使用单电极刺激的电诱发晚期潜伏反应及其与小儿人工耳蜗使用者言语感知的关系

IF 2.4 3区 医学 Q3 NEUROSCIENCES Frontiers in Human Neuroscience Pub Date : 2024-09-13 DOI:10.3389/fnhum.2024.1441854
Palani Saravanan, Neelamegarajan Devi, Chinnaraj Geetha
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引用次数: 0

摘要

引言 辅助听觉晚期潜伏反应(LLR)是评估儿童人工耳蜗植入后听觉皮质成熟度的客观工具。虽然辅助 LLR 通常使用声场声学刺激进行测量,但记录电诱发 LLR(eLLR)具有明显的优势,如更好的刺激控制和单电极刺激能力。因此,本研究旨在比较单电极刺激在耳尖、中间和基底区域产生的电诱发 LLR 反应,并评估它们与小儿人工耳蜗(CI)植入者的言语感知之间的关系。对这些电极部位的 eLLR 反应进行了比较,并评估了安静状态下的语音识别分数和植入年龄与 eLLR 成分之间的关系。结果在所有参与者的 81 个测试电极中,有 77 个电极检测到了 eLLR 反应(其中 27 个电极检测到了耳尖反应,26 个电极检测到了中间反应,24 个电极检测到了基底反应)。不同电极部位的 P1、N1 延迟和 P1 振幅无明显差异。然而,与基底刺激相比,在心尖刺激下观察到的 N1 和 P1-N1 振幅明显更大。中间电极和根尖电极刺激的 N1 振幅没有差异,中间电极刺激的 P1-N1 振幅明显大于基底电极刺激的 P1-N1 振幅,根尖电极和中间电极刺激的 P1-N1 振幅没有差异。安静时的语音识别得分与心尖刺激时的 N1、P1-N1 振幅之间存在中等程度的正相关。植入年龄与根尖刺激的 N1 振幅和基底刺激的 P1-N1 振幅呈负相关。不同电极部位 eLLR 反应的差异表明听觉皮层的成熟度存在差异。这些发现强调了 N1 生物标记在评估高阶听觉皮层发育方面的重要性。因此,利用单电极刺激的 eLLR 可作为评估儿童人工耳蜗植入后成熟变化的重要工具。
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Electrically evoked late latency response using single electrode stimulation and its relation to speech perception among paediatric cochlear implant users
IntroductionAided auditory late latency response (LLR) serves as an objective tool for evaluating auditory cortical maturation following cochlear implantation in children. While aided LLR is commonly measured using sound-field acoustic stimulation, recording electrically evoked LLR (eLLR) offer distinct advantages, such as improved stimulus control and the capability for single electrode stimulation. Hence, the study aimed to compare eLLR responses with single electrode stimulation in the apical, middle, and basal regions and to evaluate their relationship with speech perception in paediatric cochlear implant (CI) recipients.MethodeLLR responses with single electrode stimulation were measured in 27 paediatric unilateral CI users with an active recording electrode placed at Cz. The stimuli consisted of 36 msec biphasic pulse trains presented across three electrode sites (apical-E20, middle-E11, and basal-E03). eLLR responses were compared across these electrode sites, and the relationship between speech recognition scores in quiet and age at implantation with eLLR components was evaluated.ResultseLLR responses were detected in 77 out of 81 tested electrodes of all participants combined (27 for apical, 26 for middle, and 24 for basal stimulation). There were no significant differences in P1, N1 latencies and P1 amplitude across electrode site. However, significantly larger N1 and P1-N1 amplitudes were observed for apical stimulations compared to basal stimulations. No differences in N1 amplitude were found between middle and apical stimulations, and the P1-N1 amplitude was significantly larger for middle compared to basal electrode stimulation, with no difference between the apical and middle electrodes stimulation. A moderate positive correlation was present between speech recognition scores in quiet and both N1, P1-N1 amplitudes for apical stimulation. Age at implantation was negatively correlated with N1 amplitude for the apical and P1-N1 amplitude for basal stimulation.DiscussioneLLR responses could be elicited in majority of paediatric CI users across electrode sites. Variations in eLLR responses across electrode sites suggest disparities in auditory cortical maturation. The findings underscore the significance of the N1 biomarker in evaluating higher-order auditory cortical development. Therefore, utilizing eLLR with single electrode stimulation may serve as a valuable tool for assessing post-cochlear implantation maturational changes in paediatric populations.
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来源期刊
Frontiers in Human Neuroscience
Frontiers in Human Neuroscience 医学-神经科学
CiteScore
4.70
自引率
6.90%
发文量
830
审稿时长
2-4 weeks
期刊介绍: Frontiers in Human Neuroscience is a first-tier electronic journal devoted to understanding the brain mechanisms supporting cognitive and social behavior in humans, and how these mechanisms might be altered in disease states. The last 25 years have seen an explosive growth in both the methods and the theoretical constructs available to study the human brain. Advances in electrophysiological, neuroimaging, neuropsychological, psychophysical, neuropharmacological and computational approaches have provided key insights into the mechanisms of a broad range of human behaviors in both health and disease. Work in human neuroscience ranges from the cognitive domain, including areas such as memory, attention, language and perception to the social domain, with this last subject addressing topics, such as interpersonal interactions, social discourse and emotional regulation. How these processes unfold during development, mature in adulthood and often decline in aging, and how they are altered in a host of developmental, neurological and psychiatric disorders, has become increasingly amenable to human neuroscience research approaches. Work in human neuroscience has influenced many areas of inquiry ranging from social and cognitive psychology to economics, law and public policy. Accordingly, our journal will provide a forum for human research spanning all areas of human cognitive, social, developmental and translational neuroscience using any research approach.
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