立体声录音
医学
人工耳蜗植入
听力学
听觉皮层
刺激
脑回
正电子发射断层摄影术
颞上回
神经科学
植入
皮质(解剖学)
核医学
大脑活动与冥想
心理学
两分听
声音定位
颞中回
颞叶皮质
单侧听力损失
大脑定位
听力损失
作者
Iva Speck,Susan Arndt,Johannes Thurow,Lars Frings,Thomas Wesarg,Antje Aschendorff,Philipp T. Meyer,Ganna Blazhenets
标识
DOI:10.1007/s00259-025-07639-8
摘要
Abstract Purpose We examined neuronal activation patterns in single-sided deaf (SSD) cochlear implant (CI) recipients and normal-hearing (NH) controls to unravel neuronal mechanisms underlying binaural integration in SSD-CI. Methods 20 SSD-CI (CI left) and 10 NH controls underwent [ 15 O]water PET (assessing relative cerebral blood flow, rCBF) during auditory stimulation (forward or time-reversed, unilaterally to NH ear or bilaterally). Subjects were divided into SSD-CI with good (≥ 80%) and poor (< 80%) performance based on a median split of correct word understanding in PET background noise. Voxel-wise analyses identified volumes of interest for regional analyses (right primary auditory cortex (PAC), left superior temporal gyrus (STG)) for volume-of-interest analyses. Results Compared to SSD-CI with good performance, those with poor performance showed poorer word understanding during unilateral stimulation of the NH ear. The activation of the right PAC was significant and comparable across groups. The asymmetry index of rCBF of the PAC decreased significantly in NH controls and SSD-CI with good performance from uni- to bilateral stimulation, but not in SSD-CI with poor performance. A significant activation of left STG was only observed in NH controls and SSD-CI with good performance. Conclusion This study underlines the usefulness of [ 15 O]water PET to explore regional neuronal mechanisms underlying CI performance: SSD-CI with poor performance are characterized by a low normal word understanding with the NH ear only (in line with the lack of STG activation) and compromised binaural integration, although the CI provides quantitatively comparable input to the contralateral PAC in both SSD-CI groups.
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