周围神经功能和结构的荧光成像。

IF 6.1 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Xiaoqi Yang, Yumin Zhang, Yadong Liu, Yuanyi Wang and Nan Zhou
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引用次数: 0

摘要

周围神经损伤很常见,可能会造成灾难性后果。尽管外周神经具有显著的再生能力,但由于年龄、损伤类型和延迟愈合等多种因素,全功能恢复往往具有挑战性,从而导致慢性疾病,导致终身痛苦和巨大的经济负担。在各种技术中,荧光成像由于其可行性和动态实时成像,可能是克服这些限制和改善预后的关键。术中动态荧光成像可以可视化神经的形态结构,从而使外科医生可以减少药物诱导的损伤的发生率。基于轴突运输的神经成像可以可视化神经的内部运输功能,有助于早期、客观、准确地评估再生修复的程度,从而对恢复不良的患者进行早期干预,从而改善预后。这篇综述简要讨论了已经报道或可能使用的外周神经荧光染料,重点讨论了它们在可视化神经功能和解剖结构中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fluorescence imaging of peripheral nerve function and structure

Fluorescence imaging of peripheral nerve function and structure

Peripheral nerve injuries are common and can cause catastrophic consequences. Although peripheral nerves have notable regenerative capacity, full functional recovery is often challenging due to a number of factors, including age, the type of injury, and delayed healing, resulting in chronic disorders that cause lifelong miseries and significant financial burdens. Fluorescence imaging, among the various techniques, may be the key to overcome these restrictions and improve the prognosis because of its feasibility and dynamic real-time imaging. Intraoperative dynamic fluorescence imaging allows the visualization of the morphological structure of the nerve so that surgeons can reduce the incidence of medically induced injury. Axoplasmic transport-based neuroimaging allows the visualization of the internal transport function of the nerve, facilitating early, objective, and accurate assessment of the degree of regenerative repair, allowing early intervention in patients with poor recovery, thereby improving prognosis. This review briefly discusses peripheral nerve fluorescent dyes that have been reported or could potentially be employed, with a focus on their role in visualizing the nerve's function and anatomy.

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来源期刊
Journal of Materials Chemistry B
Journal of Materials Chemistry B MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.30%
发文量
866
期刊介绍: Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive: Antifouling coatings Biocompatible materials Bioelectronics Bioimaging Biomimetics Biomineralisation Bionics Biosensors Diagnostics Drug delivery Gene delivery Immunobiology Nanomedicine Regenerative medicine & Tissue engineering Scaffolds Soft robotics Stem cells Therapeutic devices
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