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Early unilateral cochlear implantation promotes mature cortical asymmetries in adolescents who are deaf

机译:早期单侧人工耳蜗可促进聋哑青少年的成熟皮质不对称

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摘要

Unilateral cochlear implant (CI) stimulation establishes hearing to children who are deaf but compromises bilateral auditory development if a second implant is not provided within ∼1.5 years. In this study we asked: 1) What are the cortical consequences of missing this early sensitive period once children reach adolescence? 2) What are the effects of unilateral deprivation on the pathways from the opposite ear? Cortical responses were recorded from 64‐cephalic electrodes within the first week of bilateral CI activation in 34 adolescents who had over 10 years of unilateral right CI experience and in 16 normal hearing peers. Cortical activation underlying the evoked peaks was localized to areas of the brain using beamformer imaging. The first CI evoked activity which was more strongly lateralized to the contralateral left hemisphere than normal, with abnormal recruitment of the left prefrontal cortex (involved in cognition/attention), left temporo‐parietal‐occipital junction (multi‐modal integration), and right precuneus (visual processing) region. CI stimulation in the opposite deprived ear evoked atypical cortical responses with abnormally large and widespread dipole activity across the cortex. Thus, using a unilateral CI to hear beyond the period of cortical maturation causes lasting asymmetries in the auditory system, requires recruitment of additional cortical areas to support hearing, and does little to protect the unstimulated pathways from effects of auditory deprivation. The persistence of this reorganization into maturity could signal a closing of a sensitive period for promoting auditory development on the deprived side. . ©
机译:单侧人工耳蜗(CI)刺激可为聋哑儿童建立听力,但如果在约1.5年内未提供第二种人工耳蜗,则会损害双侧听觉发育。在这项研究中,我们问:1)一旦儿童进入青春期,错过这个早期敏感期的皮质后果是什么? 2)单边剥夺对从另一只耳朵传出的通路有什么影响?在双侧CI激活的第一周内,从34头单侧右CI经验超过10年的青少年和16名正常听力同伴中,记录了64头电极的皮质反应。使用波束形成器成像,诱发峰下方的皮层激活被定位在大脑区域。第一个CI诱发的活动比对侧更强烈地向对侧左半球偏侧,左额叶前额叶皮层异常募集(参与认知/注意),左颞顶叶枕交界(多模式整合)和右前胎(视觉处理)区域。另一只被剥夺的耳朵中的CI刺激引起非典型皮层反应,整个皮层的偶极子活动异常大且分布广泛。因此,在皮质成熟期之后使用单侧CI进行听觉会导致听觉系统中的持续不对称,需要募集更多的皮质区域来支持听力,并且几乎不能保护未刺激的途径免受听觉剥夺的影响。这种重组到成熟的持久性可能标志着一个敏感时期的结束,该时期将促进被剥夺方面的听觉发展。 。 ©

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