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    • 2. 发明申请
    • Cardiopulmonary patient simulator
    • 心肺患者模拟器
    • US20070117077A1
    • 2007-05-24
    • US11284093
    • 2005-11-22
    • Michael GordonS. IssenbergDavid Lawson
    • Michael GordonS. IssenbergDavid Lawson
    • G09B23/28
    • G09B23/28
    • A simulator for simulating a pulse in a manikin comprises a manikin body. The simulator further comprises a first magnet and a second magnet disposed opposite to each other and spaced apart from each other. The first magnet and second magnet comprise two juxtaposed first and second sub-magnets. The first and second juxtaposed sub-magnets in each magnet are oriented substantially in opposite directions. The first magnet and the second magnet are positioned such that the first sub-magnet of the first magnet is oriented substantially in a same direction as the first sub-magnet of the second magnet and such that the second sub-magnet of the first magnet is oriented substantially in a same direction as the second sub-magnet of the second magnet. The transducer further comprises an armature movably disposed between the first and second magnets. The armature comprises a frame and a solenoid wound adjacent a periphery of the frame. The transducer also comprises a rod attached to the frame of the armature. The armature interacts with the manikin body to simulate the pulse.
    • 用于模拟人体模型中的脉冲的模拟器包括人体模型体。 模拟器还包括彼此相对设置并彼此间隔开的第一磁体和第二磁体。 第一磁体和第二磁体包括两个并列的第一和第二子磁体。 每个磁体中的第一和第二并置的副磁体基本上在相反的方向上取向。 第一磁体和第二磁体被定位成使得第一磁体的第一子磁体大致与第二磁体的第一子磁体相同的方向取向,并且使得第一磁体的第二子磁体为 基本上与第二磁体的第二子磁体相同的方向定向。 换能器还包括可移动地设置在第一和第二磁体之间的衔铁。 电枢包括邻近框架周边的框架和螺线管。 换能器还包括连接到电枢的框架的杆。 电枢与人体模型身体相互作用以模拟脉冲。
    • 3. 发明申请
    • Cardiopulmonary patient simulator
    • 心肺患者模拟器
    • US20070117075A1
    • 2007-05-24
    • US11284082
    • 2005-11-22
    • Michael GordonS. IssenbergDavid Lawson
    • Michael GordonS. IssenbergDavid Lawson
    • G09B23/28
    • G09B23/28
    • A simulator for simulating a health condition comprises a body having a wall defining a cavity and at least a pair of electromechanical transducers disposed in the cavity. The pair of electromechanical transducers comprise mechanical components coupled to selected parts of the wall of the body. The pair of electromechanical transducers are configured to produce simulated bilateral movements of the selected parts of the wall of the body. The simulator further comprises a controlling device electrically communicating with the electromechanical transducers. The controlling device is configured to control the electromechanical transducers in response to a plurality of sets of electrical signals. Each set of electrical signals corresponding, respectively, to one of a plurality of health conditions. A relationship between corresponding bilateral movements of the selected parts of the wall of the body is different from one health condition to another health condition in the plurality of health conditions.
    • 用于模拟健康状况的模拟器包括具有限定空腔的壁和设置在空腔中的至少一对机电换能器的主体。 这对机电换能器包括耦合到身体的壁的选定部分的机械部件。 一对机电换能器被配置为产生身体壁的所选部分的模拟的双边运动。 模拟器还包括与机电换能器电连通的控制装置。 控制装置被配置为响应于多组电信号来控制机电换能器。 每组电信号分别对应于多个健康状况之一。 身体的所选部位的相应双边运动之间的关系在多个健康状况中与一个健康状况不同于另一个健康状况。