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Rapid ultrasonic stimulation of inflamed tissue with diagnostic intent

机译:具有诊断意图的快速超声刺激发炎组织

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摘要

Previous studies have observed that individual pulses of intense focused ultrasound (iFU) applied to inflamed and normal tissue can generate sensations, where inflamed tissue responds at a lower intensity than normal tissue. It was hypothesized that successively applied iFU pulses will generate sensation in inflamed tissue at a lower intensity and dose than application of a single iFU pulse. This hypothesis was tested using an animal model of chronic inflammatory pain, created by injecting an irritant into the rat hind paw. Ultrasound pulses were applied in rapid succession or individually to rats' rear paws beginning at low peak intensities and progressing to higher peak intensities, until the rats withdrew their paws immediately after iFU application. Focused ultrasound protocols consisting of successively and rapidly applied pulses elicited inflamed paw withdrawal at lower intensity and estimated tissue displacement values than single pulse protocols. However, both successively applied pulses and single pulses produced comparable threshold acoustic dose values and estimates of temperature increases. This raises the possibility that temperature increase contributed to paw withdrawal after rapid iFU stimulation. While iFU-induction of temporal summation may also play a role, electrophysiological studies are necessary to tease out these potential contributors to iFU stimulation.
机译:先前的研究已经观察到,在发炎和正常组织上施加强烈聚焦超声(iFU)的单个脉冲会产生感觉,其中发炎的组织比正常组织的反应强度低。假设相继施加iFU脉冲将在发炎的组织中以比施加单个iFU脉冲更低的强度和剂量产生感觉。使用慢性炎症性疼痛的动物模型对该假设进行了测试,该模型是通过将刺激物注入大鼠后爪来创建的。从大鼠的后爪开始连续快速或连续施加超声波脉冲,从低峰值强度开始逐渐发展到更高的峰值强度,直到在使用iFU后立即将大鼠拔出爪。与单脉冲方案相比,由连续且快速施加的脉冲组成的聚焦超声方案以较低的强度和估计的组织位移值引起发炎的爪子退缩。然而,连续施加的脉冲和单个脉冲都产生可比较的阈值声学剂量值和温度升高的估计值。这增加了温度升高导致快速iFU刺激后爪退缩的可能性。尽管iFU诱导的时间总和也可能起一定作用,但电生理研究对于弄清iFU刺激的这些潜在贡献者很有必要。

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