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1.
公开(公告)号:US20230372289A1
公开(公告)日:2023-11-23
申请号:US18034587
申请日:2021-10-29
申请人: CONSEJO SUPERIOR DE INVESTIGACIONES CIENTÍFICAS (CSIC) , UNIVERSITAT POLITECNICA DE VALENCIA , UNIVERSIDAD DE NAVARRA , FUNDACIÓN PARA LA INVESTIGACIÓN MÉDICA APLICADA
发明人: Eva Maria RIVERO BUCETA , Pablo BOTELLA ASUNCIÓN , Carla VIDAURRE AGUT , Jose María BENLLOCH BAVIERA , Beatriz NOVOA GARCÍA , Antonio FIGUERAS HUERTA , Gloria GONZÁLEZ ASEGUINOLAZA , Cristian SMERDOU PICAZO , Antonio A. PINEDA LUCENA , Felipe Luis PRÓSPER CARDOSO , Josepmaría ARGEMÍ BALLBÉ
IPC分类号: A61K31/365 , A61P29/00
CPC分类号: A61K31/365 , A61P29/00
摘要: AG5 andrographolide derivative for use in the treatment of the inflammatory reaction caused by a cytokine storm, particularly produced by CoViD-19, bacteria with superantigens or by CAR-T, TIL or BiTE cell therapies.
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2.
公开(公告)号:US20230055050A1
公开(公告)日:2023-02-23
申请号:US17793818
申请日:2021-01-20
发明人: Jose Maria BENLLOCH BAVIERA , Antonio Javier GONZALEZ MARTINEZ , Victor ILISIE , John BARRIO TOALA , Efthymios LAMPROU
摘要: A device for the detection of gamma rays presents a high resolution in the three-dimensional position of the impact of the gamma ray within one or more scintillation crystal blocks coupled to an array of photosensors, for the determination of the impact energy of said gamma ray, the determination of the instant in time when said impact occurred, the interaction depth and the determination of the time-of-flight. Advantageously, in said device, the scintillation crystal detection blocks are optically isolated, in such a way that the scintillation light can only exit said blocks via the output region; and the scintillation crystal detection blocks and the array of photosensors are disposed in direct optical coupling.
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3.
公开(公告)号:US10723631B2
公开(公告)日:2020-07-28
申请号:US16299704
申请日:2019-03-12
申请人: Saudi Arabian Oil Company , Universitat Politecnica De Valencia , Consejo Superior De Investigaciones Cientificas
发明人: Raed Hasan Abudawoud , Avelino Corma Canos , M. Teresa Portilla Ovejero , Vicente J. Margarit Benavent , M. Teresa Navarro Villalba , M. Cristina Martinez Sanchez , Ibrahim M. Al-Zahrani
IPC分类号: C01B39/02 , C07C15/08 , B01J29/80 , C01B39/04 , B01J29/26 , B01J29/48 , B01J37/02 , B01J37/04 , B01J37/08 , C01B39/26 , C01B39/38 , C07C4/18 , C07C6/12 , B01J29/22 , B01J29/18 , B01J35/00 , B01J29/46 , B01J29/24 , B01J29/44 , B01J29/40 , C01B39/40 , B01J29/06
摘要: A method of forming composite zeolite catalyst particles includes combining a silicon source, an aqueous organic structure directing agent having a polyquaternary ammonium compound, water and an aluminum source to form a catalyst gel. The method also includes heating the catalyst gel to form the composite zeolite catalyst particle having an intergrowth region with a mixture of both Mordenite crystals and ZSM-5 crystals. An associated method of making xylene includes feeding heavy reformate to a reactor, the reactor containing the composite zeolite catalyst particles, and producing xylene by simultaneously performing dealkylation and transalkylation of the heavy reformate in the reactor, where each composite zeolite catalyst particle is able to catalyze both the dealkylation and transalkylation reactions.
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公开(公告)号:US10672145B2
公开(公告)日:2020-06-02
申请号:US15563312
申请日:2016-03-29
申请人: Consejo Superior De Investigaciones Cientificas (CSIC) , Universitat Politecnica de Valencia , Universitat de Valencia
发明人: Francisco Javier Albiol Colomer , Alberto Corbi Bellot , Celso Bellot Romero , Alberto Albiol Colomer
摘要: Device for extracting three-dimensional information from radiographic images of an object; process for calibrating said device; and process for generating said radiographic images includes an X-ray emitter and an X-ray sensor. A contour sensor represents contour points of an object by means of the radiation emitted or reflected by the object. The device also has a calibration framework with X-ray markers, and contour markers. The processes are based on taking contour and X-ray images of the calibration framework, first without an object of study and subsequently with one, taking into account the information provided by the markers, and the fact that the contour sensor is placed in the same manner with respect to the X-ray emitter in all the images taken.
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公开(公告)号:US10228471B2
公开(公告)日:2019-03-12
申请号:US15586908
申请日:2017-05-04
申请人: General Equipment for Medical Imaging S.A. , West Virginia University , Consejo Superior de Investigaciones Cientificas (CSIC) , Universitat Politecnica de Valencia , BRUKER BIOSPIN AG
摘要: This disclosure describes an imaging radiation detection module with novel configuration of the scintillator sensor allowing for simultaneous optimization of the two key parameters: detection efficiency and spatial resolution, that typically cannot be achieved. The disclosed device is also improving response uniformity across the whole detector module, and especially in the edge regions. This is achieved by constructing the scintillation modules as hybrid structures with continuous (also referred to as monolithic) scintillator plate(s) and pixelated scintillator array(s) that are optically coupled to each other and to the photodetector. There are two basic embodiments of the novel hybrid structure: (1) the monolithic scintillator plate is at the entrance for the incoming radiation, preferably gamma rays, and the pixelated array placed behind the plate, all in optical contact with the photodetector, (2) the order of the scintillator components is reversed with the pixelated scintillation plate placed in front of the monolithic plate.
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公开(公告)号:US20180267129A1
公开(公告)日:2018-09-20
申请号:US15516587
申请日:2015-10-02
发明人: Angel Belenguer Martinez , Elena Diaz Caballero , Hector Esteban Gonzalez , Vicente Enrique Boria Esbert
CPC分类号: G01R35/005 , G01R27/28
摘要: The present invention discloses a calibration device of vector network analyzers implemented by means of SIC, ESIW and microstrip technology. The calibration device of the present invention has the special characteristic of being a modular device comprising connection modules (5) which are connected, on the one hand, to the vector analyzers and, on the other hand, to calibration modules (which may be SIC, ESIW or microstrip modules).This modular configuration allows that the noises intrinsic to the connection with the analyzer (including transfers to microstrip, SIC, etc.) are the same in all calibration measurements, making it possible to detect and/or eliminate the noises associated to said connection.
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公开(公告)号:US20180132741A1
公开(公告)日:2018-05-17
申请号:US15522590
申请日:2015-10-29
申请人: Fundacion Para La Investigacion Biomedica Del Hospital Gregorio Maranon , Universitat Politecnica De Valencia
发明人: Andreu Martinez Climent , Felipe Atienza Fernandez , Angel Arenal , Francisco Fernandez Aviles , Maria S. Guillem Sanchez
IPC分类号: A61B5/046 , A61B5/0408 , A61B5/04 , G16H50/50
CPC分类号: A61B5/046 , A61B5/0035 , A61B5/0044 , A61B5/04 , A61B5/04012 , A61B5/0402 , A61B5/0408 , A61B5/04085 , A61B5/0422 , A61B5/7278 , A61B18/1492 , A61B2576/023 , G06T17/00 , G16H50/50
摘要: The device for locating cardiac arrhythmias comprises a three-dimensional reconstruction of the patient's torso and a number of surface electrodes, wherein the three-dimensional reconstruction of the patient's torso is generated through a number of images obtained by means of at least one camera. In particular, the device comprises elements for locating the surface electrodes, which detect the position of the electrodes with respect to the patient's torso, and data processing elements that generate, on the basis of the three-dimensional reconstruction and the position of the electrodes, a surface electrocardiographic map, and said surface electrocardiographic map has a number of data corresponding to readings of the surface electrodes related to areas of the three-dimensional reconstruction.
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公开(公告)号:US20240100495A1
公开(公告)日:2024-03-28
申请号:US17768924
申请日:2020-10-16
申请人: HTE GmbH The High Throughput Experimentation Company , Consejo Superior de Investigaciones Cientificas (CSIC) , Universitat Politecnica de Valencia (UPV)
发明人: Marius Kirchmann , Edgar Jordan , Alfred Haas , Sascha Hubert Vukojevic , Michael Dejmek , Oliver Koechel , Avelino Corma
CPC分类号: B01J8/087 , B01J8/0015 , C10G11/16 , B01J2208/00292 , B01J2208/00752
摘要: The invention relates to a process for carrying out reactions on preheated particles, comprising: (a) providing particles in a buffer container; (b) feeding the particles from the buffer container into a reactor via a feed line; (c) withdrawing the particles from the reactor, wherein the particles are heated in the feed line.
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公开(公告)号:US11815455B2
公开(公告)日:2023-11-14
申请号:US17621481
申请日:2020-07-06
发明人: José Miguel Avellá Oliver , Ángel Maquieira Catala , Augusto Miguel Juste Dolz , Maria Estrella Fernández Sánchez , Daniel Pastor Abellán , Pascual Muñoz Muñoz , Martina Delgado Pinar , Miguel Vicente Andrés Bou
IPC分类号: G01N21/47
CPC分类号: G01N21/4788 , G01N2201/0635 , G01N2201/08
摘要: The invention relates to a diffractive device for chemical and biological analysis based on structured receptors on waveguides, which comprises: a waveguide and a recognition element consisting of a grating with receptors arranged on the waveguide and are intended to interact with target compounds present in a sample; and a radiation source that emits an incident beam propagated through the waveguide, interacting with the recognition element and being diffracted according to Bragg's law, thereby generating a reflected beam and a transmitted beam, which are collected by optical analyzers that record parameters of the reflected beam and of the transmitted beam, enabling multiple analyses to be conducted in a simple, fast, 15 sensitive and quantitative manner, label-free and in real time.
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公开(公告)号:US11751497B2
公开(公告)日:2023-09-12
申请号:US17388169
申请日:2021-07-29
CPC分类号: A01B69/008 , B60W50/0098 , B60W60/0025 , G06V20/10 , B60W2050/0031 , B60W2300/15 , B60W2420/42 , B60W2420/50 , B60W2420/54
摘要: A method, system and robot, wherein the robot includes two or more sensing devices, sensor A and sensor B, mounted thereon and moves forward along an axis parallel to the rows of plants, being autonomously steered by exerting angular corrections to place the robot as close as possible to the centerline between the rows of plants, wherein the method and system includes the following:
(ii) dividing a two-dimensional grid of square cells into groups of cells;
(iii) obtaining data points using sensor A and sensor B;
(vii) moving the robot:
(a) by turning right; or
(b) by turning left; or
(c) forward without turning,
depending on whether each group of cells is calculated as low-activated, high-activated or not activated using the data points.
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