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    • 1. 发明授权
    • Implantable MEMS device and method
    • 可植入MEMS器件及方法
    • US08864701B2
    • 2014-10-21
    • US13584435
    • 2012-08-13
    • Cesario P. Dos SantosNicholas M. GunnRobert J. Sanchez, Jr.Leslie A. FieldChen Ning
    • Cesario P. Dos SantosNicholas M. GunnRobert J. Sanchez, Jr.Leslie A. FieldChen Ning
    • A61M5/00
    • A61F9/00781A61B3/16A61B2562/028A61F2210/0076
    • An implantable MEMS package for the treatment of an ocular condition is provided. The MEMS package includes an outer portion; an active portion attached to the outer portion, the active portion including a fluid regulating element having a moving element; and a fluidic channel at an interface of the outer portion and the active portion. The fluidic channel is formed in at least one of the outer and active portions and permits fluid communication from the MEMS package to the fluid regulating element. A method for forming a MEMS package as above is also provided. An ocular implant for treating glaucoma including an inlet tube for receiving aqueous humor; a MEMS package as above, coupled to the inlet tube; a control system to control the MEMS package; and an outlet tube for draining aqueous humor at a drainage location, is provided.
    • 提供了一种用于治疗眼睛病症的植入式MEMS封装。 MEMS封装包括外部部分; 活动部分附接到外部部分,活动部分包括具有移动元件的流体调节元件; 以及在外部部分和活动部分的界面处的流体通道。 流体通道形成在外部和活动部分中的至少一个中,并且允许从MEMS封装到流体调节元件的流体连通。 还提供了如上形成MEMS封装的方法。 一种用于治疗青光眼的眼部植入物,包括用于接收房水的入口管; 如上所述的MEMS封装,耦合到入口管; 控制系统来控制MEMS封装; 并且提供用于在排水位置排出房水的出口管。
    • 4. 发明授权
    • Phacoemulsification handpiece pressure booster
    • 超声乳化手机加压器
    • US08876751B2
    • 2014-11-04
    • US12536539
    • 2009-08-06
    • Bruno DacquayRobert J. Sanchez, Jr.
    • Bruno DacquayRobert J. Sanchez, Jr.
    • A61M1/00
    • A61M1/0031A61M1/0064A61M3/0283A61M2210/0612
    • In various embodiments, a handpiece may include an irrigation line coupled to an adjacent line reservoir with a piston configured to move within the adjacent line reservoir to increase an irrigation pressure in the irrigation line near a surgical site. In some embodiments, a sensor may be used to detect an occlusion break in the aspiration line and information from the sensor may result in signaling an actuator to move the piston in response to the occlusion break detection to compensate for a vacuum pressure drop associated with the occlusion break. The handpiece may further include a purge bypass line between the irrigation line and the adjacent line reservoir to allow flow from the irrigation line to travel through the adjacent line reservoir to purge the adjacent line reservoir.
    • 在各种实施例中,手持件可以包括连接到相邻的线容器的冲洗管线,其中活塞构造成在相邻管线容器内移动以增加在外科手术部位附近的灌溉管线中的冲洗压力。 在一些实施例中,可以使用传感器来检测抽吸管线中的堵塞断裂,并且来自传感器的信息可以导致致动器响应于闭塞断裂检测而使活塞移动以补偿与...相关联的真空压降 闭塞断裂 所述手持件还可以包括在所述冲洗管线和所述相邻的管线容器之间的净化旁通管线,以允许从所述灌溉管线流出以通过所述相邻的管线储存器以净化所述相邻的管路储存器。
    • 6. 发明申请
    • Corrugated Membrane Actuators
    • 波纹膜驱动器
    • US20130211313A1
    • 2013-08-15
    • US13396011
    • 2012-02-14
    • Cesario P. Dos SantosRobert J. Sanchez, JR.Leslie A. Field
    • Cesario P. Dos SantosRobert J. Sanchez, JR.Leslie A. Field
    • A61F9/00
    • A61F9/00781A61M2039/2433
    • An IOP control valve is disclosed. The IOP control valve comprises a corrugated membrane and a housing including a fluid inlet and a fluid outlet. The corrugated membrane is anchored within the housing to form a reference chamber on a first side of the corrugated membrane and a fluid flow channel on a second opposing side of the membrane. The reference chamber has a reference chamber pressure representative of atmospheric pressure. The fluid flow channel can selectively increase and decrease in size to permit fluid to flow from the fluid inlet to the fluid outlet. The corrugated membrane is configured to affect flow through the fluid flow channel from the fluid inlet to the fluid outlet by deflecting in response to pressure differentials of the reference chamber pressure and the fluid flow channel pressure acting on the opposing sides of the corrugated membrane.
    • 公开了一种IOP控制阀。 IOP控制阀包括波纹膜和包括流体入口和流体出口的壳体。 波纹膜被锚固在壳体内以在波纹膜的第一侧上形成参考室,并且在膜的第二相对侧上形成流体流动通道。 参考室具有代表大气压力的参考室压力。 流体流动通道可以选择性地增加和减小尺寸,以允许流体从流体入口流到流体出口。 波纹膜被配置为响应于参考室压力和作用在波纹膜的相对侧上的流体流动通道压力的压力而通过偏转而影响通过流体流动通道从流体入口到流体出口的流动。
    • 7. 发明申请
    • PHACOEMULSIFICATION HANDPIECE PRESSURE BOOSTER
    • PHACOEMULSIFICATION HANDPIECE压力增压器
    • US20110034864A1
    • 2011-02-10
    • US12536539
    • 2009-08-06
    • Bruno DacquayRobert J. Sanchez, JR.
    • Bruno DacquayRobert J. Sanchez, JR.
    • A61F9/007A61M1/00
    • A61M1/0031A61M1/0064A61M3/0283A61M2210/0612
    • In various embodiments, a handpiece may include an irrigation line coupled to an adjacent line reservoir with a piston configured to move within the adjacent line reservoir to increase an irrigation pressure in the irrigation line near a surgical site. In some embodiments, a sensor may be used to detect an occlusion break in the aspiration line and information from the sensor may result in signaling an actuator to move the piston in response to the occlusion break detection to compensate for a vacuum pressure drop associated with the occlusion break. The handpiece may further include a purge bypass line between the irrigation line and the adjacent line reservoir to allow flow from the irrigation line to travel through the adjacent line reservoir to purge the adjacent line reservoir.
    • 在各种实施例中,手持件可以包括连接到相邻的线容器的冲洗管线,其中活塞构造成在相邻管线容器内移动以增加在外科手术部位附近的灌溉管线中的冲洗压力。 在一些实施例中,可以使用传感器来检测抽吸管线中的堵塞断裂,并且来自传感器的信息可以导致致动器响应于闭塞断裂检测而使活塞移动以补偿与...相关联的真空压降 闭塞断裂 所述手持件还可以包括在所述冲洗管线和所述相邻的管线容器之间的净化旁通管线,以允许从所述灌溉管线流出以通过所述相邻的管线储存器以净化所述相邻的管路储存器。