Respiration-timing-dependent changes in activation of neural substrates during cognitive processes.

Cerebral cortex communications Pub Date : 2022-09-13 eCollection Date: 2022-01-01 DOI:10.1093/texcom/tgac038
Nozomu H Nakamura, Masaki Fukunaga, Tetsuya Yamamoto, Norihiro Sadato, Yoshitaka Oku
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引用次数: 1

Abstract

We previously showed that cognitive performance declines when the retrieval process spans an expiratory-to-inspiratory (EI) phase transition (an onset of inspiration). To identify the neural underpinning of this phenomenon, we conducted functional magnetic resonance imaging (fMRI) while participants performed a delayed matching-to-sample (DMTS) recognition memory task with a short delay. Respiration during the task was monitored using a nasal cannula. Behavioral data replicated the decline in memory performance specific to the EI transition during the retrieval process, while an extensive array of frontoparietal regions were activated during the encoding, delay, and retrieval processes of the task. Within these regions, when the retrieval process spanned the EI transition, activation was reduced in the anterior cluster of the right temporoparietal junction (TPJa, compared to cases when the retrieval process spanned the inspiratory-to-expiratory phase transition) and the left and right middle frontal gyrus, dorsomedial prefrontal cortex, and somatosensory areas (compared to cases when the retrieval process did not span any phase transition). These results in task-related activity may represent respiratory interference specifically in information manipulation rather than memory storage. Our findings demonstrate a cortical-level effect of respiratory phases on cognitive processes and highlight the importance of the timing of breathing for successful performance.

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认知过程中神经基质激活的呼吸时间依赖性变化。
我们之前的研究表明,当检索过程跨越呼气到吸气(EI)阶段(吸气开始)时,认知能力会下降。为了确定这一现象的神经基础,我们对参与者进行了功能性磁共振成像(fMRI),同时参与者在短时间内执行延迟匹配样本(DMTS)识别记忆任务。在任务期间,使用鼻插管监测呼吸。行为数据重现了检索过程中EI转换导致的记忆性能下降,而在任务的编码、延迟和检索过程中,大量额顶叶区域被激活。在这些区域中,当检索过程跨越EI转换时,与检索过程跨越吸气到呼气相变的情况相比,右侧颞顶叶交界处(TPJa)的前簇以及左右额叶中回、背内侧前额叶皮层和体感区(与检索过程不跨越任何相变的情况相比)的激活减少。这些与任务相关的活动的结果可能代表呼吸干扰,特别是在信息操作而不是记忆存储。我们的研究结果证明了呼吸阶段对认知过程的皮质水平影响,并强调了呼吸时机对成功表现的重要性。
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