Fast, Accurate, and Versatile Data Analysis Platform for the Quantification of Molecular Spatiotemporal Signals

Author:

Mi Xuelong,Chen Alex Bo-Yuan,Duarte Daniela,Carey Erin,Taylor Charlotte R.,Braaker Philipp N.,Bright Mark,Almeida Rafael G.,Lim Jing-Xuan,Ruetten Virginia M. S.,Zheng Wei,Wang Mengfan,Reitman Michael E.,Wang Yizhi,Poskanzer Kira E.,Lyons David A.ORCID,Nimmerjahn AxelORCID,Ahrens Misha B.,Yu Guoqiang

Abstract

SUMMARYOptical recording of intricate molecular dynamics is becoming an indispensable technique for biological studies, accelerated by the development of new or improved biosensors and microscopy technology. This creates major computational challenges to extract and quantify biologically meaningful spatiotemporal patterns embedded within complex and rich data sources, many of which cannot be captured with existing methods. Here, we introduce Activity Quantification and Analysis (AQuA2), a fast, accurate, and versatile data analysis platform built upon advanced machine learning techniques. It decomposes complex live imaging-based datasets into elementary signaling events, allowing accurate and unbiased quantification of molecular activities and identification of consensus functional units. We demonstrate applications across a wide range of biosensors, cell types, organs, animal models, and imaging modalities. As exemplar findings, we show how AQuA2 identified drug-dependent interactions between neurons and astroglia, and distinct sensorimotor signal propagation patterns in the mouse spinal cord.

Publisher

Cold Spring Harbor Laboratory

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