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Comparison of bias and resolvability in single-cell and single-transcript methods

机译:单细胞和单转录本方法的偏倚和可分离性比较

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摘要

Single-cell and single-transcript measurement methods have elevated our ability to understand and engineer biological systems. However, defining and comparing performance between methods remains a challenge, in part due to the confounding effects of experimental variability. Here, we propose a generalizable framework for performing multiple methods in parallel using split samples, so that experimental variability is shared between methods. We demonstrate the utility of this framework by performing 12 different methods in parallel to measure the same underlying reference system for cellular response. We compare method performance using quantitative evaluations of bias and resolvability. We attribute differences in method performance to steps along the measurement process such as sample preparation, signal detection, and choice of measurand. Finally, we demonstrate how this framework can be used to benchmark different methods for single-transcript detection. The framework we present here provides a practical way to compare performance of any methods. Rammohan et al. propose a generalizable framework for performing multiple methods in parallel using split samples, so that experimental variability is defined and compared between methods. Their framework provides a practical solution for benchmarking and comparing the performance of any method, illustrated by analysing single-cell and single-transcript methods.
机译:单细胞和单转录本测量方法提高了我们理解和设计生物系统的能力。然而,定义和比较方法之间的性能仍然是一个挑战,部分原因是实验变异性的混杂效应。在这里,我们提出了一个可推广的框架,用于使用拆分样本并行执行多种方法,以便在方法之间共享实验变异性。我们通过并行执行 12 种不同的方法来测量细胞反应的相同底层参考系统,从而证明了该框架的实用性。我们通过对偏倚和可分辨性的定量评估来比较方法性能。我们将方法性能的差异归因于测量过程中的步骤,例如样品制备、信号检测和测量物的选择。最后,我们演示了如何使用该框架对单转录本检测的不同方法进行基准测试。我们在这里介绍的框架提供了一种实用的方法来比较任何方法的性能。Rammohan等人提出了一个可推广的框架,用于使用拆分样本并行执行多种方法,以便定义和比较方法之间的实验变异性。他们的框架为基准测试和比较任何方法的性能提供了实用的解决方案,通过分析单细胞和单转录本方法进行了说明。

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