reference values such that if a difference between the detected modulated fluorescence signal and the second reference signal is greater than a difference between the first reference value and the second reference value then the first reference value is updated.Type: ApplicationFiled: November 14, 2013Publication date: October 22, 2015Inventors: STEVEN CHARLES DEANE, OLAF THOMAS JOHAN ANTONIE VERMEULEN
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Patent number: 9030461Abstract: A thin film circuit comprises a plurality of thin film transistors, wherein the output response of the circuit is dependent on at least first (36) and second (34, 22) of the transistors. The first thin film transistor (36) is, in use, exposed to a source of illumination (2) and the second thin film transistor (16) is shielded from the source of illumination. The first thin film transistor (36) is operated in use as an analogue switch which provides an analogue output in response to a control input. The illumination of this transistor reduces the effect of dynamic threshold voltage variations, which can be a limitation to circuit performance.Type: GrantFiled: January 31, 2007Date of Patent: May 12, 2015Assignee: Koninklijke Philips N.V.Inventor: Steven Charles Deane
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Patent number: 8841924Abstract: The electrical properties of particle solutions can be investigated on a single particle basis by using micro fluidic channels. The impedance can be measured across the channel using at least one pair of conductive electrodes, at least one electrode of a pair being a fingered electrode having a plurality of fingers. The pattern of fingered electrodes creates a longer and more complicated measurement signal shape which leads to a significant improvement of measurement sensitivity. An application for the proposed technology is to significantly improve the measurement sensitivity of impedance measurements on blood cells, leading to a better differentiation between different types of white blood cells. Better measurement sensitivity also enables the measurement of smaller particles and higher throughput.Type: GrantFiled: January 27, 2010Date of Patent: September 23, 2014Assignee: Koninklijke Philips N.V.Inventors: Hermann Christian Reccius, Steven Charles Deane, Cees Van Berkel
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Publication number: 20130320999Abstract: A microfluidic resistance network (20) is disclosed that comprises a first microfluidic channel (112) in fluidic communication with a first fluid inlet (22); and a second microfluidic channel (114) in fluidic communication with a second fluid inlet (24); wherein the microfluidic resistance network (20) further comprises a cross-shaped dilution stage (100) having the first microfluidic channel (112) as a first dilution stage inlet and the second microfluidic channel (114) as a second dilution stage inlet, the dilution stage further comprising a first microfluidic outlet channel (122) for combining a portion of a first fluid from the first microfluidic channel with a second fluid from the second microfluidic channel (114) and a second microfluidic outlet channel (124) for receiving the remainder of first fluid. A microfluidic device (200) comprising such a microfluidic resistance network (20) is also disclosed.Type: ApplicationFiled: February 14, 2012Publication date: December 5, 2013Applicant: KONINKLIJKE PHILIPS N.V.Inventor: Steven Charles Deane
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Publication number: 20130323125Abstract: A measurement chip (100) is disclosed for use with a microfluidic resistance network (20) comprising a microfluidic sample preparation stage (34, 38), a sample outlet (42) and a waste outlet (44) both in fluidic communication with said preparation stage. The measurement chip comprises a sample channel (104) for receiving a sample from said sample outlet (42), the sample channel comprising measurement means (120, 130) and having a first fluidic resistance; and a waste channel (114) for receiving a waste stream from said waste outlet (44) and having a second fluidic resistance.Type: ApplicationFiled: February 9, 2012Publication date: December 5, 2013Applicant: KONINKLIJKE PHILIPS N.V.Inventor: Steven Charles Deane
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Patent number: 8111447Abstract: An electronic device comprises an array of electro wetting cells, each cell comprising first and second liquids (14,18) which are immiscible in each other. An electrode arrangement (60a,60b) is used to control the position of the interface between the first and second liquids, and comprises a first electrode and a second electrode. Each cell comprises a first switching device (64a) for applying a cell drive voltage to the first electrode (60a), and a second switching device (64b) for simultaneously applying the same cell drive voltage to the second electrode (60b). The cell circuit can be produced without requiring any additional control lines to those required for a single electrode and associated switching device, but the use of two switching devices enables the ultimate signal applied to each electrode to be different as a result of different capacitive effects. This then enables control over the way the liquid interface moves in response to control voltages.Type: GrantFiled: August 29, 2007Date of Patent: February 7, 2012Assignee: Samsung LCD Netherlands R&D Center B.V.Inventors: Peter Douglas Fairly, Steven Charles Deane, Carl Glasse
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Publication number: 20110279130Abstract: The electrical properties of particle solutions can be investigated on a single particle basis by using micro fluidic channels. The impedance can be measured across the channel using at least one pair of conductive electrodes, at least one electrode of a pair being a fingered electrode having a plurality of fingers. The pattern of fingered electrodes creates a longer and more complicated measurement signal shape which leads to a significant improvement of measurement sensitivity. An application for the proposed technology is to significantly improve the measurement sensitivity of impedance measurements on blood cells, leading to a better differentiation between different types of white blood cells. Better measurement sensitivity also enables the measurement of smaller particles and higher throughput.Type: ApplicationFiled: January 27, 2010Publication date: November 17, 2011Applicant: KONINKLIJKE PHILIPS ELECTRONICS N.V.Inventors: Hermann Christian Reccius, Steven Charles Deane, Cees Van Berkel
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Publication number: 20100053045Abstract: An active matrix display device comprises an array of display pixels, each pixel comprising: a current-driven light emitting display element (2); a drive transistor (22) for driving a current through the display element; a storage capacitor (24) for storing a voltage to be used for addressing the drive transistor; and an addressing transistor (16) for coupling data from a data line (6) to the pixel during pixel addressing. The addressing transistor (16) comprises a phototransistor, and the data line (6) is used for external monitoring of the phototransistor. This device design uses a pixel-addressing transistor (16) as the optical feedback element. This addressing transistor is a fundamental requirement of an active matrix-addressing scheme, and its use as a feedback element can therefore avoid any addition pixel complexity to implement an optical feedback function.Type: ApplicationFiled: November 21, 2007Publication date: March 4, 2010Applicant: KONINKLIJKE PHILIPS ELECTRONICS N.V.Inventors: David Andrew Fish, Nigel David Young, Hugo Johan Cornelissen, Steven Charles Deane
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Publication number: 20100045650Abstract: An active matrix display device comprises an array of display pixels, each pixel comprising a current-driven light emitting display element (2), a drive transistor (22) for driving a current through the display element (2) and a storage capacitor (30) for storing a voltage to be used for addressing the drive transistor (22). A discharge transistor (36) is used for discharging the storage capacitor (30) thereby to switch off the drive transistor in dependence on the light output of the display element (2). Reading circuitry (70) is used for monitoring the charge on a discharge capacitor (40), the pixel data is corrected in response to the reading circuitry measurements. This can extend the lifetime of the display.Type: ApplicationFiled: November 21, 2007Publication date: February 25, 2010Applicant: KONINKLIJKE PHILIPS ELECTRONICS N.V.Inventors: David Andrew Fish, Steven Charles Deane, Nicola Bramante
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Publication number: 20090315877Abstract: A thin film circuit comprises a plurality of thin film transistors, wherein the output response of the circuit is dependent on at least first (36) and second (34, 22) of the transistors. The first thin film transistor (36) is, in use, exposed to a source of illumination (2) and the second thin film transistor (16) is shielded from the source of illumination. The first thin film transistor (36) is operated in use as an analogue switch which provides an analogue output in response to a control input. The illumination of this transistor reduces the effect of dynamic threshold voltage variations, which can be a limitation to circuit performance.Type: ApplicationFiled: January 31, 2007Publication date: December 24, 2009Applicant: Koninklijke Philips Electronics N.V.Inventor: Steven Charles Deane