首页> 外文期刊>Acta Oto-Laryngologica >Initial experiments to develop a MEMS transducer for a new implantable audioprosthesis to substitute the tympanic-ossicular system.
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Initial experiments to develop a MEMS transducer for a new implantable audioprosthesis to substitute the tympanic-ossicular system.

机译:开发用于新型植入式假体以替代鼓膜听觉系统的MEMS换能器的初步实验。

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CONCLUSION: We tested one prototype of a new audioprosthesis including the audioprocessor, the implemented algorithms and fitting platform in a small group of selected patients with mixed hypoacusis due to earlier bilateral radical mastoidectomy. It was effective to compensate the conductive and the neurosensory components of those patients. Results regarding the energy, frequency and other requirements of the output transduction make it possible to develop a suitable actuator with the available Micro-Electromechanic-Machine-System (MEMS) technology to substitute the conventional transducer of the prototype. OBJECTIVES: The objectives were: a) to evaluate the effectiveness of the whole fitting system, and b) to obtain information about the required energy to design the MEMS actuator. MATERIALS AND METHODS: The experiments were conducted with the A prototype of the prosthesis equipped with an output transducer coupled to the oval window. Two algorithms and three cases were tested. RESULTS: The audioprocessor with the implemented FIR filter-67 coefficients paradigm algorithms, and the fitting system were shown to be adequate for clinical use. Effectiveness parameters were: pure tone average gains 20-33.3 dB; gap closure 25.5-31.8 dB; speech reception thresholds improvement 15-20 dB. Required gain: 5-40 dB. Subjectively, patients considered the results very satisfactory.
机译:结论:我们对一小部分因早期双侧乳突根治性切除而患有混合性低听觉的患者进行了测试,该新假体的原型包括音频处理器,实施的算法和拟合平台。有效补偿那些患者的传导和神经感觉成分。有关输出转换的能量,频率和其他要求的结果,使得可以利用可用的微机电机械系统(MEMS)技术开发合适的执行器,以替代原型的常规换能器。目标:目的是:a)评估整个装配系统的有效性,以及b)获得有关设计MEMS执行器所需能量的信息。材料与方法:实验是在假体的原型上进行的,该原型配备了与椭圆形窗口耦合的输出换能器。测试了两种算法和三种情况。结果:音频处理器具有已实现的FIR滤波器67系数范例算法和拟合系统,已证明足以用于临床。效果参数为:纯音平均增益20-33.3 dB;间隙闭合25.5-31.8 dB;语音接收阈值提高15-20 dB。所需增益:5-40 dB。主观上,患者认为结果非常令人满意。

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