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Computationally efficient, configurable, causal, real-time phase detection applied to local field potential oscillations

机译:计算有效,可配置,因果,实时相位检测,适用于局部场电势振荡

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Neurological implantable devices with electrophysiological sensing capabilities may enable new medical therapies and diagnostics. Of specific interest is phase-dependent delivery of therapy-such as electrical stimulation-as a potential method to enhance therapy effectiveness in improving diseased or damaged physiological processes with respect to rhythmic biomarkers, while minimizing the average energy required to deliver the therapy. To address this need for phase-detection, within the constraints of device power limits, we have developed a computationally efficient, causal, real-time Fourier transform (RTFT) for use as a phase detection method that is both general and highly configurable. The application of this method to theta-band local field potentials recorded from the brains of sheep is demonstrated.
机译:具有电生理传感功能的神经可植入设备可以实现新的医学治疗和诊断。特别感兴趣的是治疗的阶段依赖性递送,例如电刺激,这是一种潜在的方法,可以增强治疗有效性,从而改善有节奏的生物标记物的患病或受损生理过程,同时最大程度地降低递送治疗所需的平均能量。为了满足相位检测的这种需求,我们在器件功率限制的范围内,开发了一种计算效率高,因果关系的实时傅立叶变换(RTFT),可用作通用且高度可配置的相位检测方法。证明了该方法在绵羊脑中记录的θ带局部场电势中的应用。

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