Patents by Inventor Ke Guo
Ke Guo 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: 20230257736Abstract: Disclosed is a method for assessing the transduction efficiency and/or specificity of vectors at single cell level.Type: ApplicationFiled: June 11, 2021Publication date: August 17, 2023Inventors: Wei Leong Chew, Choong Tat Keng, Ke Guo, Daryl Lim
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Publication number: 20220287731Abstract: A shockwave device for treating heart valve or vascular calcification, includes a guiding tip and a plurality of balloons. At least two balloons of the plurality of balloons are connected to the guiding tip. At least one balloon of the plurality of balloons includes: at least one balloon body; at least one through hole through which liquid for transmitting shockwaves is filled into the balloon; and at least one shockwave generator for receiving electrical voltage/electrical current pulses to generate shockwaves. The shockwave generator includes at least one electrode cable and at least one electrode probe. The shockwave device could inhibit attenuation of shockwaves during transmitting. A method for treating heart valve or vascular calcification of an animal has been provided.Type: ApplicationFiled: April 30, 2020Publication date: September 15, 2022Inventors: Jian Fong TAN, Yi ZHANG, Kongrong Karl PAN, Ke GUO
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Patent number: 11372122Abstract: A high-resolution processing method for seismic data based on inverse multi-resolution singular value decomposition includes the steps of: step 1: obtaining a single-trace seismic signal X as a raw signal; step 2: decomposing the seismic signal by using MRSVD algorithm to obtain a series of detailed singular values and inversely recursing the detailed singular values layer by layer to obtain a new detailed signal and an approximate signal; and step 3: sequentially superimposing the new detailed signal on the raw signal, layer by layer, to compensate the high-frequency component of the seismic signal so as to obtain a high-resolution seismic signal.Type: GrantFiled: January 18, 2020Date of Patent: June 28, 2022Assignee: Chengdu University of TechnologyInventors: Hui Chen, Lingqi Lu, Ying Hu, Xuping Chen, Youhua Wei, Ke Guo, Hongyan Qian
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Patent number: 11226415Abstract: Systems, methods, and computer-readable media are disclosed for camera modules having integrated time of flight sensors. In one embodiment, an integrated sensor module may include a substrate, a molding compound disposed on the substrate, and a camera sensor disposed on the substrate. The integrated sensor module may include a vertical-cavity surface-emitting laser assembly (VCSEL) disposed on the molding compound and separated from the substrate by a first distance, and a single photon avalanche photodiode assembly (SPAD) disposed on the molding compound and separated from the substrate by the first distance. The camera sensor may be configured to detect a first portion of light emitted by the VCSEL and reflected from an object, and the SPAD may be configured to detect a second portion of light emitted by the VCSEL and reflected from the object.Type: GrantFiled: September 14, 2020Date of Patent: January 18, 2022Assignee: AMAZON TECHNOLOGIES, INC.Inventors: Fubin Song, Jun Ge, Jianhua Du, Ke Guo, Chaoran Yang
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Publication number: 20200233108Abstract: A high-resolution processing method for seismic data based on inverse multi-resolution singular value decomposition includes the steps of: step 1: obtaining a single-trace seismic signal X as a raw signal; step 2: decomposing the seismic signal by using MRSVD algorithm to obtain a series of detailed singular values and inversely recursing the detailed singular values layer by layer to obtain a new detailed signal and an approximate signal; and step 3: sequentially superimposing the new detailed signal on the raw signal, layer by layer, to compensate the high-frequency component of the seismic signal so as to obtain a high-resolution seismic signal.Type: ApplicationFiled: January 18, 2020Publication date: July 23, 2020Inventors: Hui CHEN, Lingqi LU, Ying HU, Xuping CHEN, Youhua WEI, Ke GUO, Hongyan QIAN
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Patent number: 10671197Abstract: An array substrate includes a substrate; scan lines and data lines arranged on the substrate and intersecting one another to define sub-pixels, each of which includes a pixel electrode including strip-like electrodes whose long axes of a same row are parallel to one another. Extension lines of long axes of strip-like electrodes in sub-pixels in any two adjacent rows intersect one another. The touch electrode is electrically connected to at least one touch signal line. Each touch signal line includes straight-line portions and fold-line portions. Two adjacent straight-line portions are connected by one fold-line portion. Any straight-line portion is parallel to long axes of strip-like electrodes in sub-pixels in a same row. Extension lines of fold-line portions intersect long axes of strip-like electrodes. Orthographic projections of fold-line portions on the substrate overlap orthographic projections of scan lines on the substrate. Fold-line portions are not perpendicular to scan lines.Type: GrantFiled: November 14, 2018Date of Patent: June 2, 2020Assignee: XIAMEN TIANMA MICRO-ELECTRONICS CO., LTD.Inventors: Ke Guo, Huangyao Wu, Hongbo Zhou, Zhaokeng Cao, Xuan Lu, Kangpeng Yang, Yumin Xu
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Publication number: 20190243495Abstract: An array substrate includes a substrate; scan lines and data lines arranged on the substrate and intersecting one another to define sub-pixels, each of which includes a pixel electrode including strip-like electrodes whose long axes of a same row are parallel to one another. Extension lines of long axes of strip-like electrodes in sub-pixels in any two adjacent rows intersect one another. The touch electrode is electrically connected to at least one touch signal line. Each touch signal line includes straight-line portions and fold-line portions. Two adjacent straight-line portions are connected by one fold-line portion. Any straight-line portion is parallel to long axes of strip-like electrodes in sub-pixels in a same row. Extension lines of fold-line portions intersect long axes of strip-like electrodes. Orthographic projections of fold-line portions on the substrate overlap orthographic projections of scan lines on the substrate. Fold-line portions are not perpendicular to scan lines.Type: ApplicationFiled: November 14, 2018Publication date: August 8, 2019Inventors: Ke GUO, Huangyao WU, Hongbo ZHOU, Zhaokeng CAO, Xuan LU, Kangpeng YANG, Yumin XU
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Patent number: 10088114Abstract: The invention provides a lighting device comprising a light source and a light converter, wherein the light source is configured to provide light source light, wherein the light converter comprises a donor luminescent material able to convert at least part of the first light source light into donor light, and a acceptor luminescent material, wherein the donor luminescent material and acceptor luminescent material are configured as donor-acceptor luminescent materials which, upon excitation of the donor luminescent material by the light source light provide acceptor light having an acceptor light spectral distribution different from a donor light spectral distribution of the donor light, wherein the light converter further comprises a periodic plasmonic antenna array configured to enhance generation of said donor light, and wherein the lighting device is configured to provide lighting device light comprising said donor light and said acceptor light.Type: GrantFiled: May 22, 2017Date of Patent: October 2, 2018Assignee: PHILIPS LIGHTING HOLDING B.V.Inventors: Manuela Lunz, Marcus Antonius Verschuuren, Gabriel Lozano, Ke Guo, Dirk Kornelis Gerhardus De Boer
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Patent number: 9995460Abstract: There is provided an illumination device comprising: a wavelength converting layer comprising a photon emitting donor configured to absorb energy to reach an excited state, and a photon emitting acceptor; an energy source configured to provide energy to the donor such that the donor reach the excited state; wherein the donor and the acceptor are selected and arranged at a distance from each other such that non-radiative transfer of excitation energy from the donor to the acceptor occur, and wherein the acceptor is configured to emit a photon at a second wavelength after the transfer of energy; the illumination device further comprising a periodic plasmonic antenna array, arranged on the substrate and embedded within the wavelength converting layer, and comprising a plurality of individual antenna elements arranged in an antenna array plane, the plasmonic antenna array being configured to support a first lattice resonance at the second wavelength, arising from coupling of localized surface plasmon resonances iType: GrantFiled: May 18, 2015Date of Patent: June 12, 2018Assignee: Koninklijke Philips N.V.Inventors: Marcus Antonius Verschuuren, Manuela Lunz, Ke Guo, Gabriel Sebastian Lozano Barbero, Remco Van Brakel
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Publication number: 20170350563Abstract: The invention provides a lighting device comprising a light source and a light converter, wherein the light source is configured to provide light source light, wherein the light converter comprises a donor luminescent material able to convert at least part of the first light source light into donor light, and a acceptor luminescent material, wherein the donor luminescent material and acceptor luminescent material are configured as donor-acceptor luminescent materials which, upon excitation of the donor luminescent material by the light source light provide acceptor light having an acceptor light spectral distribution different from a donor light spectral distribution of the donor light, wherein the light converter further comprises a periodic plasmonic antenna array configured to enhance generation of said donor light, and wherein the lighting device is configured to provide lighting device light comprising said donor light and said acceptor light.Type: ApplicationFiled: May 22, 2017Publication date: December 7, 2017Inventors: Manuela LUNZ, Marcus Antonius VERSCHUUREN, Gabriel LOZANO, Ke GUO, Dirk Kornelis Gerhardus DE BOER
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Publication number: 20170089546Abstract: There is provided an illumination device comprising: a wavelength converting layer comprising a photon emitting donor configured to absorb energy to reach an excited state, and a photon emitting acceptor; an energy source configured to provide energy to the donor such that the donor reach the excited state; wherein the donor and the acceptor are selected and arranged at a distance from each other such that non-radiative transfer of excitation energy from the donor to the acceptor occur, and wherein the acceptor is configured to emit a photon at a second wavelength after the transfer of energy; the illumination device further comprising a periodic plasmonic antenna array, arranged on the substrate and embedded within the wavelength converting layer, and comprising a plurality of individual antenna elements arranged in an antenna array plane, the plasmonic antenna array being configured to support a first lattice resonance at the second wavelength, arising from coupling of localized surface plasmon resonances iType: ApplicationFiled: May 18, 2015Publication date: March 30, 2017Inventors: Marcus Antonius Verschuuren, Manuela Lunz, Ke Guo, Gabriel Sebastian Lozano Barbero, Remco Van Brakel