Highly adaptable deep-learning platform for automated detection and analysis of vesicle exocytosis

A Abed Alrahman Chouaib H Hsin-Fang Chang (Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University) O Omnia M. Khamis N Nadia Alawar (Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University) S Santiago Echeverry L Lucie Demeersseman S Sofia Elizarova J James A. Daniel Q Qinghai Tian P Peter Lipp E Eugenio F. Fornasiero S Salvatore Valitutti S Sebastian Barg C Constantin Pape A Ali H. Shaib U Ute Becherer (Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University)

Abstract

Abstract Activity recognition in live-cell imaging is labor-intensive and requires significant human effort. Existing automated analysis tools are largely limited in versatility. We present the Intelligent Vesicle Exocytosis Analysis (IVEA) platform, an ImageJ plugin for automated, reliable analysis of fluorescence-labeled vesicle fusion events and other burst-like activity. IVEA includes three specialized modules for detecting: (1) synaptic transmission in neurons, (2) single-vesicle exocytosis in any cell type, and (3) nano-sensor-detected exocytosis. Each module uses distinct techniques, including deep learning, allowing the detection of rare events often missed by humans at a speed estimated to be approximately 60 times faster than manual analysis. IVEA’s versatility can be expanded by refining or training new models via an integrated interface. With its impressive speed and remarkable accuracy, IVEA represents a seminal advancement in exocytosis image analysis and other burst-like fluorescence fluctuations applicable to a wide range of microscope types and fluorescent dyes.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 12, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

A

Abed Alrahman Chouaib

H

Hsin-Fang Chang

Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University

O

Omnia M. Khamis

N

Nadia Alawar

Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University

S

Santiago Echeverry

L

Lucie Demeersseman

S

Sofia Elizarova

J

James A. Daniel

Q

Qinghai Tian

P

Peter Lipp

E

Eugenio F. Fornasiero

S

Salvatore Valitutti

S

Sebastian Barg

C

Constantin Pape

A

Ali H. Shaib

U

Ute Becherer

Department of Cellular Neurophysiology, Center for Integrative Physiology and Molecular Medicine, Saarland University