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Brain processing of tonic muscle pain induced by infusion of hypertonic saline.

机译:输注高渗盐水引起的强直性肌肉疼痛的大脑处理。

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Most of the previous studies on the effects of pain on Regional Cerebral Blood Flow (rCBF) had been done with brief cutaneous or intramuscular painful stimuli. The aim of the present study was to investigate the effect on rCBF of long lasting tonic experimental muscle pain. To this end we performed PET investigations of rCBF following tonic experimental low back pain induced by continuous intramuscular infusion of hypertonic (5%) saline (HS) with computer controlled infusion pump into the right erector spinae on L(3) level in 19 healthy volunteers. Changes in rCBF were measured with the use of (15)O labelled water during four conditions: Baseline (before start of infusion), Early Pain (4 min after start of infusion), Late Pain (20 min after start of infusion) and Post-Pain ( [Formula: see text] 15 min after stop of infusion) conditions. Results of SPM analysis showed relative rCBF increase in the right insula and bilateral decrease in the temporo-parieto-occipital cortex during initial phase of painfulstimulation (Early Pain) followed by activation of the medial prefrontal region and bilateral inhibition of insula, anterior cingulate and dorso-lateral prefrontal cortex mainly in ipsilateral hemisphere during Late Pain conditions. The results show that longer lasting tonic experimental muscle pain elicited by i.m infusion of HS results in decreases rather than increases in rCBF. Possible explanations for differences found in rCBF during tonic hypertonic saline-induced experimental muscle pain as compared with previous findings are discussed.
机译:先前有关疼痛对局部脑血流量(rCBF)的影响的大多数研究都是通过短暂的皮肤或肌内疼痛刺激进行的。本研究的目的是研究长期补品实验性肌肉疼痛对rCBF的影响。为此,我们对19名健康志愿者在L(3)水平上通过计算机控制的输液泵向右直立脊柱连续肌注高渗(5%)盐水(HS)引起的强直性实验性下腰痛后进行了rCBF的PET研究。 。在以下四个条件下,使用(15)O标记的水测量rCBF的变化:基线(开始输注前),早期疼痛(开始输注4分钟),晚期疼痛(开始输注20分钟)和后期-疼痛(输注停止后15分钟)。 SPM分析的结果显示,在疼痛刺激(早期疼痛)的初始阶段,右岛上的rCBF相对增加,颞顶枕皮质的双侧减少,然后激活前额内侧区域,并且双侧抑制了岛突,前扣带和背侧晚期疼痛时,外侧前额叶皮层主要位于同侧半球。结果表明,由i.m输注HS引起的持久性强直性实验性肌肉疼痛导致rCBF降低而不是增加。与先前的发现相比,讨论了在高渗盐水诱导的实验性肌肉疼痛中rCBF差异的可能解释。

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