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首页> 外文期刊>IEEE Transactions on Radiation and Plasma Medical Sciences >Mimicking of Human Body Electrical Characteristic for Easier Translation of Plasma Biomedical Studies to Clinical Applications
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Mimicking of Human Body Electrical Characteristic for Easier Translation of Plasma Biomedical Studies to Clinical Applications

机译:模拟人体电气特性,以便于临床应用的血浆生物医学研究的更容易翻译

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摘要

Nonthermal plasma (NTP) medical applications are now well established but the translation from in vitro plasma effects to in vivo effects remains far from being intuitive. Among various possible reasons, the translation may be disturbed by a loose control over the electrical characteristics of the different targets (e.g., cell culture dish, animal models) met during the development process, a parameter generally neglected and often unmentioned in papers. The aim of this article is to raise consciousness on how target electrical parameters (e.g., conductivity, electric potential $dots $ ) play a major role in determining plasma treatment conditions. This effect is of particular relevance in plasma medicine where we move from treating small in vitro samples to humans, passing by animal models. The plasma conditions on targets with different electrical characteristics are compared by means of electrical measurements, optical emission spectroscopy, and basic liquid analysis. Commonly tested in vitro targets induce the generation of a plasma significantly different from that produced in contact with a human body. We demonstrate how by means of a basic and easy to implement electrical circuit it is possible to "compensate" the electrical differences between in vitro models, mice and human body and in such a way to reach more reproducible treatment conditions between in vitro and in vivo targets. The proposed method for the control of the target electrical parameters could greatly favor the transition from in vitro and in vivo models to patients for many plasma devices developed for biomedical applications.
机译:现在,非热血浆(NTP)医学应用已经很好地建立,但是在体外血浆效应中的翻译仍然远未直观。在各种可能的原因中,在开发过程中,通过对不同靶(例如细胞培养皿,动物模型)相遇的电气特性的松散控制可能会受到干扰,该参数通常被忽略并在纸中常见于歧视。本文的目的是提高目标电气参数的意识(例如,导电性,电势$ dots $)在确定等离子体治疗条件下发挥重要作用。这种效果在血浆药物中特别相关,在那里我们从将小体外样品治疗对人类的血浆药物,通过动物模型。通过电测量,光发射光谱和基本液体分析来比较具有不同电气特性的靶标的等离子体条件。常见的体外靶标诱导从与人体接触产生的血浆产生显着不同。我们展示了借助基本且易于实现电路的方式,可以“补偿”体外模型,小鼠和人体之间的电差异,并以这种方法在体外和体内达到更可重复的治疗条件目标。用于控制目标电气参数的所提出的方法可以极大地支持从体外和体内模型到患者的转变,对于为生物医学应用开发的许多等离子体器件。

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