Dimension Reduction and Clustering of Single Cell Calcium Spiking: Comparison of t-SNE and UMAP

Suman Gare, S. Chel, Manohar Kuruba, S. Jana, L. Giri
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Abstract

Time-lapse fluorescent imaging of cytosolic calcium is used to detect cellular activity during preclinical experiments and drug screening studies. However, visualization and analysis of high dimension time series data remain challenging due to the presence of underlying heterogeneity. In this context, we propose t-distribution stochastic neighborhood embedding (t-SNE) and uniform manifold projection and approximation (UMAP) for visualization and analysis. Next, we show the density-based spatial clustering of applications with noise (DBSCAN) can be used to detect various spiking patterns present in calcium dose-response. The proposed framework combining t-SNE and DBSCAN was used to find repeating patterns, detect outliers, and label similar instances present in biological signaling.
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单细胞钙峰的降维与聚类:t-SNE与UMAP的比较
细胞质钙的延时荧光成像在临床前实验和药物筛选研究中用于检测细胞活性。然而,由于存在潜在的异质性,高维时间序列数据的可视化和分析仍然具有挑战性。在此背景下,我们提出了t分布随机邻域嵌入(t-SNE)和均匀流形投影与逼近(UMAP)来进行可视化和分析。接下来,我们展示了基于密度的空间聚类应用噪声(DBSCAN)可用于检测钙剂量响应中存在的各种尖峰模式。提出的框架结合t-SNE和DBSCAN用于发现重复模式,检测异常值,并标记生物信号中存在的类似实例。
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