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Re-wiring the brain: Increased functional connectivity within primary somatosensory cortex following synchronous co-activation

机译:重新连接大脑:同步共激活后初级体感皮层内的功能连接性增强

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摘要

The primary somatosensory cortex shows precise topographical organisation, but can be quickly modified by alterations to sensory inputs. Temporally correlated sensory inputs to the digits can result in the merging of digit representations on the cortical surface. Underlying mechanisms driving these changes are unclear but the strengthening of intra-cortical synaptic connections via Hebbian mechanisms has been suggested. We use fMRI measures of temporal coherence to infer alterations in the relative strength of neuronal connections between digit regions 2 and 4 following 3 hours of synchronous and asynchronous co-activation. Following synchronous co-activation we find a 20% increase in temporal coherence of the fMRI signal (p = 0.0004). No significant change is seen following asynchronous co-activation suggesting that temporal coincidence between the two digit inputs during co-activation is driving this coherence change. In line with previous work we also find a trend towards reduced separation of the digit representations following synchronous co-activation and significantly increased separation for the asynchronous case. Increased coherence is significantly correlated with reduced digit separation for the synchronous case. This study shows that passive synchronous stimulation to the digits strengthens the underlying cortical connections between the digit regions in only a few hours, and that this mechanism may be related to topographical re-organisation.
机译:主要的体感皮层显示出精确的地形组织,但可以通过更改感官输入来快速修改。与手指的时间相关的感觉输入可以导致在皮层表面上的手指表示的合并。尚不清楚驱动这些变化的潜在机制,但已建议通过Hebbian机制加强皮质内突触连接。我们使用时间相干性的fMRI测度来推断在3个小时的同步和异步共激活后数字区域2和4之间的神经元连接的相对强度的变化。在同步共激活之后,我们发现fMRI信号的时间相干性增加了20%(p = 0.0004)。异步共同激活后未发现明显变化,表明共同激活过程中两位数字输入之间的时间一致性正在驱动此一致性变化。与以前的工作一致,我们还发现了一种趋势,即同步共激活后数字表示的分隔减少,而异步情况下的分隔则明显增加。对于同步情况,增加的连贯性与减少的数字间隔显着相关。这项研究表明,对手指的被动同步刺激仅在几个小时内就增强了手指区域之间潜在的皮质连接,并且这种机制可能与地形重组有关。

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