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一种基于相关性的工具,用于量化膜相关周期性骨架的周期性。

A correlation-based tool for quantifying membrane periodic skeleton associated periodicity.

作者信息

Vanspauwen Sam K, Luque-Fernández Virginia, Rasmussen Hanne B

机构信息

Department of Biomedical Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

Front Neuroinform. 2025 Aug 22;19:1628538. doi: 10.3389/fninf.2025.1628538. eCollection 2025.

Abstract

INTRODUCTION

The advent of super-resolution microscopy revealed the membrane-associated periodic skeleton (MPS), a specialized neuronal cytoskeletal structure composed of actin rings spaced 190 nm apart by two spectrin dimers. While numerous ion channels, cell adhesion molecules, and signaling proteins have been shown to associate with the MPS, tools for accurate and unbiased quantification of their periodic localization remain scarce.

METHODS

We developed Napari-WaveBreaker (https://github.com/SamKVs/napari-k2-WaveBreaker), an open-source plugin for the Napari image viewer. The tool quantifies MPS periodicity using autocorrelation and assesses periodic co-distribution between targets using cross-correlation. Performance was evaluated using both simulated datasets and STED microscopy images of periodic and non-periodic axonal proteins.

RESULTS

Napari-WaveBreaker output parameters accurately reflected the visually observed periodicity and detected spatial shifts between two periodic targets. The approach was robust across varying image qualities and reliably distinguished periodic from non-periodic protein distributions.

DISCUSSION

Napari-WaveBreaker provides an unbiased, quantitative framework for analyzing MPS-associated periodicity and co-distribution enabling new insights into the molecular organization and modulation of the MPS.

摘要

引言

超分辨率显微镜的出现揭示了膜相关周期性骨架(MPS),这是一种特殊的神经元细胞骨架结构,由肌动蛋白环组成,两个血影蛋白二聚体将其间隔190纳米。虽然已证明许多离子通道、细胞粘附分子和信号蛋白与MPS相关,但用于准确且无偏差地量化它们周期性定位的工具仍然稀缺。

方法

我们开发了Napari-WaveBreaker(https://github.com/SamKVs/napari-k2-WaveBreaker),这是一款用于Napari图像查看器的开源插件。该工具使用自相关量化MPS周期性,并使用互相关评估目标之间的周期性共分布。使用模拟数据集以及周期性和非周期性轴突蛋白的受激发射损耗(STED)显微镜图像对性能进行了评估。

结果

Napari-WaveBreaker的输出参数准确反映了视觉观察到的周期性,并检测到两个周期性目标之间的空间偏移。该方法在不同图像质量下都很稳健,并且能够可靠地区分周期性和非周期性蛋白质分布。

讨论

Napari-WaveBreaker为分析与MPS相关的周期性和共分布提供了一个无偏差的定量框架,能够对MPS的分子组织和调节有新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/20b1/12411523/d54060f26e45/fninf-19-1628538-g0001.jpg

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