Novel Application of Non-Invasive Methodological Approaches in Biomedical Sciences Towards Better Understanding of Marine Teleost Ocular Health and Disease.

IF 2.2 3区 农林科学 Q2 FISHERIES Journal of fish diseases Pub Date : 2024-12-16 DOI:10.1111/jfd.14072
Robert L Gendron, Rebecca R Kwabiah, Hélène Paradis, Denise Tucker, Danny Boyce, Javier Santander
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Abstract

Seafood is an important resource for global nutrition and food security, with both land and marine aquaculture playing pivotal roles. High visual acuity is key for health and survival of farmed, cultured, and wild fish. Cleaner fish technology to control parasite infestation has become important in marine aquaculture and highlights the importance of visual acuity in the efficacy of cleaner fish species. New clinical diagnostic approaches towards understanding and optimising fish visual health could benefit both aquacultured and wild fish populations. Opportunities for developing and using advanced non-invasive clinical assessment and diagnosis of ocular health in wild, cultured, and experimental fish are key to more rapidly realising how threats to eye health in these animals might be better understood and mitigated. Ophthalmoscopy can rapidly and non-invasively image anatomical aspects of retinal and anterior ocular tissues and has been used in mammalian biomedicine since the turn of the 20th century. More now than ever, labour-intensive post-mortem approaches for ocular analysis such as histology are increasingly being replaced or supplemented by application of various forms of optical coherence tomography (OCT) imaging of ocular tissues in mammalian biomedicine. Advances and availability of other methodological approaches such as three-dimensional printing and computer science make instrument customisation affordable and adaptable. This review article will outline how ophthalmoscopy, OCT, and other methodologies are being applied towards understanding ocular health in teleost fish species and will describe some of the future opportunities that technological advances might afford in advancing ocular imaging in fish health and disease in general.

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非侵入性方法在生物医学中的新应用,以更好地了解海洋远洋鱼类的眼部健康和疾病。
海产品是全球营养和粮食安全的重要资源,陆地和海洋水产养殖业都发挥着举足轻重的作用。高视觉敏锐度是养殖鱼类、人工养殖鱼类和野生鱼类健康和生存的关键。控制寄生虫侵扰的清洁鱼技术在海水养殖业中已变得非常重要,并突出了视觉敏锐度对清洁鱼类功效的重要性。了解和优化鱼类视觉健康的新临床诊断方法可使水产养殖鱼类和野生鱼类受益。开发和使用先进的非侵入性临床评估和诊断野生鱼类、养殖鱼类和实验鱼类眼部健康的机会,是更快地了解和减轻这些动物眼部健康威胁的关键。眼科视网膜镜可以快速、无创地对视网膜和眼球前部组织的解剖结构进行成像,自 20 世纪初以来一直用于哺乳动物的生物医学。现在,在哺乳动物生物医学中,越来越多地应用各种形式的光学相干断层扫描(OCT)对眼部组织进行成像,从而取代或补充了组织学等劳动密集型的死后眼部分析方法。三维打印和计算机科学等其他方法的进步和可用性使仪器定制变得经济实惠且适应性强。这篇综述文章将概述如何应用眼底镜、OCT 和其他方法来了解驯养鱼类的眼部健康状况,并将描述技术进步在促进鱼类健康和疾病的眼部成像方面可能提供的一些未来机遇。
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来源期刊
Journal of fish diseases
Journal of fish diseases 农林科学-海洋与淡水生物学
CiteScore
4.60
自引率
12.00%
发文量
170
审稿时长
6 months
期刊介绍: Journal of Fish Diseases enjoys an international reputation as the medium for the exchange of information on original research into all aspects of disease in both wild and cultured fish and shellfish. Areas of interest regularly covered by the journal include: -host-pathogen relationships- studies of fish pathogens- pathophysiology- diagnostic methods- therapy- epidemiology- descriptions of new diseases
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