Graduate School of Human Sciences, Osaka University, Osaka, Japan.
Japan Society for the Promotion of Science, Tokyo, Japan.
Psychophysiology. 2024 May;61(5):e14506. doi: 10.1111/psyp.14506. Epub 2023 Dec 27.
The systolic and diastolic phases of the cardiac cycle are known to affect perception and cognition differently. Higher order processing tends to be facilitated at systole, whereas sensory processing of external stimuli tends to be impaired at systole compared to diastole. The current study aims to examine whether the cardiac cycle affects auditory deviance detection, as reflected in the mismatch negativity (MMN) of the event-related brain potential (ERP). We recorded the intensity deviance response to deviant tones (70 dB) presented among standard tones (60 or 80 dB, depending on blocks) and calculated the MMN by subtracting standard ERP waveforms from deviant ERP waveforms. We also assessed intensity-dependent N1 and P2 amplitude changes by subtracting ERPs elicited by soft standard tones (60 dB) from ERPs elicited by loud standard tones (80 dB). These subtraction methods were used to eliminate phase-locked cardiac-related electric artifacts that overlap auditory ERPs. The endogenous MMN was expected to be larger at systole, reflecting the facilitation of memory-based auditory deviance detection, whereas the exogenous N1 and P2 would be smaller at systole, reflecting impaired exteroceptive sensory processing. However, after the elimination of cardiac-related artifacts, there were no significant differences between systole and diastole in any ERP components. The intensity-dependent N1 and P2 amplitude changes were not obvious in either cardiac phase, probably because of the short interstimulus intervals. The lack of a cardiac phase effect on MMN amplitude suggests that preattentive auditory processing may not be affected by bodily signals from the heart.
心动周期的收缩期和舒张期已知会对感知和认知产生不同的影响。较高阶的处理过程往往在收缩期得到促进,而与舒张期相比,对外界刺激的感觉处理在收缩期会受到损害。本研究旨在探讨心动周期是否会影响听觉变化检测,这反映在事件相关脑电位(ERP)的失匹配负波(MMN)中。我们记录了偏差音(70dB)在标准音(60 或 80dB,取决于块)之间呈现时的强度变化反应,并通过从偏差 ERP 中减去标准 ERP 来计算 MMN。我们还通过从响亮的标准音(80dB)诱发的 ERP 中减去柔和的标准音(60dB)诱发的 ERP,评估了强度依赖性 N1 和 P2 振幅变化。这些减法方法用于消除与听觉 ERP 重叠的心电相关电伪迹。预期内源性 MMN 在收缩期更大,反映了基于记忆的听觉变化检测的促进,而外源性 N1 和 P2 在收缩期较小,反映了外感受觉处理受损。然而,在心电相关伪迹消除后,在任何 ERP 成分中,收缩期和舒张期之间均无显著差异。在任何心动周期中,强度依赖性 N1 和 P2 振幅变化都不明显,可能是因为刺激间间隔较短。MMN 振幅没有心动周期效应表明,非注意听觉处理可能不受来自心脏的身体信号的影响。