Bachman Mark, Zeng Fan-Gang, Xu Tao, Li G-P
Department of Electrical and Computer Engineering, University of California, Irvine, CA 92697, USA.
Audiol Neurootol. 2006;11(2):95-103. doi: 10.1159/000090682. Epub 2006 Jan 17.
In this paper we report on a multi-resonant transducer that may be used to replace a traditional speech processor in cochlear implant applications. The transducer, made from an array of micro-machined polymer resonators, is capable of passively splitting sound into its frequency sub-bands without the need for analog-to-digital conversion and subsequent digital processing. Since all bands are mechanically filtered in parallel, there is low latency in the output signals. The simplicity of the device, high channel capability, low power requirements, and small form factor (less than 1 cm) make it a good candidate for a completely implantable bionic ear device.
在本文中,我们报道了一种多谐振换能器,它可用于替代耳蜗植入应用中的传统语音处理器。该换能器由微机械聚合物谐振器阵列制成,能够在无需模数转换及后续数字处理的情况下,将声音被动地分解为其频率子带。由于所有频段是并行进行机械滤波的,所以输出信号的延迟较低。该设备的简单性、高通道能力、低功耗要求以及小尺寸(小于1厘米)使其成为完全可植入式仿生耳设备的理想候选者。