Suppr超能文献

宽场光学成像在缺血性卒中小鼠模型中的应用。

Wide-Field Optical Imaging in Mouse Models of Ischemic Stroke.

机构信息

Department of Radiology, Washington University in St. Louis, St. Louis, MO, USA.

Imaging Science PhD Program, Washington University in St. Louis, St. Louis, MO, USA.

出版信息

Methods Mol Biol. 2023;2616:113-151. doi: 10.1007/978-1-0716-2926-0_11.

Abstract

Functional neuroimaging is a powerful tool for evaluating how local and global brain circuits evolve after focal ischemia and how these changes relate to functional recovery. For example, acutely after stroke, changes in functional brain organization relate to initial deficit and are predictive of recovery potential. During recovery, the reemergence and restoration of connections lost due to stroke correlate with recovery of function. Thus, information gleaned from functional neuroimaging can be used as a proxy for behavior and inform on the efficacy of interventional strategies designed to affect plasticity mechanisms after injury. And because these findings are consistently observed across species, bridge measurements can be made in animal models to enrich findings in human stroke populations. In mice, genetic engineering techniques have provided several new opportunities for extending optical neuroimaging methods to more direct measures of neuronal activity. These developments are especially useful in the context of stroke where neurovascular coupling can be altered, potentially limiting imaging measures based on hemodynamic activity alone. This chapter is designed to give an overview of functional wide-field optical imaging (WFOI) for applications in rodent models of stroke, primarily in the mouse. The goal is to provide a protocol for laboratories that want to incorporate an affordable functional neuroimaging assay into their current research thrusts, but perhaps lack the background knowledge or equipment for developing a new arm of research in their lab. Within, we offer a comprehensive guide developing and applying WFOI technology with the hope of facilitating accessibility of neuroimaging technology to other researchers in the stroke field.

摘要

功能神经影像学是评估局灶性缺血后局部和全局脑回路如何演变以及这些变化如何与功能恢复相关的有力工具。例如,在中风后急性期,功能脑组织的变化与初始缺陷相关,并可预测恢复潜力。在恢复过程中,由于中风而丧失的连接的重新出现和恢复与功能的恢复相关。因此,从功能神经影像学中获得的信息可以用作行为的替代指标,并为旨在影响损伤后可塑性机制的干预策略的疗效提供信息。而且,由于这些发现在不同物种中都得到了一致的观察,因此可以在动物模型中进行桥接测量,以丰富人类中风人群的发现。在小鼠中,基因工程技术为将光学神经影像学方法扩展到更直接的神经元活动测量提供了几种新的机会。这些发展在中风的情况下特别有用,在中风中,神经血管耦联可能会改变,这可能会限制仅基于血液动力学活动的成像测量。本章旨在概述用于中风啮齿动物模型的宽场光学功能成像 (WFOI) 应用,主要在小鼠中。目的是为希望将负担得起的功能神经影像学测定纳入当前研究重点的实验室提供一个方案,但可能缺乏在实验室中开展新研究领域的背景知识或设备。我们提供了一个全面的指南,用于开发和应用 WFOI 技术,希望为中风领域的其他研究人员提供神经影像学技术的可及性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验