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Thermal conductivity of a Jurkat cell measured by a transient laser point heating method

机译:通过瞬态激光点加热方法测量的Jurkat细胞的导热系数

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摘要

To understand and quantify the thermal energy transfer in a biological cell, the measurement of thermal properties at a cellular level is emerging as great importance. We report herein a unique technique that utilizes a laser point heat source for temporal temperature rise in a micro-pipette thermal sensor; this technique characterizes heat conduction of a measured sample, the Jurkat cell, thus measuring the sample's thermal conductivity (TC). To this end, we incorporated the computational model in COMSOL to solve for the transient temperature and used the multi-parameter fitting of the experimental data using MATLAB. To address the influence of a Jurkat cell's chemical composition on TC, we compared three structural models for prediction of effective thermal conductivity in heterogeneous materials thereby determining the weight percentage of the Jurkat cell. When considering water and protein as the major constituents, we found that a combination of Maxwell-Euken and Effective Medium Theory modeling provides the closest approximation to published weight percent data and, therefore, is recommended for prediction of the cell composition. We validate the accuracy of the measurement technique, itself, by measuring polyethylene microspheres and observed 1% deviation from published data. The unique technique was determined to be mechanically non-invasive, capable of maintaining viable cells, and capable of measuring the thermal conductivity of a Jurkat cell, which was demonstrated to be 0.538 W/(m·K) ± 1%.
机译:为了理解和量化生物细胞中的热能转移,蜂窝水平的热性能的测量是非常重要的。我们在本文中报告了一种独特的技术,该技术利用激光点热源进行微吸移热传感器中的时间温度升高;该技术表征测量样品的热传导,Jurkat细胞,从而测量样品的导热率(Tc)。为此,我们将COMSOL的计算模型纳入瞬态温度并使用MATLAB使用实验数据的多参数拟合。为了解决Jurkat细胞的化学成分对TC的影响,我们将三种结构模型进行了三种结构模型,以预测异质材料中有效的导热系数,从而确定Jurkat细胞的重量百分比。当考虑水和蛋白质作为主要成分时,我们发现Maxwell-Euken和有效的中学理论建模的组合提供了最接近公布的重量百分比数据的近似,因此建议预测细胞组成。我们通过测量聚乙烯微球来验证测量技术本身的准确性,并观察到与已发表数据的1%偏差。确定独特的技术是机械非侵入性的,能够维持活细胞,并且能够测量Jurkat细胞的导热率,其证明为0.538W /(m·k)±1%。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第10期|120161.1-120161.10|共10页
  • 作者单位

    Department of Mechanical and Energy Engineering University of North Texas Denton TX USA;

    Department of Mechanical and Energy Engineering University of North Texas Denton TX USA;

    Department of Mechanical and Energy Engineering University of North Texas Denton TX USA;

    Department of Mechanical Engineering POSTECH Pohang South Korea;

    Department of Mechanical and Energy Engineering University of North Texas Denton TX USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser point heating; Thermal sensor; Thermal conductivity; Jurkat cell;

    机译:激光点加热;热传感器;导热系数;Jurkat细胞;

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