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首页> 外文期刊>Biomaterials >The effects of intraspinal microstimulation on spinal cord tissue in the rat.
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The effects of intraspinal microstimulation on spinal cord tissue in the rat.

机译:脊髓内微刺激对大鼠脊髓组织的影响。

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Intraspinal microstimulation (ISMS) involves the implantation of microwires into the spinal cord below the level of an injury to excite neural networks involved in the control of locomotion in the lower limbs. The goal of this study was to examine the potential spinal cord damage that might occur with chronic ISMS. We employed functional measures of force recruitment and immunohistochemical processing of serial spinal cord sections to evaluate any damage induced by spinal transection, implantation of ISMS arrays, and electrical stimulation of 4h/day for 30 days. Functional measurements showed no change in force recruitment following transection and chronic ISMS, indicating no changes to underlying neural networks. The implantation of sham intraspinal microwires produced a spatially-limited increase in the density of microglia/macrophages and GFAP+ astrocytes adjacent to the microwire tracks, indicating a persistent immune response. Most importantly, these results were not different from those around microwires that were chronically pulsed with charge levels up to 48nC/phase. Likewise, measurements of neuronal density indicated no decrease in neuronal cell bodies in the ventral grey matter surrounding ISMS microwires (243.6/mm2+/-35.3/mm2) compared to tissue surrounding sham microwires (207.8/mm2+/-38.8/mm2). We conclude that the implantation of intraspinal microwires and chronic application of ISMS are well tolerated by spinal cord tissue.
机译:脊髓内微刺激(ISMS)涉及在损伤水平以下将微丝植入脊髓,以激发参与控制下肢运动的神经网络。这项研究的目的是检查慢性ISMS可能发生的潜在脊髓损伤。我们采用了功能性措施对串行脊髓切片进行力募集和免疫组化处理,以评估由脊髓横断,ISMS阵列植入和每天4h /天的电刺激引起的任何损伤(30天)。功能测量结果显示横断和慢性ISMS后力量募集无变化,表明基础神经网络无变化。假脊髓内微丝的植入在与微丝轨迹相邻的小胶质细胞/巨噬细胞和GFAP +星形胶质细胞的密度上产生了空间有限的增加,表明持续的免疫反应。最重要的是,这些结果与微脉冲周围的长期电荷高达48nC /相的脉冲没有什么不同。同样,对神经元密度的测量表明,与假手术微丝周围的组织(207.8 / mm2 +/- 38.8 / mm2)相比,ISMS微丝周围的腹侧灰质(243.6 / mm2 +/- 35.3 / mm2)中神经元细胞体没有减少。我们得出的结论是,脊髓组织对脊髓内微丝的植入和ISMS的长期应用具有很好的耐受性。

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