Cohen D
Francis Bitter Magnet Lab., Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Neurol Clin Neurophysiol. 2004 Nov 30;2004:93.
A review is presented of the earliest dc magnetic field (dcMF) measurements, made between 1969 and 1983, due to natural currents in the body. The measurements were essentially a mapping over the whole body, except for the brain (dcMEG), which was omitted because of interfering non-neural sources in the head. This mapping can be useful today in interpreting new measurements over the body, especially dcMEG data, where the new authors assume only a neural source in the head; our mapping suggests that this assumption may be in error. Briefly, in our mapping, dcMFs were found over almost the entire body; they were larger over the limbs and head than over the torso proper except over the abdomen, where it was usually the largest in the body Some of the sources were: 1. A strong and complicated reflex in the abdomen due to drinking cold water, suggesting that other dcMF reflexes might be common in the body. 2. Long muscle fibers in the limbs, suggesting sources also in scalp muscles. 3. Hair follicles due to touching the scalp; these sources could also exist, unrecognized, in recent dcMEG whole-head measurements. 4. Injury currents from the ischemic human heart, suggesting dcMFs could arise from injured muscle in the body generally. One major mechanism for producing dcMFs appeared to be a change in the potassium ion concentration in the vicinity of long excitable fibers. Overall, we concluded that the dcMFs were complicated, and it may be difficult to identify each source, especially in the head.
本文综述了1969年至1983年间因人体自然电流进行的最早的直流磁场(dcMF)测量。这些测量本质上是对除大脑外的整个身体进行的映射(dcMEG),由于头部存在干扰性非神经源,大脑被排除在外。如今,这种映射在解释全身的新测量结果时可能会有所帮助,尤其是在dcMEG数据方面,新作者仅假设头部存在神经源;而我们的映射表明这种假设可能是错误的。简而言之,在我们的映射中,几乎在整个身体上都发现了直流磁场;它们在四肢和头部比在躯干上更大,但腹部除外,腹部的直流磁场通常是身体中最大的。其中一些源包括:1. 饮用冷水后腹部出现强烈而复杂的反射,这表明身体中可能普遍存在其他直流磁场反射。2. 四肢中的长肌纤维,这表明头皮肌肉中也存在源。3. 触摸头皮引起的毛囊;在最近的dcMEG全头测量中,这些源可能也未被识别而存在。4. 缺血性人类心脏产生的损伤电流,这表明身体中受伤的肌肉一般都可能产生直流磁场。产生直流磁场的一个主要机制似乎是长可兴奋纤维附近钾离子浓度的变化。总体而言,我们得出结论,直流磁场情况复杂,可能难以识别每个源,尤其是在头部。