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A Cell Viability Evaluation Method Based on Respiratory Thermodynamic Feature Detected by Microscopic Infrared Thermal Imaging Sensor

机译:基于微观红外热成像传感器检测的基于呼吸热力学特征的细胞活力评估方法

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Cell viability is an important indicator while screening drugs. An inaccurate evaluation of cell viability can cause large errors in anti-tumor dose experiments, and this becomes very unfavorable for cancer treatment. Generally, cell viability refers to the ratio of the number of live cells to the total number of cells. However, this evaluation method does not consider the effects of differences in metabolic abilities between different living cells. In this paper, there is a new cell viability evaluation method based on respiratory thermodynamic feature that includes the respiratory intensity, proliferation rate, and heat released by cells. These three parameters can be directly measured by a microscopic infrared thermal imaging sensor, which is fast and non-invasive and does not require consumables. The three parameters were simultaneously measured based on a micro-infrared thermal imaging sensor and fitted to the mathematical model. Finally, the method was verified by comparing it with traditional c ounting method and comparing the amount of omethoate with traditional counting method. The results indicated that omethoate is 12.36% lower than in the traditional counting method with the same level of complete cell inactivation. Therefore, this method is more accurate than the conventional cell viability assessment method, and the dosage is more precise when the uniform effect is achieved, which provides a basis for precise doses in tumor treatment and can reduce side effects in the human body. This method has a significant effect on the manufacture of cell activity detecting sensors.
机译:细胞活力是筛选药物的重要指标。对细胞活力的不准确评估会导致抗肿瘤剂量实验中的大误差,这变得非常不利癌症治疗。通常,细胞活力是指活细胞数量与细胞总数的比率。然而,该评估方法不考虑不同活细胞之间代谢能力的差异的影响。在本文中,基于呼吸热动力学特征的新的细胞活力评估方法,其包括呼吸强度,增殖率和细胞释放的热量。这三个参数可以通过微观红外热成像传感器直接测量,这是快速和非侵入性的,并且不需要耗材。基于微红外热成像传感器同时测量三个参数,并安装在数学模型上。最后,通过将其与传统C估计方法进行比较并与传统计数方法进行比较,通过将其进行验证该方法。结果表明,在具有相同水平的完全细胞失活的传统计数方法中,Omethoate的低12.36%。因此,这种方法比传统的细胞存活力的评价方法更精确,并且剂量是当均匀的效果得以实现,它提供了精确的剂量在肿瘤治疗中的基础,并且可以降低在人体中的副作用更精确。该方法对细胞活动检测传感器的制造具有显着影响。

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