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The Insula Mediates Access to Awareness of Visual Stimuli Presented Synchronously to the Heartbeat

机译:绝缘体介导了与心跳同步呈现的视觉刺激意识

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摘要

The processing of interoceptive signals in the insular cortex is thought to underlie self-awareness. However, the influence of interoception on visual awareness and the role of the insular cortex in this process remain unclear. Here, we show in a series of experiments that the relative timing of visual stimuli with respect to the heartbeat modulates visual awareness. We used two masking techniques and show that conscious access for visual stimuli synchronous to participants' heartbeat is suppressed compared with the same stimuli presented asynchronously to their heartbeat. Two independent brain imaging experiments using high-resolution fMRI revealed that the insular cortex was sensitive to both visible and invisible cardio–visual stimulation, showing reduced activation for visual stimuli presented synchronously to the heartbeat. Our results show that interoceptive insular processing affects visual awareness, demonstrating the role of the insula in integrating interoceptive and exteroceptive signals and in the processing of conscious signals beyond self-awareness.>SIGNIFICANCE STATEMENT There is growing evidence that interoceptive signals conveying information regarding the internal state of the body influence perception and self-awareness. The insular cortex, which receives sensory inputs from both interoceptive and exteroceptive sources, is thought to integrate these multimodal signals. This study shows that cardiac interoceptive signals modulate awareness for visual stimuli such that visual stimuli occurring at the cardiac frequency take longer to access visual awareness and are more difficult to discriminate. Two fMRI experiments show that the insular region is sensitive to this cardio–visual synchrony even when the visual stimuli are rendered invisible through interocular masking. The results indicate a perceptual and neural suppression for visual events coinciding with cardiac interoceptive signals.
机译:岛状皮层中的感知信号的处理被认为是自我意识的基础。然而,对这一过程中,对视觉感知和岛突皮层的作用的受孕影响尚不清楚。在这里,我们通过一系列实验表明,视觉刺激相对于心跳的相对时间会调节视觉意识。我们使用了两种掩蔽技术,表明与参与者心跳异步呈现的相同刺激相比,与参与者心跳同步的视觉刺激的有意识访问受到了抑制。两项使用高分辨率功能磁共振成像的独立脑成像实验表明,岛状皮层对可见和不可见心电刺激均敏感,显示出与心跳同步出现的视觉刺激的激活减少。我们的研究结果表明,感知性岛突处理会影响视觉意识,证明绝缘体在整合感知性和躯体感知性信号以及超越自我意识的意识信号处理中的作用。>重要意义声明信号传达有关身体内部状态的信息,影响感知和自我意识。岛状皮层从感受性和感受性来源接收感觉输入,被认为整合了这些多峰信号。这项研究表明,心脏感受性信号调节视觉刺激的意识,从而以心脏频率发生的视觉刺激需要更长的时间才能获得视觉意识,并且更难以区分。两项功能磁共振成像实验表明,即使通过眼间掩膜使视觉刺激不可见,岛状区域也对这种心-视同步性敏感。结果表明,视觉事件的感知和神经抑制与心脏感知信号一致。

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