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Imaging the electric field associated with mouse and human skin wounds.

机译:成像与鼠标相关的电场和人类的皮肤伤口。

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We have developed a noninvasive instrument called the bioelectric field imager (BFI) for mapping the electric field between the epidermis and the stratum corneum near wounds in both mouse and human skin. Rather than touching the skin, the BFI vibrates a small metal probe with a displacement of 180 mum in air above the skin to detect the surface potential of the epidermis through capacitative coupling. Here we describe our first application of the BFI measuring the electric field between the stratum corneum and epidermis at the margin of skin wounds in mice. We measured an electric field of 177+/-14 (61) mV/mm immediately upon wounding and the field lines pointed away from the wound in all directions around it. Because the wound current flows immediately upon wounding, this is the first signal indicating skin damage. This electric field is generated at the outer surface of the epidermis by the outward flow of the current of injury. An equal and opposite current must flow within the multilayered epidermis to generate an intraepidermal field with the negative pole at the wound site. Because the current flowing within the multilayered epidermis is spread over a larger area, the current density and subsequent E field generated in that region is expected to be smaller than that measured by the BFI beneath the stratum corneum. The field beneath the stratum corneum typically remained in the 150-200 mV/mm range for 3 days and then began to decline over the next few days, falling to zero once wound healing was complete. The mean wound field strength decreased by 64+/-7% following the application of the sodium channel blocker, amiloride, to the skin near the wound and increased by 82+/-21% following the application of the Cl- channel activator, prostaglandin E2.
机译:我们已经开发出一种非侵入式仪器生物领域成像仪(BFI)映射表皮和之间的电场鼠标和角质层伤口附近人类的皮肤。BFI振动的小金属探测器位移180妈妈的空气在皮肤之上检测的表面势表皮通过容性耦合。我们的第一个BFI测量中的应用角质层和之间的电场表皮在小鼠皮肤伤口的边缘。我们测量电场的177 + / -14 (61)mV / mm受伤后立即和字段行指出远离伤口的方向。受伤后立即流动,这是第一个信号说明皮肤损伤。外表面电场生成表皮的向外流动当前的损伤。必须流多层表皮内生成一个与表皮内的字段在伤口处负极。多层表皮内的电流分布在一个更大的区域,电流密度和随后的E字段生成预计将小于来衡量吗BFI角质层。通常在角质层仍在150 - 200 mV / mm范围为3天,然后开始下降在接下来的几天里,下降零伤口愈合后完成。伤口场强下降了64 + / - -7%钠离子通道的应用拦截器、阿米洛利皮肤伤口附近和后增加了82 + / - -21%应用氯离子通道激活剂,前列腺素E2。

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