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A Binaural CI Research Platform for Oticon Medical SP/XP Implants Enabling ITD/ILD and Variable Rate Processing

机译:用于Oticon Medical SP / XP植入物的双耳CI研究平台,支持ITD / ILD和可变速率处理

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We present the first portable, binaural, real-time research platform compatible with Oticon Medical SP and XP generation cochlear implants. The platform consists of (a) a pair of behind-the-ear devices, each containing front and rear calibrated microphones, (b) a four-channel USB analog-to-digital converter, (c) real-time PC-based sound processing software called the Master Hearing Aid, and (d) USB-connected hardware and output coils capable of driving two implants simultaneously. The platform is capable of processing signals from the four microphones simultaneously and producing synchronized binaural cochlear implant outputs that drive two (bilaterally implanted) SP or XP implants. Both audio signal preprocessing algorithms (such as binaural beamforming) and novel binaural stimulation strategies (within the implant limitations) can be programmed by researchers. When the whole research platform is combined with Oticon Medical SP implants, interaural electrode timing can be controlled on individual electrodes to within ±1?μs and interaural electrode energy differences can be controlled to within ±2%. Hence, this new platform is particularly well suited to performing experiments related to interaural time differences in combination with interaural level differences in real-time. The platform also supports instantaneously variable stimulation rates and thereby enables investigations such as the effect of changing the stimulation rate on pitch perception. Because the processing can be changed on the fly, researchers can use this platform to study perceptual changes resulting from different processing strategies acutely.
机译:我们提出了第一个与Oticon Medical SP和XP一代人工耳蜗兼容的便携式双耳实时研究平台。该平台包括(a)一对耳后设备,每个设备都包含前后校准的麦克风,(b)四通道USB模数转换器,(c)基于PC的实时声音处理软件,称为主助听器,以及(d)USB连接的硬件和能够同时驱动两个植入物的输出线圈。该平台能够同时处理来自四个麦克风的信号,并产生同步的双耳耳蜗植入物输出,从而驱动两个(双向植入)SP或XP植入物。研究人员可以对音频信号预处理算法(例如双耳波束成形)和新型双耳刺激策略(在植入物限制内)进行编程。当整个研究平台与Oticon Medical SP植入物结合使用时,可以将单个电极上的耳间电极定时控制在±1?μs以内,并且耳间能量差可以控制在±2%之内。因此,该新平台特别适合于实时进行与听觉时间差异和听觉水平差异相结合的实验。该平台还支持瞬时变化的刺激率,从而可以进行调查,例如改变刺激率对音高感知的影响。由于处理过程可以随时更改,因此研究人员可以使用此平台来研究由不同处理策略引起的感知变化。

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