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    • 22. 发明公开
    • PATIENT SIMULATION SYSTEM FOR MEDICAL SERVICES OR DIAGNOSTIC MACHINES
    • 糖尿病诊断系统
    • EP2906107A4
    • 2015-11-11
    • EP13845169
    • 2013-10-10
    • TALLMAN RICHARD
    • TALLMAN RICHARD
    • A61B5/00
    • G09B23/28G09B23/288G09B23/303
    • A system, method, and apparatus for a patient simulator that interacts with a diagnostic or therapeutic medical device. The system includes a computing device coupled to a patient module. The patient module includes hydraulic equipment that simulates a baseline fluid interconnection with a therapeutic device. The computing device manages physical and virtual data, provides algorithmic calculations for simulating hypothetical patient vital signs, long-term clinical course, and simulates related fluid properties. The simulation system automatically executes a step-wise clinical scenario, specified in a spreadsheet format of patient conditions and equipment scenarios, that also includes audio/visual stimuli of operating room and diagnostic clinic environments, along with data recording capabilities. The therapeutic device can be a heart lung machine (HLM), an extracorporeal membrane oxygenation (ECMO) machine, an emergency cardiac life support (ECLS) device, a ventricular assist device (VAD), a dialysis machines, a hyperthermic intraperitoneal chemotherapy (HIPEC) machine, and an aortic balloon pump.
    • 用于与诊断或治疗医疗装置相互作用的患者模拟器的系统,方法和装置。 该系统包括耦合到患者模块的计算设备。 患者模块包括模拟与治疗装置的基线流体互连的液压设备。 计算设备管理物理和虚拟数据,提供用于模拟假设患者生命体征的算法计算,长期临床过程和模拟相关流体特性。 模拟系统自动执行逐步临床情景,以患者状况和设备情景的电子表格形式指定,还包括手术室和诊断诊所环境的音频/视觉刺激以及数据记录功能。 治疗装置可以是心肺机(HLM),体外膜氧合(ECMO)机,紧急心脏生命支持装置(ECLS),心室辅助装置(VAD),透析机,高热腹膜内化疗 )机和主动脉球囊泵。
    • 24. 发明公开
    • SYSTEM AND METHOD FOR THE EVALUATION OF OR IMPROVEMENT OF MINIMALLY INVASIVE SURGERY SKILLS
    • 系统和方法评估或微创手术技巧的改进
    • EP2636034A4
    • 2015-07-22
    • EP11838379
    • 2011-05-06
    • UNIV JOHNS HOPKINS
    • KUMAR RAJESHHAGER GREGORY DJOG AMOD SYUH DAVID D
    • G09B23/28A61B17/00A61B19/00G09B5/02
    • G09B23/28A61B34/35A61B2017/00707G09B5/02G09B23/285
    • A system to assist in at least one of the evaluation of or the improvement of skills to perform minimally invasive surgery includes a minimally invasive surgical system, a video system arranged to record at least one of a user's interaction with the minimally invasive surgical system or tasks performed with the minimally invasive surgical system, and a data storage and processing system in communication with the minimally invasive surgical system and in communication with the video system. The minimally invasive surgical system provides at least one of motion data, ergonomics adjustment data, electrical interface interaction data or mechanical interface interaction data of at least a component of the minimally invasive surgical system in conjunction with time registered video signals from the video system. The data storage and processing system processes the at least one of motion data, ergonomics adjustment data, electrical interface interaction data or mechanical interface interaction data to provide a performance metric in conjunction with the time registered video signals to be made available to an expert for evaluation.
    • 系统以协助评估或技能的提高,至少一个进行微创手术具有微创手术系统,布置成记录与微创手术系统或任务的用户交互的至少一个视频系统 执行利用微创手术系统,以及与所述微创外科手术系统和与所述视频系统通信的通信的数据存储和处理系统,所述微创外科手术系统提供运动数据,人体工程学的调整数据中的至少一个,电接口 交互数据或至少一个结合的微创外科手术系统的部件的机械接口交互数据与从视频系统时登记的视频信号,数据存储和处理系统处理的运动数据,人体工程学的调整数据的所述至少一个,电 接口交互数据或机械接口间共同行动 与时间登记视频信号连词n提供数据的性能指标进行到提供给评估专家。
    • 28. 发明公开
    • A user interface for a surgical simulation system
    • Benutzeroberflächefürein chirurgisches Simulationssystem
    • EP2811479A1
    • 2014-12-10
    • EP13171086.5
    • 2013-06-07
    • Surgical Science Sweden AB
    • Larsson, AndersJohansson, ChristerNyström, Mattias
    • G09B23/28
    • G09B23/286G09B23/28G09B23/285
    • A user interface device (1) comprising a frame (11) with a support (15) and a suspension portion (16) rotatable around a first axis (A). Further comprising a camera simulator (10) having a rigid shaft (21) with a primary extension along a longitudinal axis (C), being suspended by the suspension portion (16) so that it can translate along the longitudinal axis (C). A first rotational sensor (25) arranged to detect rotation of the suspension portion (16) around the first axis (A) by a guiding surface (18a) arranged at a distance from the first axis (A), and a first roller (30) arranged between the axis (A) and the guiding surface (18a) to rotate when the suspension portion (16) is rotated around the first axis (A) wherein the first rotational sensor (25) is arranged to detect rotation of the first roller (30). This solution enables satisfactory measured resolution at more reasonable price.
    • 一种用户接口设备(1),包括具有支撑件(15)的框架(11)和可围绕第一轴线(A)旋转的悬挂部分(16)。 还包括具有刚性轴(21)的相机模拟器(10),所述刚性轴具有沿着纵向轴线(C)的主延伸部,由所述悬挂部分(16)悬挂使得其可以沿着所述纵向轴线(C)平移。 第一旋转传感器(25),布置成通过布置在距离第一轴线(A)一定距离的引导表面(18a)检测悬挂部分(16)围绕第一轴线(A)的旋转;以及第一辊子 )布置在所述轴线(A)和所述引导表面(18a)之间以在所述悬架部分(16)围绕所述第一轴线(A)旋转时旋转,其中所述第一旋转传感器(25)布置成检测所述第一辊 (30)。 该解决方案以更合理的价格实现令人满意的测量分辨