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    • 1. 发明授权
    • Reuse of screw thread
    • 螺纹重复使用
    • US08390416B2
    • 2013-03-05
    • US13125091
    • 2009-10-21
    • Jacobus Josephus LeijssenJeroen Jacob Arnold Tol
    • Jacobus Josephus LeijssenJeroen Jacob Arnold Tol
    • H01F27/28H01F27/02A61N1/00
    • H01F5/00A61N1/37229A61N1/3787H01F38/14H01Q1/22H01Q7/00
    • Components having a screw thread useful for mechanical fixation of the component to a corresponding component may be equipped with electrical wire following at least part of the turns of the screw thread and thereby forming at least a part of a coil. The corresponding component may have a matching screw thread, or the component of the invention may be self-tapping, in which case a matching screw thread in the corresponding component would be superfluous. The coil may be used as charging and/or power-conversion coil and/or communication antenna. The reuse of the screw thread for a coil maximizes the coil area without consuming extra space of the component. This is in particular useful in medical electrical implant devices, such as a pace maker or a neuron pace maker in deep brain stimulation, in that the maximum size of such a pace maker is very limited. Moreover, the screw thread of such components may additionally comprise connectors for providing electrical connection to other electrical parts in a matching component.
    • 具有用于将部件机械固定到相应部件的螺纹的部件可以配备有沿着螺纹的至少一​​部分匝的电线,从而形成线圈的至少一部分。 相应的部件可以具有匹配的螺纹,或者本发明的部件可以是自攻丝的,在这种情况下,相应部件中的匹配螺纹将是多余的。 线圈可以用作充电和/或功率转换线圈和/或通信天线。 用于线圈的螺纹的再利用使线圈面积最大化,而不消耗部件的额外空间。 这在医疗电植入装置中尤其有用,例如在深部脑刺激中的起搏器或神经元起搏器,因为这种起搏器的最大尺寸非常有限。 此外,这些部件的螺纹还可以包括用于提供与匹配部件中的其它电气部件的电连接的连接器。
    • 2. 发明申请
    • REUSE OF SCREW THREAD
    • 螺丝螺纹的重新使用
    • US20110199173A1
    • 2011-08-18
    • US13125091
    • 2009-10-21
    • Jacobus Josephus LeijssenJeroen Jacob Arnold Tol
    • Jacobus Josephus LeijssenJeroen Jacob Arnold Tol
    • H01F27/06
    • H01F5/00A61N1/37229A61N1/3787H01F38/14H01Q1/22H01Q7/00
    • Components having a screw thread useful for mechanical fixation of the component to a corresponding component may be equipped with electrical wire following at least part of the turns of the screw thread and thereby forming at least a part of a coil. The corresponding component may have a matching screw thread, or the component of the invention may be self-tapping, in which case a matching screw thread in the corresponding component would be superfluous. The coil may be used as charging and/or power-conversion coil and/or communication antenna. The reuse of the screw thread for a coil maximizes the coil area without consuming extra space of the component. This is in particular useful in medical electrical implant devices, such as a pace maker or a neuron pace maker in deep brain stimulation, in that the maximum size of such a pace maker is very limited. Moreover, the screw thread of such components may additionally comprise connectors for providing electrical connection to other electrical parts in a matching component.
    • 具有用于将部件机械固定到相应部件的螺纹的部件可以配备有沿着螺纹的至少一​​部分匝的电线,从而形成线圈的至少一部分。 相应的部件可以具有匹配的螺纹,或者本发明的部件可以是自攻丝的,在这种情况下,相应部件中的匹配螺纹将是多余的。 线圈可以用作充电和/或功率转换线圈和/或通信天线。 用于线圈的螺纹的再利用使线圈面积最大化,而不消耗部件的额外空间。 这在医疗电植入装置中尤其有用,例如在深部脑刺激中的起搏器或神经元起搏器,因为这种起搏器的最大尺寸非常有限。 此外,这些部件的螺纹还可以包括用于提供与匹配部件中的其它电气部件的电连接的连接器。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR COMMUNICATING INFORMATION BETWEEN IMPLANTABLE DEVICES
    • 用于在可移植设备之间传递信息的系统和方法
    • US20110184492A1
    • 2011-07-28
    • US13054857
    • 2009-07-22
    • Hubert Cécile François MartensFranciscus Paulus Maria BudzelaarJeroen Jacob Arnold Tol
    • Hubert Cécile François MartensFranciscus Paulus Maria BudzelaarJeroen Jacob Arnold Tol
    • A61N1/36
    • A61N1/37288A61N1/362A61N1/37252
    • A system for communicating information between at least two medical devices implanted within the body of a subject using volume conduction of electrical signals as a means of communication and wherein one of the implanted medical devices is configured to provide electrical stimulation to the tissue is disclosed. The system comprises a first implant device having at least two transmit electrodes configured to transmit electrical stimulation pulses, wherein one of the electrodes may be a common return electrode, an encoding means configured to employ a channel as a transmitter transmission medium for stimulation pulses and encoding the information into the stimulation pulses, a second implant device having at least two receive electrodes configured to receive the transmitted stimulation pulses with encoded information, and a decoding means configured to decode the information encoded into the stimulation pulses. The disclosed system provides reliable and efficient communication between implantable receiver devices.
    • 公开了一种系统,用于在作为通信手段的电信号的体积传导之间在植入物体内的至少两个医疗设备之间传送信息,并且其中植入的医疗设备中的一个被配置为向组织提供电刺激。 所述系统包括具有至少两个发射电极的第一注入装置,所述至少两个发射电极被配置为传输电刺激脉冲,其中所述电极中的一个可以是公共返回电极,编码装置被配置为使用通道作为用于刺激脉冲的发射器传输介质和编码 将信息输入到刺激脉冲中,具有至少两个接收电极的第二植入装置,所述接收电极被配置为用编码信息接收所发送的刺激脉冲;以及解码装置,被配置为对编码为刺激脉冲的信息进行解码。 所公开的系统在可植入接收器设备之间提供可靠和有效的通信。
    • 8. 发明申请
    • IMPLANTABLE DEVICE WITH COMMUNICATION MEANS
    • 具有通信手段的可植入设备
    • US20120065458A1
    • 2012-03-15
    • US13320614
    • 2010-05-04
    • Jeroen Jacob Arnold Tol
    • Jeroen Jacob Arnold Tol
    • H04R25/00
    • A61N1/37217A61N1/36082A61N1/372
    • The invention relates to an implantable device, e.g. a Deep Brain Stimulation device (10), and to a method for communicating information from such an implantable device (10) to its carrier. The communication is achieved by the emission of sound from a transmitter (16) into the body material surrounding the implantable device (10), wherein said sound yields signals that are audible for the carrier of the implantable device (10). In particular, the emitted sound may comprise audible frequencies or modulated ultrasonic frequencies. According to a further development, the implantable device (10) may additionally comprise a receiver (16) for receiving sound from the surrounding body material, wherein said received sound may encode information for the implantable device (10).
    • 本发明涉及可植入装置,例如, 深脑刺激装置(10),以及用于将信息从这种可植入装置(10)传送到其载体的方法。 通信是通过从发射机(16)发射声音到围绕可植入装置(10)的主体材料中实现的,其中所述声音产生对可植入装置(10)的载体是可听见的信号。 特别地,发射的声音可以包括可听频率或调制的超声波频率。 根据进一步的发展,可植入装置(10)可另外包括用于从周围主体材料接收声音的接收器(16),其中所述接收的声音可以编码可植入装置(10)的信息。