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spatiAlign:一种用于空间分辨转录组学数据集成的无监督对比学习模型。

spatiAlign: an unsupervised contrastive learning model for data integration of spatially resolved transcriptomics.

机构信息

BGI Research, Shenzhen 518083, China.

BGI Research, Beijing 102601, China.

出版信息

Gigascience. 2024 Jan 2;13. doi: 10.1093/gigascience/giae042.

Abstract

BACKGROUND

Integrative analysis of spatially resolved transcriptomics datasets empowers a deeper understanding of complex biological systems. However, integrating multiple tissue sections presents challenges for batch effect removal, particularly when the sections are measured by various technologies or collected at different times.

FINDINGS

We propose spatiAlign, an unsupervised contrastive learning model that employs the expression of all measured genes and the spatial location of cells, to integrate multiple tissue sections. It enables the joint downstream analysis of multiple datasets not only in low-dimensional embeddings but also in the reconstructed full expression space.

CONCLUSIONS

In benchmarking analysis, spatiAlign outperforms state-of-the-art methods in learning joint and discriminative representations for tissue sections, each potentially characterized by complex batch effects or distinct biological characteristics. Furthermore, we demonstrate the benefits of spatiAlign for the integrative analysis of time-series brain sections, including spatial clustering, differential expression analysis, and particularly trajectory inference that requires a corrected gene expression matrix.

摘要

背景

对空间分辨转录组数据集进行综合分析,可以更深入地了解复杂的生物系统。然而,整合多个组织切片会对批次效应去除提出挑战,特别是当切片是通过不同技术测量或在不同时间采集时。

发现

我们提出了 spatiAlign,这是一种无监督对比学习模型,它利用所有测量基因的表达和细胞的空间位置,来整合多个组织切片。它不仅可以在低维嵌入中,而且可以在重建的完整表达空间中,对多个数据集进行联合下游分析。

结论

在基准分析中,spatiAlign 在学习组织切片的联合和判别表示方面优于最先进的方法,每个组织切片都可能具有复杂的批次效应或独特的生物学特征。此外,我们还展示了 spatiAlign 在整合时间序列脑切片分析中的优势,包括空间聚类、差异表达分析,特别是需要校正基因表达矩阵的轨迹推断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eca/11258913/076d4dd06d20/giae042fig1.jpg

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