Weizmann Institute of Science, 7610001, Rehovot, Israel.
Washington University in Saint Louis, St. Louis, 63110, USA.
Sci Rep. 2022 Oct 7;12(1):16867. doi: 10.1038/s41598-022-20866-5.
Spontaneous brain activity, measured with resting state fMRI (R-fMRI), is correlated among regions that are co-activated by behavioral tasks. It is unclear, however, whether spatial patterns of spontaneous activity within a cortical region correspond to spatial patterns of activity evoked by specific stimuli, actions, or mental states. The current study investigated the hypothesis that spontaneous activity in motor cortex represents motor patterns commonly occurring in daily life. To test this hypothesis 15 healthy participants were scanned while performing four different hand movements. Three movements (Grip, Extend, Pinch) were ecological involving grip and grasp hand movements; one control movement involving the rotation of the wrist was not ecological and infrequent (Shake). They were also scanned at rest before and after the execution of the motor tasks (resting-state scans). Using the task data, we identified movement-specific patterns in the primary motor cortex. These task-defined patterns were compared to resting-state patterns in the same motor region. We also performed a control analysis within the primary visual cortex. We found that spontaneous activity patterns in the primary motor cortex were more like task patterns for ecological than control movements. In contrast, there was no difference between ecological and control hand movements in the primary visual area. These findings provide evidence that spontaneous activity in human motor cortex forms fine-scale, patterned representations associated with behaviors that frequently occur in daily life.
自发脑活动,通过静息态 fMRI(R-fMRI)测量,与行为任务共同激活的区域之间存在相关性。然而,皮质区域内自发活动的空间模式是否与特定刺激、动作或心理状态引起的活动空间模式相对应,目前尚不清楚。本研究假设运动皮层的自发活动代表日常生活中常见的运动模式。为了验证这一假设,15 名健康参与者在执行 4 种不同手部运动时接受了扫描。3 种运动(握持、伸展、捏合)是涉及握持和抓握手部运动的生态运动;一种不生态且不常见的控制运动(摇动)涉及手腕的旋转。在执行运动任务之前和之后(静息状态扫描),他们还接受了扫描。使用任务数据,我们确定了初级运动皮层中的运动特异性模式。将这些任务定义的模式与同一运动区域的静息状态模式进行比较。我们还在初级视觉皮层内进行了对照分析。我们发现,初级运动皮层中的自发活动模式更类似于生态运动而不是控制运动的任务模式。相比之下,初级视觉区域中没有生态运动和控制手部运动之间的差异。这些发现提供了证据,表明人类运动皮层中的自发活动形成了与日常生活中经常发生的行为相关的精细、有模式的表示。