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    • 4. 发明申请
    • System And Method For In Situ Trimming Of Oscillators In A Pair Of Implantable Medical Devices
    • 用于在一对植入式医疗设备中振荡器的原位修整的系统和方法
    • US20090177251A1
    • 2009-07-09
    • US12350080
    • 2009-01-07
    • Paul HuelskampThomas J. HarrisBinh C. TranRamprasad Vijayagopal
    • Paul HuelskampThomas J. HarrisBinh C. TranRamprasad Vijayagopal
    • A61N1/08
    • A61N1/37288A61N1/37217
    • A system and method for in situ trimming of oscillators in a pair of implantable medical devices is provided. Each frequency over a range of oscillator trim frequencies for an initiating implantable medical device is selected and a plurality of commands are sent via an acoustic transducer in situ over the frequency selected. Each frequency over a range of oscillator trim frequencies for a responding implantable medical device is selected and a response to each of the commands received is sent via an acoustic transducer in situ over the frequency selected. The responses received by the initiating implantable medical device are evaluated and a combination of the oscillator trim frequencies for both implantable medical devices that together exhibit a strongest acoustic wave is identified. Oscillators in both implantable medical devices are trimmed to the oscillator trim frequencies in the combination identified.
    • 提供了一种用于在一对可植入医疗装置中对振荡器进行原位修整的系统和方法。 选择用于起始可植入医疗装置的振荡器调整频率范围内的每个频率,并且通过所选择的频率上的原位声发射器发送多个命令。 选择用于响应的可植入医疗装置的振荡器微调频率范围内的每个频率,并且通过所选择的频率上的声学换能器发送对接收的每个命令的响应。 评估起始可植入医疗装置接收到的响应,并且识别出共同显示最强声波的两个可植入医疗装置的振荡器修整频率的组合。 两种植入式医疗设备中的振荡器都被修整为识别的组合中的振荡器修整频率。
    • 6. 发明申请
    • TELEMETRY DOUBLE BUFFERING AND OVERSAMPLING FOR AN IMPLANTABLE MEDICAL DEVICE
    • 远程医疗设备的双重缓冲和过冲
    • US20090216297A1
    • 2009-08-27
    • US12325966
    • 2008-12-01
    • Thomas J. HarrisRon A. Balczewski
    • Thomas J. HarrisRon A. Balczewski
    • A61N1/362
    • G08C17/00A61N1/025A61N1/37252A61N1/3727A61N1/37276
    • This document discusses, among other things, a communication circuit for an IMD comprising a radio frequency (RF) modulator to modulate and demodulate IMD data signals, first and second serial buffer registers to store received demodulated data and to store transmit data for modulation and configured to operate according to a first clock signal, and a parallel buffer register to receive data in parallel from the first and second serial buffer registers and configured to operate according to a second clock signal that is slower than the first clock signal. The communication circuit also includes a telemetry control circuit configured to, when in the receive mode, alternate between serially receiving data into the first serial buffer register while the parallel buffer receives data from the second serial buffer register, and serially receiving data into the second serial buffer register while the parallel buffer receives data from the first serial buffer.
    • 本文件尤其讨论了包括用于调制和解调IMD数据信号的射频(RF)调制器的IMD通信电路,第一和第二串行缓冲寄存器以存储接收的解调数据并存储用于调制和配置的发送数据 根据第一时钟信号进行操作,以及并行缓冲寄存器,用于从第一和第二串行缓冲寄存器并行接收数据,并配置为根据比第一时钟信号慢的第二时钟信号进行操作。 通信电路还包括遥测控制电路,其被配置为当处于接收模式时,在并行缓冲器从第二串行缓冲寄存器接收数据的同时串行地接收数据到第一串行缓冲寄存器中,并且串行地将数据接收到第二串行缓冲器 缓冲寄存器,而并行缓冲器从第一个串行缓冲器接收数据。