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用于小型啮齿动物深部组织脑血流成像的优化激光散斑成像系统及方法。

Optimized laser speckle-based imaging system and methods for deep tissue cerebral blood flow imaging in small rodents.

作者信息

Paul Ria, Sarkar Soumyajit, Das Susweta, Marathe Shruti D, Krishnamoorthy Murali, Abraham Nixon M, Varma Hari M

机构信息

Indian Institute of Technology Bombay (IITB), Department of Biosciences and Bioengineering, Mumbai, Maharashtra, India.

Indian Institute of Science Education and Research (IISER), Laboratory of Neural Circuits and Behaviour (LNCB), Department of Biology, Pune, Maharashtra, India.

出版信息

Neurophotonics. 2025 Apr;12(2):025017. doi: 10.1117/1.NPh.12.2.025017. Epub 2025 Jun 24.

Abstract

SIGNIFICANCE

The imaging of cerebral blood flow in small rodents is crucial for a better understanding of brain functions in healthy and diseased conditions. Existing methods often struggle to provide both superficial and deep tissue blood flow measurements in a non-invasive, flexible, and reliable manner, creating a need for an integrated platform that addresses these limitations.

AIM

We aim to design and develop a multi-modal laser speckle-based imaging platform and associated algorithms to image superficial and deep tissue cerebral blood flow in small rodents.

APPROACH

A modular design has been adopted to integrate laser speckle contrast imaging and multi-speckle diffuse correlation tomography to a single cerebral blood flow imaging platform for small rodents with an independent module for animal holding and handling. A topographic imaging method, equipped with a filter to remove surface artifacts, was incorporated to image cerebral blood flow changes in response to forepaw and olfactory stimuli activations, with the skull and scalp kept intact.

RESULTS

A significant increase in blood flow was found in the olfactory bulbs of mice post-stimulation by various odors ( ). Similarly, forepaw stimulation resulted in a significant increase in blood flow in the contralateral side of the somatosensory cortex with the application of the filter for skull and scalp intact, skull intact, and skull removed cases ( ).

CONCLUSIONS

We have validated our system through functional studies, demonstrating its capability to detect enhanced blood flow changes across the olfactory bulbs and somatosensory cortex in rodents with potential for broad applications in preclinical research.

摘要

意义

对小型啮齿动物的脑血流进行成像,对于更好地理解健康和患病状态下的脑功能至关重要。现有方法往往难以以非侵入性、灵活且可靠的方式同时提供浅表和深部组织的血流测量,因此需要一个能够解决这些局限性的集成平台。

目的

我们旨在设计并开发一种基于多模态激光散斑的成像平台及相关算法,用于对小型啮齿动物的浅表和深部组织脑血流进行成像。

方法

采用模块化设计,将激光散斑对比成像和多散斑扩散相关断层扫描集成到一个用于小型啮齿动物的单一脑血流成像平台,该平台带有一个独立的动物固定和处理模块。引入一种配备滤波器以去除表面伪影的地形成像方法,在保持颅骨和头皮完整的情况下,对前爪和嗅觉刺激激活引起的脑血流变化进行成像。

结果

在小鼠受到各种气味刺激后,嗅球中的血流显著增加( )。同样,在前爪刺激下,在应用用于颅骨和头皮完整、颅骨完整以及颅骨去除情况的滤波器时,体感皮层对侧的血流显著增加( )。

结论

我们通过功能研究验证了我们的系统,证明其能够检测啮齿动物嗅球和体感皮层中增强的血流变化,在临床前研究中具有广泛应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/405e/12185355/1ffc8cb67459/NPh-012-025017-g001.jpg

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