Bozorg-Grayeli Alexis, Guevara Nicolas, Bebear Jean-Pierre, Ardoint Marine, Saaï Sonia, Hoen Michel, Gnansia Dan, Romanet Philippe, Lavieille Jean-Pierre
Department of Head and Neck Surgery, CHU-University Hospital of Dijon, Dijon, France.
University Head and Neck Institute, CHU de Nice, Nice, France.
Eur Arch Otorhinolaryngol. 2016 Sep;273(9):2363-71. doi: 10.1007/s00405-015-3796-1. Epub 2015 Oct 17.
Technological advances in the domain of digital signal processing adapted to cochlear implants (CI) are partially responsible for the ever-improving outcomes observed with this neural prosthesis. The goal of the present study was to evaluate audiometric outcomes with a new signal processing strategy implemented in Oticon Medical-Neurelec cochlear implant systems, the xDP strategy. The core of this approach is a preset-based back-end output compression system, modulating a multi-channel transfer function depending on the intensity and information content of input sounds. Twenty adult CI patients, matched for age and CI experience, were included in this study. Pure-tone thresholds and vocal audiometry scores were measured with their former signal processing strategy and with xDP. Speech perception was assessed using dissyllabic words presented in quiet, at different intensity levels: 40, 55, 70, and 85 dB SPL, and in a cocktail party noise at a signal-to-noise ratio of +10 dB. Results with the xDP strategy showed, as awaited, no major modification of pure-tone thresholds. A global increase of speech perception scores was observed after a 1-month habituation period, with significant improvements for speech perception in quiet for moderate (55 dB SPL), loud speech sounds (85 dB SPL), and speech-in-noise comprehension. Subjective signal quality assessment showed a preference for Crystalis(xDP) over the former strategy. These results allow the quantification of improvements provided by the xDP signal processing strategy.
适用于人工耳蜗(CI)的数字信号处理领域的技术进步,部分促成了这种神经假体所带来的不断改善的效果。本研究的目的是评估在奥迪康医疗-纽力可人工耳蜗系统中实施的一种新信号处理策略——xDP策略的听力测定结果。这种方法的核心是一个基于预设的后端输出压缩系统,它根据输入声音的强度和信息内容来调制多通道传递函数。本研究纳入了20名年龄和人工耳蜗使用经验相匹配的成年人工耳蜗患者。分别使用他们之前的信号处理策略和xDP策略测量纯音阈值和言语测听分数。使用在安静环境中、不同强度水平(40、55、70和85 dB SPL)下呈现的双音节词,以及在信噪比为+10 dB的鸡尾酒会噪声环境中呈现的双音节词来评估言语感知。正如预期的那样,xDP策略的结果显示纯音阈值没有重大变化。在1个月的适应期后,观察到言语感知分数总体上升,在安静环境中对于中等强度(55 dB SPL)、大声言语声音(85 dB SPL)以及噪声中的言语理解方面有显著改善。主观信号质量评估显示,相较于之前的策略,患者更倾向于Crystalis(xDP)。这些结果能够对xDP信号处理策略所带来的改善进行量化。