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Localising the auditory N1m with event-related beamformers: localisation accuracy following bilateral and unilateral stimulation

机译:用事件相关的波束形成器定位听觉N1M:双边和单侧刺激后的本地化准确性

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The auditory evoked N1m-P2m response complex presents a challenging case for MEG source-modelling, because symmetrical, phase-locked activity occurs in the hemispheres both contralateral and ipsilateral to stimulation. Beamformer methods, in particular, can be susceptible to localisation bias and spurious sources under these conditions. This study explored the accuracy and efficiency of event-related beamformer source models for auditory MEG data under typical experimental conditions: monaural and diotic stimulation; and whole-head beamformer analysis compared to a half-head analysis using only sensors from the hemisphere contralateral to stimulation. Event-related beamformer localisations were also compared with more traditional single-dipole models. At the group level, the event-related beamformer performed equally well as the single-dipole models in terms of accuracy for both the N1m and the P2m, and in terms of efficiency (number of successful source models) for the N1m. The results yielded by the half-head analysis did not differ significantly from those produced by the traditional whole-head analysis. Any localisation bias caused by the presence of correlated sources is minimal in the context of the inter-individual variability in source localisations. In conclusion, event-related beamformers provide a useful alternative to equivalent-current dipole models in localisation of auditory evoked responses.
机译:诱发N1M-P2M响应复合物的听觉呈现出敏锐源型造型案例,因为对对侧和同侧的对称,锁相活性发生在刺激的半球中。特别地,光束形成器方法可以易于在这些条件下定位偏差和虚假来源。本研究探讨了典型实验条件下对听觉MEG数据的比较与听觉MEG数据的准确性和效率:单声道和DIOTIC刺激;和全头束形成器分析与仅使用从半球对侧的传感器进行刺激的半头分析相比。还与更传统的单偶极模型进行比较了与事件相关的波束形成器定位。在组级别,事件相关的波束形成器在N1M和P2M的准确性方面同等地执行,并且在N1M的效率(成功源模型的数量)方面进行了同样的单倍机模型。半头分析产生的结果与传统全头分析产生的结果没有显着差异。由于相关源存在引起的任何本地化偏差在源定位的各个可变性的上下文中是最小的。总之,事件相关的波束形成器提供了对听觉诱发反应的定位的等同电流偶极模型的有用替代品。

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