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皮下脂肪组织电导率的微观结构不均匀性。

Microstructural inhomogeneity of electrical conductivity in subcutaneous fat tissue.

作者信息

Kruglikov Ilja L

机构信息

Wellcomet GmbH, Karlsruhe, Greschbachstrasse 2-4, 76229 Karlsruhe, Germany.

出版信息

PLoS One. 2015 Mar 3;10(3):e0117072. doi: 10.1371/journal.pone.0117072. eCollection 2015.

Abstract

Microscopic peculiarities stemming from a temperature increase in subcutaneous adipose tissue (sWAT) after applying a radio-frequency (RF) current, must be strongly dependent on the type of sWAT. This effect is connected with different electrical conductivities of pathways inside (triglycerides in adipocytes) and outside (extra-cellular matrix) the cells and to the different weighting of these pathways in hypertrophic and hyperplastic types of sWAT. The application of the RF current to hypertrophic sWAT, which normally has a strongly developed extracellular matrix with high concentrations of hyaluronan and collagen in a peri-cellular space of adipocytes, can produce, micro-structurally, a highly inhomogeneous temperature distribution, characterized by strong temperature gradients between the peri-cellular sheath of the extra-cellular matrix around the hypertrophic adipocytes and their volumes. In addition to normal temperature effects, which are generally considered in body contouring, these temperature gradients can produce thermo-mechanical stresses on the cells' surfaces. Whereas these stresses are relatively small under normal conditions and cannot cause any direct fracturing or damage of the cell structure, these stresses can, under some supportive conditions, be theoretically increased by several orders of magnitude, causing the thermo-mechanical cell damage. This effect cannot be realized in sWAT of normal or hyperplastic types where the peri-cellular structures are under-developed. It is concluded that the results of RF application in body contouring procedures must be strongly dependent on the morphological structure of sWAT.

摘要

在施加射频(RF)电流后,皮下脂肪组织(sWAT)温度升高所产生的微观特性,必定强烈依赖于sWAT的类型。这种效应与细胞内部(脂肪细胞中的甘油三酯)和外部(细胞外基质)通路的不同电导率以及这些通路在肥厚型和增生型sWAT中的不同权重有关。将RF电流应用于肥厚型sWAT,其通常在脂肪细胞的细胞周间隙中具有高度发达的细胞外基质,且含有高浓度的透明质酸和胶原蛋白,在微观结构上会产生高度不均匀的温度分布,其特征是肥厚型脂肪细胞周围细胞外基质的细胞周鞘与其体积之间存在强烈的温度梯度。除了在身体塑形中通常考虑的正常温度效应外,这些温度梯度会在细胞表面产生热机械应力。虽然在正常情况下这些应力相对较小,不会导致细胞结构的任何直接断裂或损伤,但在某些支持条件下,从理论上讲这些应力会增加几个数量级,从而导致热机械性细胞损伤。在正常或增生型sWAT中,由于细胞周结构发育不良,这种效应无法实现。得出的结论是,RF在身体塑形程序中的应用结果必定强烈依赖于sWAT的形态结构。

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