首页> 外文期刊>Brain and Behavior >Different mechanosensory stimulations of the lower back elicit specific changes in hemodynamics and oxygenation in cortical sensorimotor areas?¢????A fNIRS study
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Different mechanosensory stimulations of the lower back elicit specific changes in hemodynamics and oxygenation in cortical sensorimotor areas?¢????A fNIRS study

机译:在皮质感觉传感器区域的血流动力学和氧合下较低的后液的机制刺激的不同机制刺激?¢????一个fnirs的研究

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Abstract Background and Objectives This study aimed at investigating the feasibility of functional near-infrared spectroscopy (fNIRS) to measure changes in cerebral hemodynamics and oxygenation evoked by painful and nonpainful mechanosensory stimulation on the lower back. The main objectives were to investigate whether cortical activity can be (1) detected using functional fNIRS, and (2) if it is possible to distinguish between painful and nonpainful pressure as well as a tactile brushing stimulus based on relative changes in oxy- and deoxyhemoglobin ([O 2 Hb] and [HHb]). Methods Twenty right-handed subjects (33.5 ???± 10.7 years; range 20?¢????61 years; 8 women) participated in the study. Painful and nonpainful pressure stimulation was exerted with a thumb grip perpendicularly to the spinous process of the lumbar spine. Tactile stimulation was realized by a one-finger brushing. The supplementary motor area (SMA) and primary somatosensory cortex (S1) were measured bilaterally using a multichannel continuous-wave fNIRS imaging system. Results Characteristic relative changes in [O 2 Hb] in the SMA and S1 after both pressure stimulations (corrected for multiple comparison) were observed. [HHb] showed only much weaker changes (uncorrected). The brushing stimulus did not reveal any significant changes in [O 2 Hb] or [HHb]. Conclusion The results indicate that fNIRS is sensitive enough to detect varying hemodynamic responses to different types of mechanosensory stimulation. The acquired data will serve as a foundation for further investigations in patients with chronic lower back pain. The future aim is to disentangle possible maladaptive neuroplastic changes in sensorimotor areas during painful and nonpainful lower back stimulations based on fNIRS neuroimaging.
机译:摘要背景和目标本研究旨在调查功能性近红外光谱(FNIR)的可行性,以测量脑血流动力学和氧气的变化,疼痛和非粘液感受到下背部的诱捕。主要目标是研究皮层活动是否可以使用功能fnirs检测到(1),并且(2)如果可以区分疼痛和非粘合的压力以及基于氧 - 和脱氧血红蛋白的相对变化的触觉刷涂刺激([O 2 HB]和[HHB])。方法二十左右科目(33.5 ???±107岁;范围20?¢???? 61岁; 8名女性)参加了这项研究。用拇指握持疼痛和非粘连的压力刺激垂直于腰椎的棘突。通过单手指刷牙实现触觉刺激。使用多通道连续波FNIR成像系统双侧测量补充电动机区域(SMA)和原发性体抑制皮层(S1)。结果观察到在SMA和S1中[O 2 Hb]的特性相对变化(校正多重比较)后SMA和S1。 [HHB]仅显示了更弱的变化(未校正)。刷涂刺激并未显示[O 2 Hb]或[HHB]的任何显着变化。结论结果表明,FNIR足够敏感,以检测不同类型的机械感刺激的不同血液动力学响应。所获得的数据将作为进一步调查慢性低腰疼痛的患者的基础。基于FNIR神经影像体,未来的目的是在疼痛和非耐受较低的刺激期间解开感觉电流区域的可能的适应性神经塑性变化。

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