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公开(公告)号:WO2021028260A1
公开(公告)日:2021-02-18
申请号:PCT/EP2020/071871
申请日:2020-08-04
Applicant: SIMTOLIFE B.V.
Inventor: BODE, Dyon , BRINKMAN, Dennis , VAN DEN BRABER, Niels , VAN GELDER, Karel
IPC: G09B23/28 , A61C1/00 , G09B23/00 , G06F3/0346 , G06T19/00
Abstract: A dental procedure simulator (1) comprising a support structure and a linkage (40) suspended from the support structure. The linkage (40) is controlled by a computer (80) that is configured to simulate a dental procedure or treatment. A handpiece (30) is coupled to the linkage (40) and configured to be held in a hand of a user and to be manipulated by the user in a workspace (W) in real space. The phenom head (10) is provided with a phantom upper jaw (13) and a phantom lower jaw (14)and is supported by the support structure and arranged in the workspace (W.) The phantom lower jaw (14) is arranged movably relative to the phantom upper jaw (13).
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公开(公告)号:WO2020251759A1
公开(公告)日:2020-12-17
申请号:PCT/US2020/034757
申请日:2020-05-27
Applicant: FACEBOOK TECHNOLOGIES, LLC
Inventor: BURGESS, Kirk Erik , LAYON HALUN, Antonio Yamil , SZTUK, Sebastian
Abstract: An animatronic device includes a mechanical eyeball configured to rotate about a first rotational axis and a second rotational axis that intersect at a fixed center point. A controller is configured to generate eye movement instructions that cause the animatronic device to rotate the mechanical eyeball about at least one of the first rotational axis and the second rotational axis. The eye movement instructions are generated based on an eye tracking system used to track movement of an eye of a user. The controller maps the tracked eye movement to movement of the mechanical eyeball and generates eye movement instructions based on the mapping.
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公开(公告)号:WO2020047763A1
公开(公告)日:2020-03-12
申请号:PCT/CN2018/104060
申请日:2018-09-05
Applicant: 天津天堰科技股份有限公司
Inventor: 刘雁飞 , 刘朝群 , 周继彬 , 布鲁萨尔•大卫• N. , 米勒•查尔斯• G. , 伍兹•杰里 , 奥姆斯特德•克利福德• D.
Abstract: 本发明提供了一种呼吸模拟器,包括具有气道口的气道;与所述气道连接的气体抽排装置,所述气体抽排装置被配置为使空气从所述气道口吸入和排出所述气道,以模拟人体的吸气和呼气;热交换器,被配置为在空气被排出所述气道前,将热量传递给所述气道内的空气,以模拟人体呼出气体的温度。本发明还提供了一种包括呼吸模拟器的医学人体模拟器。本发明还提供了一种模拟呼吸场景的方法。通过本发明进行热量的传递,不仅可以冷却电子器件及其他部件,还能模拟人体呼吸及呼出空气的温度,为医学生提供了更真实的培训环境,确保了硬件组件的正常运作及使用寿命。
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95.
公开(公告)号:WO2020030998A1
公开(公告)日:2020-02-13
申请号:PCT/IB2019/055539
申请日:2019-06-29
Applicant: MEDICAL PHANTOM SAS
Inventor: LANZZIANO SILVA, Johan Eliecer
Abstract: La invención pertenece al campo de la física y propone un simulador compacto de forma cúbica para bloqueo anestésico del plexo braquial en sus cuatro abordajes, donde cuatro de las caras del cubo permiten el entrenamiento de los cuatro procedimientos: Interescalénico, Supraclavicular, Infraclavicular y Axilar para bloqueo anestésico y manejo analgésico del plexo braquial con clara diferenciación de componentes por ecografía debido a la separación de dichos componentes, su estructura hipo, anecoica o hiperecoica y sus diferentes densidades; elaborado con goma elastomérica de poliuretano obtenido por condensación de bases hidroxílicas combinadas con diisocianatos y con alcohol en combinación para diferentes densidades en cada componente, con partes rígidas, partes flexibles, catalizadores, aditivos, pigmentos, un circuito de mangueras y un circuito neumático interno que recibe material anestésico inyectado sin que se incruste y puede ser retirado por succión..
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96.
公开(公告)号:WO2020030986A1
公开(公告)日:2020-02-13
申请号:PCT/IB2019/052973
申请日:2019-04-10
Applicant: MEDICAL PHANTOM SAS
Inventor: LANZZIANO SILVA, Johan Eliecer
Abstract: La invención pertenece al campo de la física aplicada a tecnología médica relacionada con un simulador para aplicación de anestesia por bloqueo selectivo de una parte del cuerpo humano. Particularmente propone un simulador modular para el bloqueo anestésico y analgésico del plano Cuadrado Lumbar, como una técnica anestésica indicada en procedimientos quirúrgicos y analgésicos que involucran el abdomen y miembro inferior con clara diferenciación de componentes por ecografía debido a la separación de componentes, su estructura hipo, anecoica o hiperecoica y sus diferentes densidades; elaborado con un compuesto de goma elastomérica de poliuretano obtenido por condensación de bases hidroxílicas combinadas con disocianatos y con alcohol en combinación para diferentes densidades en cada componente, con partes rígidas, partes flexibles, catalizadores, aditivos, pigmentos, un circuito de mangueras y un circuito neumático interno que permite depositar material anestésico inyectado sin que se incruste y puede ser retirado del circuito por succión.
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公开(公告)号:WO2019201398A1
公开(公告)日:2019-10-24
申请号:PCT/DE2019/100369
申请日:2019-04-18
Applicant: CRASHTEST-SERVICE.COM GMBH
Inventor: SCHIMMELPFENNIG, Peter
Abstract: Verfahren zur Herstellung eines biofidelen Vogelschlagsimulationskörpers (100), mit wenigstens folgenden Schritten: - Drucken des Knochengerüsts wenigstens einer Vogelskelettgruppe (11, 21, 31, 41) aus einem Knochensubstanzwerkstoff mittels 3D-Filamentdruck; und - Bildung wenigstens eines Weichgewebeelements (13, 23, 33, 43) durch: • Eingießen der Vogelskelettgruppe (11, 21, 31, 41) in einen Silicon-Composite-Werkstoff und Aushärtenlassen des Silicon-Composite-Werkstoffs zur Bildung wenigstens eines Weichgewebeelements (13, 23, 33, 43) und/oder • Aufdrucken wenigstens eines Weichgewebeelements (13, 23, 33, 43) aus einem Werkstoff mit gegenüber dem Knochensubstanzwerkstoff geringerer Härte, zusammen mit dem Drucken des Knochengerüsts.
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98.
公开(公告)号:WO2019200381A1
公开(公告)日:2019-10-17
申请号:PCT/US2019/027464
申请日:2019-04-15
Applicant: THE CALIFORNIA STATE UNIVERSITY - SAN MARCOS
Inventor: HAMADANI, Kambiz , AHMADINIA, Ali , YE, Xin , JIANG, Yuanyuan
Abstract: Systems and methods for utilizing laboratory equipment in a hybrid reality environment or augmented virtual reality environment, are contemplated herein and include: at least one piece of laboratory equipment having at least one feature, wherein the at least one piece of laboratory equipment is tracked; a tracking module for tracking a position and an orientation of the at least one piece of tracked laboratory equipment; a virtual model, stored in a memory, comprising at least one 3-D virtual representation of the at least one feature of the at least one piece of laboratory equipment; and an experimentation module. A piece of laboratory equipment for use in a hybrid reality environment or augmented virtual reality environment is also included that comprises at least one piece of laboratory equipment having at least one feature, wherein the at least one piece of laboratory equipment is tracked; at least one marker that is coupled with the at least one piece of laboratory equipment; and a tracking module for tracking a position and an orientation of the at least one piece of tracked laboratory equipment, wherein the tracking module accesses the at least one marker.
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99.
公开(公告)号:WO2019147754A1
公开(公告)日:2019-08-01
申请号:PCT/US2019/014878
申请日:2019-01-24
Applicant: HUMANETICS INNOVATIVE SOLUTIONS, INC.
Inventor: VARA, Thomas, Mathew , UBOM, Ime, Victor , BEEBE, Michael, Scott , MCCARTHY, Charles, Joseph , BURLEIGH, Mark, John , DAVIS, James , LIPMYER, Robert
Abstract: A system for detecting forces on and measuring deformation of an anthropomorphic test device (ATD) includes a plurality of body parts and at least one optical fiber supported by and in contact with at least one of the body parts. The body parts form the ATD and simulate at least a part of a human body and the articulation of the human body. The optical fiber extends between a first end and a second end and comprises a plurality of sensors disposed between the ends. An emitter is in communication with the optical fiber for emitting a light having a predetermined band of wavelengths through the optical fiber that is reflected by the sensors and an interrogator is in communication with the optical fiber for detecting the reflected light from the sensor such that changes to the reflected light indicate a strain on the at least one body part.
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公开(公告)号:WO2019005868A1
公开(公告)日:2019-01-03
申请号:PCT/US2018/039597
申请日:2018-06-26
Applicant: MENTICE, INC.
Inventor: LINDKVIST, Johan Lennart
Abstract: Systems and methods for simulating fluid injection procedures are disclosed. According to some embodiments, a fluid injection simulation system comprises a processing unit coupled to a variable flow resistance module. The processing unit determines a fluid flow resistance that corresponds to a predetermined level of resistance for tactilely simulating a fluid injection procedure. The processing unit controls the variable flow resistance module to achieve the fluid flow resistance that corresponds to the predetermined level of resistance for tactilely simulating a fluid injection procedure.
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