首页> 外文期刊>Bioelectromagnetics: Journal of the Bioelectromagnetics Society >No effect of 85 mT permanent magnets on laser-Doppler measured blood flow response to inspiratory gasps.
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No effect of 85 mT permanent magnets on laser-Doppler measured blood flow response to inspiratory gasps.

机译:85 mT 永磁体对激光多普勒测量的血流对吸气喘息的反应没有影响。

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摘要

Although no effects of permanent magnets on resting skin blood flow (SBF) in humans have yet been demonstrated, the possibility that magnet related effects might modify dynamic SBF changes has not been previously studied. We hypothesized that magnets may alter local neurovascular mechanisms to cause changes in normal SBF vasoactive responses. To test this, we studied the effects of a magnet on SBF reductions induced by sympathetic reflexes associated with deep inspirations. SBF was continuously monitored by a dual channel laser-Doppler flowmeter with probes on the middle finger dorsum of both hands of 24 healthy subjects. In the first of two successive intervals, each of the fingers rested on sham ceramic magnets (control interval). Subsequently, one finger rested on an active magnet and the other finger on a sham (experimental interval). Skin temperatures were also measured. The magnet was a 37 mm diameter x 14 mm thick ceramic magnet with a surface field strength of 85 mT measured in the geometrical center of the magnet. Field strength at the finger dorsum, 13 mm above magnet, was 31.5 mT. During each interval, three deep breaths were used to elicit SBF reductions. Responses were calculated as the percent reduction in SBF from its prior 20 s average. Breaths in each interval were spaced 3 min apart to permit full recovery between responses. The experimental interval started after an active magnet was in place for 20 min. Results showed no significant difference in either vasoconstrictive responses or skin temperature due to the magnet. We conclude that magnets of the type, strength and duration used, have no significant effect on vasoconstrictive processes associated with this sympathetic reflex in this group of healthy subjects. Bioelectromagnetics 26:331-335, 2005. (c) 2005 Wiley-Liss, Inc.
机译:虽然永磁体对人类静息皮肤血流 (SBF) 的影响尚未得到证实,但磁铁相关效应可能改变动态 SBF 变化的可能性尚未得到研究。我们假设磁铁可能会改变局部神经血管机制,导致正常 SBF 血管活性反应发生变化。为了测试这一点,我们研究了磁铁对与深吸气相关的交感神经反射诱导的SBF减少的影响。SBF 由双通道激光多普勒流量计连续监测,探头位于 24 名健康受试者的双手中指背侧。在两个连续间隔中的第一个间隔中,每个手指都放在假陶瓷磁铁上(控制间隔)。随后,一根手指放在有源磁铁上,另一根手指放在假磁铁上(实验间隔)。还测量了皮肤温度。磁体是直径 37 mm x 厚 14 mm 的陶瓷磁体,在磁体的几何中心测量的表面场强为 85 mT。手指背侧(磁铁上方 13 mm)的场强为 31.5 mT。在每个间隔期间,使用三次深呼吸来减少 SBF。响应计算为 SBF 从之前 20 秒的平均值降低的百分比。每个间隔的呼吸间隔 3 分钟,以允许在反应之间完全恢复。实验间隔在有源磁体就位20分钟后开始。结果显示,由于磁铁,血管收缩反应或皮肤温度没有显着差异。我们得出结论,所用类型、强度和持续时间的磁铁对这组健康受试者中与这种交感神经反射相关的血管收缩过程没有显着影响。生物电磁学 26:331-335, 2005.(c) 2005 Wiley-Liss, Inc.

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