Patents Assigned to University
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Patent number: 10442689Abstract: The present disclosure relates to a microwave reforming apparatus for gas reforming, and provides a new technology of converting carbon dioxide which is a main greenhouse gas generated during combustion, pyrolysis/gasification, and operation of fossil fuels, methane, and dispersions thereof into high-quality fuels. A microwave reforming apparatus according to the present disclosure uses a carbon receptor and thus can solve the conventional problem of price of catalyst and also enables compactification of a device, rapid startup and response time in several seconds, and application of various kinds of product gases including polymer hydrocarbon. Also, the microwave reforming apparatus according to the present disclosure uses its own internal reaction heat at the time of reforming and thus can maintain the optimum operating conditions for a wide range of flow rate and gas properties.Type: GrantFiled: November 22, 2017Date of Patent: October 15, 2019Assignee: Industry-Academic Cooperation Foundation Chosun UniversityInventor: Young-Nam Chun
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Patent number: 10441805Abstract: Methods and apparatus for a three-stage atrial cardioversion therapy that treats atrial arrhythmias within pain tolerance thresholds of a patient. An implantable therapy generator adapted to generate and selectively deliver a three-stage atrial cardioversion therapy and at least two leads, each having at least one electrode adapted to be positioned proximate the atrium of the patient. The device is programmed for delivering a three-stage atrial cardioversion therapy via both a far-field configuration and a near-field configuration of the electrodes upon detection of an atrial arrhythmia. The three-stage atrial cardioversion therapy includes a first stage for unpinning of one or more singularities associated with an atrial arrhythmia, a second stage for anti-repinning of the one or more singularities, both of which are delivered via the far-field configuration of the electrodes, and a third stage for extinguishing of the one or more singularities delivered via the near-field configuration of the electrodes.Type: GrantFiled: October 9, 2017Date of Patent: October 15, 2019Assignee: The Washington UniversityInventors: Igor R. Efimov, Wenwen Li, Ajit Janardhan
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Patent number: 10443907Abstract: An ambient water condensing apparatus that extracts water vapor from ambient air utilizing a thermoelectric device, a superhydrophobic and/or superhydrophilic radiating condensing surface and a heat sink for providing point of source irrigation or drinking water using conventional and/or sustainable energy supplies. The thermoelectric device is thermally coupled intermediate of the condensing surface and the heat sink, and in particular a cold side of the thermoelectric device is thermally connected to the condensing surface and a hot side of the thermoelectric device is thermally connected to the heat sink. The water condensing apparatus may also include at least one fan element that cools the heat sink and introduces additional air to the condensing surface. The thermoelectric device and the fan element may be powered by any suitable electrical energy source, such as by solar energy, wind energy or grid power.Type: GrantFiled: October 29, 2018Date of Patent: October 15, 2019Assignee: The University of TulsaInventors: Todd P. Otanicar, Jared Starkweather
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Patent number: 10447087Abstract: A wireless power transmission apparatus for high efficiency energy charging, includes a resonator configured to transmit power, and a power supply unit configured to supply power to the resonator. The apparatus further includes a first switching unit configured to connect the resonator to the power supply unit, and disconnect the resonator from the power supply unit, and a controller configured to control the first switching unit based on an amount of current flowing into the resonator.Type: GrantFiled: May 1, 2017Date of Patent: October 15, 2019Assignees: Samsung Electronics Co., Ltd., Industry-Academic Cooperation Foundation, Dankook UniversityInventors: Ui Kun Kwon, Sang Joon Kim, Seung Keun Yoon, Yeong Seok Ko, Shi Hong Park
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Patent number: 10442944Abstract: Provided is a novel photoinitiator in the form of a hybrid nanoparticle constructed of a semiconductor and metallic regions, and uses thereof.Type: GrantFiled: June 29, 2016Date of Patent: October 15, 2019Assignee: Yissum Research Development Company of the Hebrew University of Jerusalem Ltd.Inventors: Uri Banin, Hermona Soreq, Shlomo Magdassi, Nir Waiskopf, Yuval Ben-Shahar, Amol Ashok Pawar, Shira Halivni
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Patent number: 10448128Abstract: A wavelength routing SW is a large-scale optical switch device of a conventional technique, and it requires as many wavelength-tunable light sources as the number of input ports. For the wavelength-tunable light sources to achieve a stable oscillating operation across a wide wavelength range, a complicated control mechanism is necessary. This has been an obstacle in providing a large-scale optical switch device in terms of cost and circuit scale. A wavelength routing SW in the present disclosure includes N wavelength group generators, a splitting-selection unit, and MN tunable filters. Each wavelength group generator includes M fixed-wavelength light sources. Inexpensive general-purpose devices that require no control mechanism for wavelength tuning can be used as the fixed-wavelength light source. The channel loss in the optical switch device can also be reduced by using light sources with a limited narrow range of tunable wavelengths and the wavelength-dependent output port selecting function of an AWG.Type: GrantFiled: January 26, 2017Date of Patent: October 15, 2019Assignee: National University Corporation Nagoya UniversityInventors: Ken-ichi Sato, Hiroshi Hasegawa, Yojiro Mori, Koh Ueda
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Patent number: 10443147Abstract: A method of forming a one-dimensional nanoarray of In2O3 nanowires on indium foil is disclosed. The nanowires of In2O3 have diameters of 30 nm-50 nm and lengths of 100 nm-200 nm, and are attached to and substantially perpendicular to the surface of the indium foil. The In2O3 nanoarray may have a nanowire density of 200-300 nanowires per ?m2 indium foil and a band gap energy of 2.63-3.63 eV. The In2O3 nanoarray may be formed by anodization of indium foil in an electrochemical cell subjected to a voltage of 15-25 V at room temperature.Type: GrantFiled: June 6, 2018Date of Patent: October 15, 2019Assignee: King Fahd University of Petroleum and MineralsInventors: Ahsanulhaq Qurashi, Ibrahim Khan
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Patent number: 10447277Abstract: An integrated logic device includes a channel having an interconnect section and a pair of spin-orbit segments connected to the interconnect section at either end of the interconnect section. A P structure includes a P magnet disposed on a surface of a spin-orbit segment. A tunneling barrier is disposed between the P magnet and a Rp magnetic reference layer. A Q structure includes a Q magnet disposed on a surface of the other spin-orbit segment. A tunneling barrier is disposed between the Q magnet and a Rq magnetic reference layer. A method of integrated logic spin-orbit perpendicular-anisotropy (SOPE) gate device operation is also described.Type: GrantFiled: September 4, 2018Date of Patent: October 15, 2019Assignee: University of RochesterInventor: Mohammad Kazemi
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Patent number: 10441541Abstract: The invention provides methods and compositions for treating or inhibiting the development of osteoarthritis in a subject having osteoarthritis or at risk for developing osteoarthritis and for stimulating or increasing cartilage production or formation in a subject. The methods feature administering to the subject a therapeutically effective amount of a composition comprising one or more agent from among adenosine, an adenosine receptor agonist, and an agent that upregulates or increases the amount of or the biological activity of adenosine, or an analog or derivative thereof. The adenosine receptor may be an A1, A2A, A2B and A3 adenosine receptor. The agent that upregulates or increases the amount of or the biological activity of adenosine may be dipyridamole or ticagrelor. The composition may be administered via intraarticular injection such as injection into the synovial fluid of a joint.Type: GrantFiled: September 12, 2016Date of Patent: October 15, 2019Assignee: New York UniversityInventors: Bruce N. Cronstein, Carmen Corciulo
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Patent number: 10440874Abstract: An agricultural device that can include a frame; and a plurality of roller-crimping devices supported by the frame arranged in at least one row oriented in a direction that is transverse to a direction of travel of the agricultural device. Each of the plurality of roller-crimping devices having an exterior surface configured to at least partially crush stems of residual plant matter, and being individually movably mounted to the frame such that each of the plurality of roller-crimping devices will move at least vertically with respect to the frame when subjected to a temporary increase in resistance caused by an encounter with a non-uniform region in the field.Type: GrantFiled: April 6, 2017Date of Patent: October 15, 2019Assignee: University of Tennessee Research FoundationInventor: Shawn Butler
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Patent number: 10447234Abstract: A monolithic integration of phase change material (PCM) switches with a MEMS resonator is provided to implement switching and reconfiguration functionalities. MEMS resonator includes a piezoelectric material to control terminal connections to the electrodes. The PCM is operable between an ON state and an OFF state by application of heat, which causes the phase change material to change from an amorphous state to a crystalline state or from a crystalline state to an amorphous state, the amorphous state and the crystalline state each associated with one of the ON state and the OFF state. A method of fabricating the MEMS resonator with phase change material is provided. A reconfigurable filter system using the MEMS resonators is also provided.Type: GrantFiled: April 17, 2015Date of Patent: October 15, 2019Assignee: Northeastern UniversityInventors: Matteo Rinaldi, Gwendolyn Hummel
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Patent number: 10441215Abstract: One embodiment includes an image acquisition circuit that accesses a pre-treatment and a post-treatment image of a region of tissue demonstrating non-small cell lung cancer (NSCLC), a segmentation and registration circuit that annotates the tumor represented in the images, and that registers the pre-treatment image with the post-treatment image; a feature extraction circuit that selects a set of pre-treatment and a set of post-treatment quantitative vessel tortuosity (QVT) features from the registered image; a delta-QVT circuit that generates a set of delta-QVT features by computing a difference between the set of post-treatment QVT features and the set of pre-treatment QVT features; and a classification circuit that generates a probability that the region of tissue will respond to immunotherapy based on the difference, and that classifies the region of tissue as a responder or non-responder. Embodiments may generate an immunotherapy treatment plan based on the classification.Type: GrantFiled: February 9, 2018Date of Patent: October 15, 2019Assignee: Case Western Reserve UniversityInventors: Anant Madabhushi, Yuanqi Xie, Vamsidhar Velcheti
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Patent number: 10446875Abstract: An electrolyte for Li-ion and other secondary electrochemical cells includes an FSI anion and at least one of methyltriethylphosphonium; trimethylisobutylphosphonium; methyltributylphosphonium; and trihexyltetradecylphosphonium. The electrolyte uniquely enables stable cell cycling even when water is present in the electrolyte at levels as high as 5000 ppm. Methyltriethylphosphonium and trimethylisobutylphosphonium-containing electrolytes are particularly effective in this water-stabilizing capacity.Type: GrantFiled: May 26, 2017Date of Patent: October 15, 2019Assignees: Toyota Motor Engineering & Manufacturing North America, Inc., Deakin UniversityInventors: Nikhilendra Singh, Timothy S. Arthur, Kensuke Takechi, Patrick Howlett, Maria Forsyth, Robert Kerr, Fuminori Mizuno
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Patent number: 10447249Abstract: A sequential state element (SSE) is disclosed. In one embodiment, an SSE includes a differential sense flip flop (DSFF) and a completion detection circuit (CDC) operably associated with the DSFF. The DSFF is configured to generate a differential logical output. During a normal operational mode, the DSFF is synchronized by a clock signal to provide a differential logical output in a differential output state in accordance with a data input or in a precharge state based on the clock signal. The differential logical output is provided in a differential output state in accordance with a test input during a scan mode. The CDC is configured to generate a test enable input during the scan mode that indicates the scan mode once the differential logical output is in the differential output state. Accordingly, another SSE can be asynchronously triggered to operate in the scan mode without a separate scan clock.Type: GrantFiled: May 23, 2016Date of Patent: October 15, 2019Assignee: Arizona Board of Regents on Behalf of Arizona State UniversityInventors: Sarma Vrudhula, Niranjan Kulkarni
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Patent number: 10442817Abstract: The present invention includes novel RAD52 inhibitors for preventing or treating cancers in a subject in need thereof. The present invention further includes a method of preventing or treating cancers in a subject in need thereof, the method comprising administering to the subject an effective amount of a compound of the invention. In certain embodiments, the subject is further administered at least one additional therapeutic agent.Type: GrantFiled: June 3, 2016Date of Patent: October 15, 2019Assignee: Drexel UniversityInventor: Alexander V. Mazin
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Patent number: 10444312Abstract: Disclosed is a magnetic resonance imaging (MRI) system. The disclosed MRI system includes a system controller capable of separately acquiring MR image signals of different elements existing in an object. The system controller includes a first system controller capable of acquiring an MR signal of a first element, and a second system controller capable of acquiring an MR signal of a second element different from the first element. The first system controller and the second system controller are physically separated. The first system controller and the second system controller control a first radio frequency (RF) coil element and a second RF coil element of an RF coil, respectively.Type: GrantFiled: November 14, 2016Date of Patent: October 15, 2019Assignees: Gachon University of Industry-Academic Cooperation Foundation, Gil Medical CenterInventors: Jun-Young Chung, Kyoung-Nam Kim, Yuenchul Ryu, Yeji Han
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Patent number: 10441574Abstract: The present invention generally relates to a method of treating or preventing an endoplasmic reticulum stress disorder in subjects, such as a method of treating or preventing Wolfram syndrome.Type: GrantFiled: November 13, 2015Date of Patent: October 15, 2019Assignee: Washington UniversityInventors: Fumihiko Urano, Simin Lu
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Patent number: 10443049Abstract: Disclosed are variants of ACE2, pharmaceutical compositions comprising the variants of ACE2, and treatment methods for reducing Angiotensin II (1-8) plasma levels and/or increasing Angiotensin (1-7) plasma levels in a subject in need thereof. The disclosed variants of ACE2 may include polypeptide fragments of ACE2 having ACE2 activity for converting AngII(1-8) to Ang(1-7). Suitable subjects suitable for the disclosed methods of treatment may include subjects having or at risk for developing diabetic and non-diabetic chronic kidney disease, acute renal failure and its prevention, chronic kidney disease, severe hypertension, scleroderma and its skin, pulmonary, kidney and hypertensive complications, malignant hypertension, renovascular hypertension secondary to renal artery stenosis, idiopathic pulmonary fibrosis, liver fibrosis such as in liver cirrhosis patients, an aortic aneurysm, cardiac fibrosis and remodeling, left ventricular hypertrophy, and an acute stroke.Type: GrantFiled: January 24, 2018Date of Patent: October 15, 2019Assignee: Northwestern UniversityInventors: Daniel Batlle, Jan Wysocki
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Patent number: 10444232Abstract: Diagnostic systems, methods, and devices employing low-cost handheld components are disclosed herein. A diagnostic system can include a diagnostic device that is configured to perform one or more assays on a fluid sample, such as a whole blood sample, in one or more microfluidic channels or chambers. The diagnostic device can move the fluid sample into or through the one or more microfluidic channels or chambers without using any electrical power, for example, using manual actuation to generate a positive or negative pressure within the diagnostic device. The diagnostic device can have a connector for interfacing with a separate handheld unit that can provide power and data processing. For example, the separate handheld unit can be a smartphone or PDA, and the connector can interface with an existing input/output port of the unit to draw power and/or transmit data.Type: GrantFiled: August 13, 2015Date of Patent: October 15, 2019Assignee: The Trustees of Columbia University in the City of New YorkInventors: Tiffany Guo, Samuel K. Sia, Jeisun Shi Xie, Fanxing Meng, Keith Yeager
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Patent number: 10442712Abstract: Embodiments herein relate to a membrane bioreactor for strengthening membrane fouling control and method thereof. The embodiments may solve problems associated with existing techniques in the field of water treatment. The membrane bioreactor may include a reactor wall, a membrane element, a collecting pipe, a water collecting pipe, a vacuum table, a suction pump, a cleaning unit, an air compressor, an aeration pipe, an aeration head, an inlet pipe, and a drain pipe. The existing techniques related to membrane fouling control has problems such as complexity to operate, difficulties to clean online, and uses of chemicals, which may cause secondary pollution. The embodiments relate to a device that includes a set of automatic mechanical transmission units.Type: GrantFiled: June 23, 2017Date of Patent: October 15, 2019Assignee: Nanjing University, Nanjing University & Yancheng Academy of Environmental Protection Technology and EngineeringInventors: Jinnan Wang, Chao Qi, Yaohua Lin