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    • 1. 发明申请
    • CONTROLLED NEEDLE-FREE TRANSPORT DEVICE
    • 控制无需运输设备
    • WO2006086720A3
    • 2007-02-15
    • PCT/US2006004899
    • 2006-02-10
    • MASSACHUSETTS INST TECHNOLOGYHUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • HUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • A61M5/30A61M5/315A61M5/48
    • A61M5/3007A61M5/30A61M5/3291
    • A needle-free transdermal transport device (100) for transferring a substance across a surface (155) of a biological body (150) includes a reservoir (113) for storing the substance, a nozzle (114) in fluid communication with the reservoir and a controllable electromagnetic actuator (125) in communication with the reservoir. The actuator, referred to as a Lorentz force actuator, includes a stationary magnet assembly (105) and a moving coil assembly (104) . The coil assembly moves a piston (126) having an end portion positioned within the reservoir. The actuator receives an electrical input and generates in response a corresponding force acting on the piston and causing a needle-free transfer of the substance between the reservoir and the biological body. The magnitude, direction and duration of the force are dynamically controlled (e.g., servo- controlled) by the electrical input and can be altered during the course of an actuation cycle. Beneficially, the actuator can be moved in different directions according to the electrical input.
    • 用于将物质转移穿过生物体(150)的表面(155)的无针透皮运送装置(100)包括用于储存物质的储存器(113),与储存器流体连通的喷嘴(114) 与储存器连通的可控电磁致动器(125)。 称为洛伦兹力致动器的致动器包括固定磁体组件(105)和运动线圈组件(104)。 线圈组件移动具有位于储存器内的端部的活塞(126)。 致动器接收电输入并且响应于相应的力产生作用在活塞上的相应的力并导致物质在储存器和生物体之间的无针转移。 力的大小,方向和持续时间由电输入动态控制(例如,伺服控制),并且可以在致动周期的过程中改变。 有利地,致动器可以根据电气输入沿不同方向移动。
    • 3. 发明申请
    • SURFACE INJECTION DEVICE
    • 表面注射装置
    • WO2006086719A9
    • 2006-12-14
    • PCT/US2006004898
    • 2006-02-10
    • MASSACHUSETTS INST TECHNOLOGYHUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • HUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • A61M5/30
    • A61M5/3007A61M5/30A61M5/3291
    • A needle-free transdermal transport device (100) for non-axially transferring a substance across a surface of a biological body includes a reservoir (110) for holding a substance being transferred. A piston (105) is positioned within the device in communication with the reservoir (110) . An actuator (105) drives the piston (105) to expel the substance from the reservoir (110) . The reservoir (110) is in fluid communication with a nozzle (115) which includes at least one lateral aperture (145) through which the substance is expelled. Multiple lateral apertures (145) can result in a needle-free transfer across a selectable surface area. The depth and direction of an injection can be controlled by the parameters of the nozzle (115) . By providing a selective depth and direction, it is possible to inject a substance into a targeted biological layer, such as a cleavage plane to further promote coverage. A control source can be used to activate the device (100) . The device (108) can also include an optional power source (125) .
    • 一种用于沿生物体表面非轴向转移物质的无针透皮传送装置(100)包括用于容纳被转移物质的贮存器(110)。 活塞(105)定位在与储存器(110)连通的装置内。 致动器(105)驱动活塞(105)以将物质从贮存器(110)排出。 储存器(110)与喷嘴(115)流体连通,所述喷嘴(115)包括至少一个侧向孔(145),物质通过所述至少一个侧孔(145)排出。 多个横向孔(145)可导致穿过可选表面区域的无针转移。 注射的深度和方向可以通过喷嘴(115)的参数来控制。 通过提供选择性的深度和方向,可以将物质注入目标生物层(如裂解平面)以进一步促进覆盖。 控制源可以用于激活设备(100)。 设备(108)还可以包括可选的电源(125)。
    • 4. 发明申请
    • CONTROLLED NEEDLE-FREE TRANSPORT DEVICE
    • 受控无针运输装置
    • WO2006086720A9
    • 2007-04-05
    • PCT/US2006004899
    • 2006-02-10
    • MASSACHUSETTS INST TECHNOLOGYHUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • HUNTER IAN WTABERNER ANDREW JHEMOND BRIAN DWENDELL DAWN MBALL NATHAN BHOGAN NORA CATHERINE
    • A61M5/30A61M5/315A61M5/48
    • A61M5/3007A61M5/30A61M5/3291
    • A needle-free transdermal transport device (100) for transferring a substance across a surface (155) of a biological body (150) includes a reservoir (113) for storing the substance, a nozzle (114) in fluid communication with the reservoir and a controllable electromagnetic actuator (125) in communication with the reservoir. The actuator, referred to as a Lorentz force actuator, includes a stationary magnet assembly (105) and a moving coil assembly (104) . The coil assembly moves a piston (126) having an end portion positioned within the reservoir. The actuator receives an electrical input and generates in response a corresponding force acting on the piston and causing a needle-free transfer of the substance between the reservoir and the biological body. The magnitude, direction and duration of the force are dynamically controlled (e.g., servo- controlled) by the electrical input and can be altered during the course of an actuation cycle. Beneficially, the actuator can be moved in different directions according to the electrical input.
    • 用于穿过生物体(150)的表面(155)转移物质的无针透皮传送装置(100)包括用于存储物质的贮存器(113),与贮存器流体连通的喷嘴(114) 与储液器连通的可控电磁致动器(125)。 称为洛伦兹力致动器的致动器包括固定磁体组件(105)和动圈组件(104)。 线圈组件移动具有位于储存器内的端部的活塞(126)。 致动器接收电输入并且响应于作用在活塞上的相应的力产生并且引起物质在储存器和生物体之间的无针转移。 力的大小,方向和持续时间由电输入动态地控制(例如,伺服控制)并且可以在致动周期的过程中改变。 有利的是,执行器可以根据电气输入在不同的方向上移动。
    • 6. 发明申请
    • SURFACE INJECTION DEVICE
    • 表面注射装置
    • WO2006086719A1
    • 2006-08-17
    • PCT/US2006/004898
    • 2006-02-10
    • MASSACHUSETTS INSTITUTE OF TECHNOLOGYHUNTER, Ian, W.TABERNER, Andrew, J.HEMOND, Brian, D.WENDELL, Dawn, M.BALL, Nathan, B.HOGAN, Nora, Catherine
    • HUNTER, Ian, W.TABERNER, Andrew, J.HEMOND, Brian, D.WENDELL, Dawn, M.BALL, Nathan, B.HOGAN, Nora, Catherine
    • A61M5/30
    • A61M5/3007A61M5/30A61M5/3291
    • A needle-free transdermal transport device (100) for non-axially transferring a substance across a surface of a biological body includes a reservoir (110) for holding a substance being transferred. A piston (105) is positioned within the device in communication with the reservoir (110) . An actuator (105) drives the piston (105) to expel the substance from the reservoir (110) . The reservoir (110) is in fluid communication with a nozzle (115) which includes at least one lateral aperture (145) through which the substance is expelled. Multiple lateral apertures (145) can result in a needle-free transfer across a selectable surface area. The depth and direction of an injection can be controlled by the parameters of the nozzle (115) . By providing a selective depth and direction, it is possible to inject a substance into a targeted biological layer, such as a cleavage plane to further promote coverage. A control source can be used to activate the device (100) . The device (108) can also include an optional power source (125) .
    • 用于在物体表面不轴向转移物质的无针透皮输送装置(100)包括用于保持被转移物质的储存器(110)。 活塞(105)位于与储存器(110)连通的装置内。 致动器(105)驱动活塞(105)以将物质从储存器(110)排出。 储存器(110)与喷嘴(115)流体连通,该喷嘴包括至少一个侧向孔(145),物质被排出。 多个侧向孔(145)可导致穿过可选表面区域的无针转移。 注射的深度和方向可以通过喷嘴(115)的参数来控制。 通过提供选择性的深度和方向,可以将物质注入目标生物层,例如劈裂平面,以进一步促进覆盖。 可以使用控制源来激活设备(100)。 设备(108)还可以包括可选的电源(125)。