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    • 3. 发明申请
    • TRANSDERMAL MICRO-PATCH
    • 超薄微孔
    • WO2009102944A3
    • 2009-10-15
    • PCT/US2009034038
    • 2009-02-13
    • PIEZO RESONANCE INNOVATIONS INMULVIHILL MAUREEN LPARK BRIAN MKNOWLES GARETH
    • MULVIHILL MAUREEN LPARK BRIAN MKNOWLES GARETH
    • A61N7/00A61F13/02A61K9/70
    • A61M37/0092A61K9/703A61N7/00
    • A transdermal micro -patch (1) for use with living tissue (19) is provided. The micro -patch (1) includes a first membrane (9), a reservoir (3), a micro -pump (4), flextensional transducers (2), a microelectronics circuit (5), and an optional sensor (27). The first membrane (9) is permeable to allow the passage of fluid (1 8) in either a unidirectional or bidirectional fashion. The reservoir (3) is a container -like element capable of storing a fluid (19) removed from or communicated into the tissue (19). The micro -pump (4) facilitates transport of the fluid (1 8) between the reservoir (3) and first membrane (9). The flextensional transducers (2) generate ultrasonic waves (15) which are separately communicated into the tissue (19) to transport fluid (18) between the first membrane (9) and tissue (19). Ultrasonic waves (15) could interact to enhance the performance of the micro-patch (1). The microelectronics circuit (5) controls both flextensional transducers (2) and the micro -pump (4). The sensor (27) could be embedded within the micro -patch (1) to monitor temperature, pressure, or flow rate so as to avoid damage or irritation to the tissue (19).
    • 提供了一种用于生物体组织(19)的透皮微型贴片(1)。 微型配件(1)包括第一膜(9),储存器(3),微泵(4),弯曲换能器(2),微电子电路(5)和可选的传感器(27)。 第一膜(9)是可渗透的以允许流体(108)以单向或双向方式通过。 储存器(3)是能够存储从组织(19)中移出或连通到其中的流体(19)的容器状元件。 微泵(4)有利于储存器(3)和第一膜(9)之间的流体(108)的输送。 屈曲换能器(2)产生分离地连通到组织(19)中以在第一膜(9)和组织(19)之间输送流体(18)的超声波(15)。 超声波(15)可以相互作用以增强微贴片的性能(1)。 微电子电路(5)控制两个弯曲传感器(2)和微型泵(4)。 传感器(27)可以嵌入在微型配件(1)内以监测温度,压力或流速,以避免对组织(19)的损伤或刺激。
    • 4. 发明申请
    • TRANSDERMAL MICRO-PATCH
    • WO2009102944A2
    • 2009-08-20
    • PCT/US2009/034038
    • 2009-02-13
    • PIEZO RESONANCE INNOVATIONS, INC.MULVIHILL, Maureen, L.PARK, Brian, M.KNOWLES, Gareth
    • MULVIHILL, Maureen, L.PARK, Brian, M.KNOWLES, Gareth
    • A61N7/00A61K9/70A61F13/02
    • A61M37/0092A61K9/703A61N7/00
    • A transdermal micro -patch (1) for use with living tissue (19) is provided. The micro -patch (1) includes a first membrane (9), a reservoir (3), a micro -pump (4), flextensional transducers (2), a microelectronics circuit (5), and an optional sensor (27). The first membrane (9) is permeable to allow the passage of fluid (1 8) in either a unidirectional or bidirectional fashion. The reservoir (3) is a container -like element capable of storing a fluid (19) removed from or communicated into the tissue (19). The micro -pump (4) facilitates transport of the fluid (1 8) between the reservoir (3) and first membrane (9). The flextensional transducers (2) generate ultrasonic waves (15) which are separately communicated into the tissue (19) to transport fluid (18) between the first membrane (9) and tissue (19). Ultrasonic waves (15) could interact to enhance the performance of the micro-patch (1). The microelectronics circuit (5) controls both flextensional transducers (2) and the micro -pump (4). The sensor (27) could be embedded within the micro -patch (1) to monitor temperature, pressure, or flow rate so as to avoid damage or irritation to the tissue (19).
    • 提供了用于活组织(19)的透皮微量贴剂(1)。 微调(1)包括第一薄膜(9),储液器(3),微型泵(4),弯曲换能器(2),微电子电路(5)和可选传感器(27)。 第一膜(9)是可渗透的以允许流体(18)以单向或双向方式通过。 储存器(3)是能够储存从组织(19)移除或连通到组织(19)中的流体(19)的容器状元件。 微型泵(4)便于流体(18)在贮存器(3)和第一膜(9)之间的运输。 弯张换能器(2)产生分别连通到组织(19)中以在第一膜(9)和组织(19)之间输送流体(18)的超声波(15)。 超声波(15)可以相互作用以增强微贴片(1)的性能。 微电子电路(5)控制弯曲换能器(2)和微型泵(4)。 传感器(27)可以嵌入微型面板(1)内以监测温度,压力或流速,从而避免损伤或刺激组织(19)。
    • 7. 发明申请
    • TOOL FOR INCISING TISSUE
    • 用于焚烧组织的工具
    • WO2010045158A2
    • 2010-04-22
    • PCT/US2009/060387
    • 2009-10-12
    • PIEZO RESONANCE INNOVATIONS, INC.MULVIHILL, Maureen, L.PARK, Brian, M.CRESPO, Josue, R.
    • MULVIHILL, Maureen, L.PARK, Brian, M.CRESPO, Josue, R.
    • A61B17/32
    • A61B17/3211A61B17/32093A61B2017/0003A61B2017/00039A61B2017/00119A61B2017/00123A61B2017/00398A61B2017/00402
    • A medical device for reducing the force necessary to penetrate tissue by reciprocating a cutting member in a direction that is parallel to the tissue and using a feedback system to indicate when different layers of tissue are being encountered. Although a variety of driving mechanisms can be used to generate the reciprocating motion, the preferred method is via the use of piezoelectric elements, such as flextensional transducers, amplified piezoelectric actuators, along with a bender bar, and voice coil motor motors. The feedback system utilizes any number of acoustic properties, such as controller impedance, phase lag, conductivity, or resistivity density variable. A vibrating reference member is passed through various tissues and the change in acoustic property is associated with the tissue. A look-up table can be developed that can be used by the feedback system to automatically alert the medical operator (e.g., visual, audible, tactile or display) that a different tissue is being encountered. A power shut-off can be provided as another alternative when a different tissue is encountered.
    • 一种医疗装置,用于通过使切割构件在平行于组织的方向上往复运动来减小穿透组织所需的力,并且使用反馈系统来指示何时遇到不同层组织。 尽管可以使用各种驱动机构来产生往复运动,但是优选的方法是通过使用压电元件,诸如弯曲换能器,放大的压电致动器,以及弯曲杆和音圈马达马达。 反馈系统利用任何数量的声学特性,例如控制器阻抗,相位滞后,电导率或电阻率密度可变。 振动参考构件穿过各种组织并且声学特性的变化与组织相关联。 可以开发查找表,其可以由反馈系统使用以自动提醒医疗操作员(例如视觉,听觉,触觉或显示器)正在遇到不同的组织。 当遇到不同的组织时,可以提供断电作为另一种选择。
    • 8. 发明申请
    • MEDICAL TOOL FOR REDUCED PENETRATION FORCE WITH FEEDBACK MEANS
    • 医疗工具减少穿透力与反馈手段
    • WO2010031004A2
    • 2010-03-18
    • PCT/US2009056864
    • 2009-09-14
    • PIEZO RESONANCE INNOVATIONS INFRANKHOUSER PAUL LMULVIHILL MAUREEN LPARK BRIAN M
    • FRANKHOUSER PAUL LMULVIHILL MAUREEN LPARK BRIAN M
    • A61M5/48A61B10/02A61M5/20A61M5/315
    • A61B10/025A61B10/0283A61B17/320068A61B17/3401A61B2010/0003A61B2018/00196
    • A medical device for reducing the force necessary to penetrate living being tissue using a variety of reciprocating motion actuators, including piezoelectric, voice coil, solenoids, pneumatics or fluidics. The reciprocating actuator drives a penetrating member, such as a needle, through the tissue at a reduced force while the device detects the passage of the penetrating member through the tissue. Upon passage of the penetrating member through the tissue, electrical power to the reciprocating actuator is automatically terminated. One exemplary method for detecting this passage is via a fluid-containing syringe that is coupled to a channel within the penetrating member. Once the penetrating member tip has passed through the living tissue, the fluid within the syringe no longer experiences any pressure and a plunger within the syringe displaces indicating passage of the penetrating member tip. This motion can provide direct tactile feedback to an operator of the medical device or can automatically open a switch providing electrical power to the medical device. Alternatively, a pressure transducer can also monitor the pressure within the penetrating member channel and automatically activate the switch to cut off the electrical power.
    • 一种医疗装置,用于使用各种往复运动致动器(包括压电,音圈,螺线管,气动或流体)来减少穿透活体组织所需的力。 往复式致动器以较小的力驱动诸如针的穿透构件穿过组织,同时装置检测穿透构件通过组织的通道。 当穿透构件穿过组织时,往复式致动器的电力自动终止。 用于检测该通道的一个示例性方法是经由含有流体的注射器连接到穿透构件内的通道。 一旦穿透构件尖端已经穿过活组织,注射器内的流体不再经历任何压力,并且注射器内的柱塞移动穿透构件尖端的指示通道。 该运动可以向医疗装置的操作者提供直接的触觉反馈,或者可以自动打开向医疗装置提供电力的开关。 或者,压力传感器还可以监视穿透构件通道内的压力并自动启动开关以切断电力。
    • 9. 发明申请
    • TOOL FOR INCISING TISSUE
    • 投入组织工具
    • WO2010045158A3
    • 2010-07-15
    • PCT/US2009060387
    • 2009-10-12
    • PIEZO RESONANCE INNOVATIONS INMULVIHILL MAUREEN LPARK BRIAN MCRESPO JOSUE R
    • MULVIHILL MAUREEN LPARK BRIAN MCRESPO JOSUE R
    • A61B17/32
    • A61B17/3211A61B17/32093A61B2017/0003A61B2017/00039A61B2017/00119A61B2017/00123A61B2017/00398A61B2017/00402
    • A medical device for reducing the force necessary to penetrate tissue by reciprocating a cutting member in a direction that is parallel to the tissue and using a feedback system to indicate when different layers of tissue are being encountered. Although a variety of driving mechanisms can be used to generate the reciprocating motion, the preferred method is via the use of piezoelectric elements, such as flextensional transducers, amplified piezoelectric actuators, along with a bender bar, and voice coil motor motors. The feedback system utilizes any number of acoustic properties, such as controller impedance, phase lag, conductivity, or resistivity density variable. A vibrating reference member is passed through various tissues and the change in acoustic property is associated with the tissue. A look-up table can be developed that can be used by the feedback system to automatically alert the medical operator (e.g., visual, audible, tactile or display) that a different tissue is being encountered. A power shut-off can be provided as another alternative when a different tissue is encountered.
    • 一种医疗装置,用于通过使切割构件沿与组织平行的方向往复运动来减少穿透组织所需的力,并且使用反馈系统来指示何时遇到不同组织的层。 虽然可以使用各种驱动机构来产生往复运动,但是优选的方法是通过使用压电元件,例如弯曲换能器,放大的压电致动器,以及弯曲杆和音圈马达马达。 反馈系统使用任何数量的声学特性,例如控制器阻抗,相位滞后,电导率或电阻率密度变量。 振动参考构件通过各种组织,并且声学特性的变化与组织相关联。 可以开发可以由反馈系统使用的查找表来自动警告医疗操作者(例如,视觉,听觉,触觉或显示)正在遇到不同组织。 当遇到不同的组织时,可以提供电源切断作为另一种选择。