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在药理成分或者不同剂量的药物以及新配方对细胞进行可行性分析时,由于低速成像和细胞培养时间的差异所带来的误差是不可避免的。为了获得更加精确的结果,我们提出了分布式原子力显微系统,把两个原子力显微镜集成到一个操作系统中,研究人员可以在一个操作界面上对两个原子力显微镜同时操作。通过这种方式,有望实现对同一时刻不同细胞在相同生长环境,相同细胞在同一时刻不同生长环境以及不同细胞在同一时刻同一生长环境下生长状态的分析。因此,获取样品的效率可以显著提高。
In pharmacological composition or different doses of drugs and new formulations for cell viability analysis, the error caused by the difference between low-speed imaging and cell culture time is inevitable. In order to obtain more accurate results, we propose a distributed atomic force microscopy system that integrates two AFMs into a single operating system. Researchers can operate two AFMs simultaneously on one user interface. In this way, it is expected to achieve the same time different cells in the same growth environment, the same cell at the same time different growth environment and different cells at the same time under the same growth environment analysis of the growth state. Therefore, the efficiency of obtaining samples can be significantly improved.