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    • 5. 发明申请
    • MECHANICAL SEMICIRCULAR CANAL STIMULATOR
    • 机械半导体通道刺激器
    • US20100010569A1
    • 2010-01-14
    • US12349495
    • 2009-01-06
    • John L. ParkerVittorio ColletiMarkus Haller
    • John L. ParkerVittorio ColletiMarkus Haller
    • A61F11/04
    • H04R25/606
    • A mechanical stimulator for evoking a hearing percept by directly generating waves of fluid motion of fluid in a recipient's semicircular canal. The mechanical stimulator comprises a sound processing unit configured to process a received sound signal; and an implantable stimulation arrangement, comprising: a stapes prosthesis having a first end configured to be positioned abutting an opening in the semicircular canal, an actuator configured to receive electrical signals representing the processed sound signal and configured to vibrate in response to the electrical signals, and a coupler connecting the actuator to the stapes prosthesis such that vibration of the actuator results in waves of fluid motion in a recipient's semicircular canal that evoke a hearing percept of the received sound signal.
    • 一种机械刺激器,用于通过在受体的半规管中直接产生流体的流体波动来引起听觉感知。 机械刺激器包括:声音处理单元,被配置为处理接收到的声音信号; 以及植入式刺激装置,包括:镫骨假体,其具有构造成邻接所述半圆形管道中的开口定位的第一端;致动器,被配置为接收表示所述经处理的声音信号并被配置为响应于所述电信号而振动的电信号, 以及将致动器连接到镫骨假体的联接器,使得致动器的振动导致接收者的半圆管中的流体波动波,其引起对接收到的声音信号的听觉。
    • 6. 发明申请
    • IMPLANTABLE HEARING SYSTEM
    • 可植入听力系统
    • US20090306457A1
    • 2009-12-10
    • US12348795
    • 2009-01-05
    • John L. ParkerHerbert BãchlerMarkus Haller
    • John L. ParkerHerbert BãchlerMarkus Haller
    • A61F11/00H04R25/00
    • H04R25/606A61B5/7455
    • A system for rehabilitating the hearing of a recipient. The system comprises: an elongate hollow access device having a symmetrical shape about a longitudinal axis through the center of the device, and comprising first and second ends each having apertures therein which have their geometric centers positioned at the longitudinal axis, wherein the access device is configured to be at least partially positioned in the mastoid bone of the recipient, such that the first end is positioned adjacent the surface of the mastoid bone, and the second end is inserted into the cochlea, and a first membrane disposed across the aperture at the first end of the device configured to vibrate in response to an acoustic sound signal presented there to, and wherein the access device has a cross-sectional diameter along its length that provides a desired amplification of the received sound signal.
    • 用于恢复接收者听力的系统。 该系统包括:细长的中空进入装置,其具有围绕穿过装置中心的纵向轴线的对称形状,并且包括第一和第二端部,每个端部的孔的几何中心位于纵向轴线处,其中进入装置是 被配置为至少部分地定位在接受者的乳突骨中,使得第一端被定位成邻近乳突骨的表面,并且第二端插入到耳蜗中,并且在第二端处设置在第二端 所述装置的第一端响应于呈现在其上的声音信号而振动,并且其中所述存取装置沿其长度具有提供所接收的声音信号的期望放大的横截面直径。
    • 7. 发明授权
    • System for locating implantable medical device
    • 植入式医疗器械定位系统
    • US6009878A
    • 2000-01-04
    • US17198
    • 1998-02-02
    • Koen J. WeijandMarkus Haller
    • Koen J. WeijandMarkus Haller
    • A61B5/06A61M5/142A61M5/42A61B19/00
    • A61M5/14276A61B5/06A61B2034/2051A61M2205/3523A61M2209/045A61M5/427
    • A system and method for locating an implantable medical device. The system consists of a flat "pancake" antenna coil positioned concentric with the implantable medical device target, e.g. the drug reservoir septum. The system further features a three location antenna array which is separate from the implantable device and external to the patient. The antenna array features three or more separate antennas which are used to sense the energy emitted from the implanted antenna coil. The system further features a processor to process the energy ducted by the antenna array. The system senses the proximity to the implant coil and, thus, the implant device by determining when an equal amount of energy is present in each of the antennas of the antenna array and if each such ducted energy is greater than a predetermined minimum. When such a condition is met, the antenna array is aligned with the implant coil. Thus the needle port through the antenna array is lined up with the septum of the drug reservoir. Alternative embodiments are further disclosed in which the processor and antenna array are positioned within the implanted device while the coil is external to the patient.
    • 一种用于定位可植入医疗装置的系统和方法。 该系统包括与可植入医疗装置目标同心定位的扁平“煎饼”天线线圈。 药物间隔。 该系统还具有与可植入装置分离并且在患者外部的三位置天线阵列。 天线阵列具有三个或更多个单独的天线,其用于感测从植入的天线线圈发射的能量。 该系统进一步具有处理器以处理由天线阵列导管的能量。 系统通过确定何时在天线阵列的每个天线中存在相等量的能量以及每个这样的管道能量是否大于预定的最小值来感测到植入物线圈的接近度,并因此感测植入装置。 当满足这样的条件时,天线阵列与植入线圈对准。 因此,通过天线阵列的针端口与药物储存器的隔膜排成一列。 还公开了替代实施例,其中处理器和天线阵列定位在植入装置内,而线圈在患者外部。
    • 10. 发明授权
    • Implantable drug infusion device having a flow regulator
    • 具有流量调节器的可植入药物输注装置
    • US06878135B1
    • 2005-04-12
    • US09712237
    • 2000-11-15
    • Markus HallerPhilippe RenaudChristian Amacker
    • Markus HallerPhilippe RenaudChristian Amacker
    • A61M5/142A61M5/168G05D7/01A61M5/00
    • A61M5/14276A61M5/16813G05D7/0113
    • An implantable drug infusion device which features an improved flow regulator which permits the flow rate to be independent of reservoir pressure within a given pressure range. The flow regulator features a membrane having a hole, the membrane itself positioned above a bottom layer such that sufficient deflection of the membrane causes the membrane to engage against the bottom layer. As liquid flows through the hole a drag force is applied to the edge of the hole resulting in a deflection of the membrane. Once contact is made between the membrane and the bottom layer, then flow reduced. In a further embodiment the bottom layer features a variable flow channel such that upon membrane deflection flow may only proceed through the hole and through the flow channel. By tailoring the shape and length of the variable flow channel the flow characteristics of the regulator versus pressure may be adjusted. In a further embodiment the flow regulator also features a flow sensor integrated therewith. This integrated sensor provides a measurement of flow and may be coupled to the flow regulator to provide feedback thereto.
    • 一种可植入药物输注装置,其具有改进的流量调节器,其允许流量独立于给定压力范围内的储层压力。 流动调节器具有具有孔的膜,膜本身定位在底层上方,使得膜的足够偏转导致膜与底层接合。 当液体流过孔时,阻力被施加到孔的边缘,导致膜的偏转。 一旦在膜和底层之间进行接触,则流动减少。 在另一个实施方案中,底层具有可变流动通道,使得在膜偏转时,流动可以仅通过孔并通过流动通道。 通过调节可变流动通道的形状和长度,可以调整调节器与压力的流动特性。 在另一实施例中,流量调节器还具有与其集成的流量传感器。 该集成传感器提供流量测量并且可以耦合到流量调节器以向其提供反馈。