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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Optical imaging of vascular and metabolic responses in the lumbar spinal cord after T10 transection in rats.
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Optical imaging of vascular and metabolic responses in the lumbar spinal cord after T10 transection in rats.

机译:T10横断大鼠后腰脊髓血管和代谢反应的光学成像。

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摘要

Neuronal and vascular reorganization after spinal cord injury (SCI) is scarcely known although its characterization has major implications in understanding the functioning of the altered spinal cord. Several electrophysiological and anatomical lines of evidence support plasticity caudal to the lesion site, but do not provide sufficient clues about neuronal and vascular reorganization after SCI. The aim of the present study was to compare neuronal activation in the lumbar spinal cord between uninjured and SCI rats with novel optical imaging technology. The results showed significant haemodynamic response differences after sciatic nerve stimulation in uninjured controls, in comparison to SCI rats. Both timing and shape of the response were modified. In uninjured rats, blood flow presented an initial dip but was rapidly drained from the activation site through the venous system. In comparison, the blood transfer rate in SCI rats was much slower. Damaged blood vessels at the lesion site after thoracic SCI impacted the vascular response upon neuronal activation in the lumbar spinal cord. This observation is important in the study of spinal cord function after SCI by imaging techniques based on haemodynamics (blood oxygenation level-dependent using functional magnetic resonance imaging (BOLD fMRI) and optical imaging). In conclusion, our results indicate that new avenues quantifying the influence of vascular plumbing will have to be developed to explore the efficacy of rehabilitation and pharmacological therapies by haemodynamic imaging.
机译:尽管脊髓损伤(SCI)的特征在理解改变后的脊髓的功能方面具有重要意义,但鲜为人知。几种电生理和解剖学证据支持病变部位尾部可塑性,但未提供SCI后神经元和血管重组的充分线索。本研究的目的是通过新型光学成像技术比较未受伤和SCI大鼠的腰脊髓神经元活化。结果显示,与SCI大鼠相比,在未受伤的对照组中,坐骨神经刺激后的血液动力学反应差异显着。响应的时间和形状都被修改。在未受伤的大鼠中,血流呈现出初始下降,但通过静脉系统迅速从激活位点排出。相比之下,SCI大鼠的血液传输速度要慢得多。胸腔脊髓损伤后病变部位的血管受损影响了腰脊髓神经元激活后的血管反应。通过基于血液动力学(使用功能性磁共振成像(BOLD fMRI)和光学成像的血氧水平依赖性)的成像技术,该观察对于SCI后脊髓功能的研究非常重要。总之,我们的结果表明,必须开发新的途径来量化血管的影响,以通过血液动力学成像探索康复和药物治疗的功效。

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