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Characterisation and functional mapping of surface potentials in the rat dorsal column nuclei

机译:大鼠背柱核表面电位的表征和功能映射

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The brainstem dorsal column nuclei (DCN) play a role in early processing of somatosensory information arising from a variety of functionally distinct peripheral structures, before being transmitted to the cortex via the thalamus. To improve our understanding of how sensory information is represented by the DCN, we characterised and mapped low- (<200Hz) and high-frequency (550-3300Hz) components of nerve-evoked DCN surface potentials. DCN surface potentials were evoked by electrical stimulation of the left and right nerves innervating cutaneous structures (sural nerve), or a mix of cutaneous and deep structures (peroneal nerve), in 8-week-old urethane-anaesthetised male Wistar rats. Peroneal nerve-evoked DCN responses demonstrated low-frequency events with significantly longer durations, more high-frequency events and larger magnitudes compared to responses evoked from sural nerve stimulation. Hotspots of low- and high-frequency DCN activity were found ipsilateral to stimulated nerves but were not symmetrically organised. In conclusion, we find that sensory inputs from peripheral nerves evoke unique and characteristic DCN activity patterns that are highly reproducible both within and across animals.
机译:脑干背柱核(DCN)在从多种功能不同的外周结构中产生的早期处理中的早期处理发挥作用,然后通过丘脑传递到皮质。为了提高我们对DCN表示的感官信息如何,我们表征和映射了低(<200Hz)和高频(550-3300Hz)组件的感官信息的理解,所述神经诱发的DCN表面电位的高频(550-3300Hz)。在8周龄氨基甲酸酯麻醉的雄性Wistar大鼠中,通过左侧和右神经的电刺激引起DCN表面电位的左侧和右神经的电刺激,或一种皮肤和深层结构(腓骨神经)。与从血管神经刺激引起的响应相比,腓骨神经诱发的DCN响应表明了具有明显更长的持续时间,更高的频率事件和更大的大小。发现低频率和高频DCN活性的热点,刺激神经,但没有对称组织。总之,我们发现来自外周神经的感觉输入唤起独特,特征的DCN活性模式,在动物内和跨越高度可再现。

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