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Opposite Adaptive Processing of Stimulus Intensity in Two Major Nuclei of the Somatosensory Brainstem

机译:体感性脑干两个主要核中刺激强度的相反自适应处理

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摘要

Tactile information ascends from the brainstem to the somatosensory cortex via two major parallel pathways, lemniscal and paralemniscal. In both pathways, and throughout all processing stations, adaptation effects are evident. Although parallel processing of sensory information is not unique to this system, the distinct information carried by these adaptive pathways remains unclear. Using in vivo intracellular recordings at their divergence point (brainstem trigeminal complex) in rats, we found opposite adaptation effects in the corresponding nuclei of these two pathways. Increasing the intensity of vibrissa stimulation entailed more adaption in paralemniscal neurons, whereas it caused less adaptation in lemniscal cells. Furthermore, increasing the intensity sharpens lemniscal receptive field profile as adaptation progresses. We hypothesize that these pathways evolved to operate optimally at different dynamic ranges of sustained sensory stimulation. Accordingly, the two pathways are likely to serve different functional roles in the transmission of weak and strong inputs. Hence, our results suggest that due to the disparity in the adaptation properties of two major parallel pathways in this system, high and reliable throughput of information can be achieved at a wider range of stimulation intensities than by each pathway alone.
机译:触觉信息通过两个主要的平行通路,即升突和旁突,从脑干上升到体感皮层。在这两个途径中,以及在所有处理站中,适应效果都很明显。尽管感觉信息的并行处理不是该系统独有的,但是这些适应性途径所携带的独特信息仍然不清楚。使用大鼠在它们的发散点(脑干三叉神经复合体)的体内细胞内记录,我们在这两种途径的相应核中发现了相反的适应作用。触须刺激的强度增加导致副盘旁神经元具有更多的适应性,而在副盘旁细胞中引起的适应性降低。此外,随着适应的进行,强度的增加会增强双侧颈的感受野。我们假设这些途径进化为在持续的感官刺激的不同动态范围内最佳运行。因此,这两种途径可能在弱投入和强投入的传递中发挥不同的功能作用。因此,我们的结果表明,由于该系统中两个主要平行途径的适应性差异,因此与单独的每种途径相比,在更大的刺激强度范围内可以获得高而可靠的信息通过量。

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