Rotman Research Institute at Baycrest, 3560 Bathurst Street, Toronto, ON, Canada M6A 2E1.
Soc Cogn Affect Neurosci. 2013 Jan;8(1):15-26. doi: 10.1093/scan/nss066. Epub 2012 Jun 11.
One component of mindfulness training (MT) is the development of interoceptive attention (IA) to visceral bodily sensations, facilitated through daily practices such as breath monitoring. Using functional magnetic resonance imaging (fMRI), we examined experience-dependent functional plasticity in accessing interoceptive representations by comparing graduates of a Mindfulness-Based Stress Reduction course to a waitlisted control group. IA to respiratory sensations was contrasted against two visual tasks, controlling for attentional requirements non-specific to IA such as maintaining sensation and suppressing distraction. In anatomically partitioned analyses of insula activity, MT predicted greater IA-related activity in anterior dysgranular insula regions, consistent with greater integration of interoceptive sensation with external context. MT also predicted decreased recruitment of the dorsomedial prefrontal cortex (DMPFC) during IA, and altered functional connectivity between the DMPFC and the posterior insula, putative primary interoceptive cortex. Furthermore, meditation practice compliance predicted greater posterior insula and reduced visual pathway recruitment during IA. These findings suggest that interoceptive training modulates task-specific cortical recruitment, analogous to training-related plasticity observed in the external senses. Further, DMPFC modulation of IA networks may be an important mechanism by which MT alters information processing in the brain, increasing the contribution of interoception to perceptual experience.
正念训练(MT)的一个组成部分是对内感受注意(IA)的发展,通过呼吸监测等日常练习来促进这种注意。我们使用功能磁共振成像(fMRI),通过将正念减压课程的毕业生与候补对照组进行比较,研究了对内感受表现的经验依赖性功能可塑性。将呼吸感觉的 IA 与两个视觉任务进行对比,控制了与 IA 无关的注意力要求,例如保持感觉和抑制分心。在岛叶活动的解剖分区分析中,MT 预测在前颗粒状岛叶区域与 IA 相关的活动增加,这与将内感受与外部环境更好地整合一致。MT 还预测在 IA 期间背内侧前额叶皮层(DMPFC)的招募减少,以及 DMPFC 和后岛叶之间的功能连接改变,后岛叶是内感受的主要皮质。此外,冥想练习的依从性预测 IA 期间后岛叶和视觉通路的招募减少。这些发现表明,内感受训练调节特定于任务的皮质招募,类似于在外部感官中观察到的训练相关可塑性。此外,DMPFC 对 IA 网络的调节可能是 MT 改变大脑信息处理的重要机制,增加了内感受对感知体验的贡献。