Ramos Macias Angel, Perez Zaballos Maria Teresa, Ramos de Miguel Angel, Cervera Paz Javier
*Department of Otolaryngology Head Neck Surgery, Las Palmas University Hospital †Department of Otolaryngology Head Neck Surgery, Psychoacoustic Laboratory, Las Palmas University, Las Palmas ‡Department of Otolaryngolgy, Navarra University Clinic, Navarra University, Pamplona §Department of Statistics, Las Palmas University, Las Palmas, Spain.
Otol Neurotol. 2017 Dec;38(10):e429-e437. doi: 10.1097/MAO.0000000000001594.
Modiolar proximity of the cochlear implant electrodes and low impedance values have a positive effect on electrical pitch discrimination.
The proximity of the cochlear electrode to the modiolar wall can determine changes in tissue and fluid environment. With the onset of soft-surgery techniques, the trauma caused during surgery has been reduced, minimizing fibrous growth.
Computed tomography-scan measurements of electrode-inner wall distance and psychoacoustic electrode discrimination tests were done. Neural Response Telemery and impedance data were used in the study.
It was found that patients fitted with perimodiolar arrays have lower impedance values and smaller electrode-inner wall distances than those fitted with straight arrays. These variables were significantly correlated to electrode discrimination. It was found that a closer distance to the modiolus also results in better electrode discrimination.
Perimodiolar electrodes could be a better solution in terms of pitch discrimination both because they are closer to the modiolus and because their impedance is lower.
人工耳蜗电极靠近蜗轴以及低阻抗值对电音高辨别有积极影响。
耳蜗电极与蜗轴壁的接近程度可决定组织和流体环境的变化。随着软手术技术的出现,手术过程中造成的创伤已减少,使纤维生长最小化。
进行了电极与内壁距离的计算机断层扫描测量以及心理声学电极辨别测试。研究中使用了神经反应遥测和阻抗数据。
发现与植入直排阵列的患者相比,植入蜗周阵列的患者阻抗值更低,电极与内壁的距离更小。这些变量与电极辨别显著相关。还发现距离蜗轴更近也会带来更好的电极辨别效果。
就音高辨别而言,蜗周电极可能是更好的解决方案,这既是因为它们更靠近蜗轴,也是因为它们的阻抗更低。