Assessing sensing techniques for detecting markers of approaching ecdysis in juvenile tropical rock lobsters, Panulirus ornatus

IF 3.6 2区 农林科学 Q2 AGRICULTURAL ENGINEERING
Charles Sutherland , Alan Henderson , Andrew J. Trotter , Dean Giosio , Greg Smith
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引用次数: 0

Abstract

The development of hatchery technology for spiny lobsters has promoted interest in the establishment of a commercial on shore lobster aquaculture industry in Australia. Cannibalism in culture is extensive with cannibalistic interactions occurring during a relatively brief vulnerability while moulting. Therefore, pre-ecdysis characterisation would create an opportunity to intervene and disrupt cannibalism. Detecting pre-ecdysis with a sensor would open the scope of research into cannibalism reducing culture environments. During this study, three markers that have the potential to indicate ecdysis are assessed: growth of the new integument, formation of suture lines, and pigment changes. These markers were assessed using high frequency imaging ultrasound, computer vision, and digital image analysis in the HSV colour space, respectively.

For individual animals, carotenoid pigment shift is an early and clear marker of pre-ecdysis, however variability between individuals excludes pigmentation being useful in characterising pre-ecdysis. Suture line definition was problematic under visible light because its definition was reduced by similarly coloured pigments, therefore using suture lines as a pre-ecdysis characteriser requires better definition. A logical research approach to enhance suture line clarity in images is to image them with light outside the visible spectrum. Growth of the new integument was visible on sonographs beneath the branchiostegites indicating that ultrasound may be a useful tool for sensing pre-ecdysis in lobsters. Ultrasonic investigation using a single element transducer may be a lower cost and robust sensing solution to detect new integument growth and is a high priority future research pathway.

检测热带岩龙虾幼鱼蜕皮标志物的传感技术评估
多刺龙虾孵化技术的发展促进了人们对在澳大利亚建立商业化岸上龙虾养殖业的兴趣。文化中的食人行为是广泛的,在换羽时相对短暂的脆弱期内会发生食人互动。因此,蜕皮前的特征将创造一个干预和破坏同类相残的机会。用传感器检测蜕皮前将打开减少同类相残的培养环境的研究范围。在这项研究中,评估了三种有可能指示蜕皮的标志物:新表皮的生长、缝合线的形成和色素的变化。分别使用高频成像超声、计算机视觉和HSV颜色空间中的数字图像分析来评估这些标志物。对于个体动物来说,类胡萝卜素色素转移是蜕皮前的早期明确标志,但个体之间的变异性排除了色素沉着对蜕皮前特征的有用性。缝合线的定义在可见光下是有问题的,因为类似颜色的颜料降低了其定义,因此使用缝合线作为蜕皮前特征需要更好的定义。提高图像缝合线清晰度的一种合乎逻辑的研究方法是用可见光谱之外的光对其进行成像。在鳃被盖下的声像图上可以看到新的被膜的生长,这表明超声可能是检测龙虾蜕皮前的有用工具。使用单元件换能器的超声波研究可能是一种成本较低、检测新表皮生长的稳健传感解决方案,也是未来高度优先的研究途径。
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来源期刊
Aquacultural Engineering
Aquacultural Engineering 农林科学-农业工程
CiteScore
8.60
自引率
10.00%
发文量
63
审稿时长
>24 weeks
期刊介绍: Aquacultural Engineering is concerned with the design and development of effective aquacultural systems for marine and freshwater facilities. The journal aims to apply the knowledge gained from basic research which potentially can be translated into commercial operations. Problems of scale-up and application of research data involve many parameters, both physical and biological, making it difficult to anticipate the interaction between the unit processes and the cultured animals. Aquacultural Engineering aims to develop this bioengineering interface for aquaculture and welcomes contributions in the following areas: – Engineering and design of aquaculture facilities – Engineering-based research studies – Construction experience and techniques – In-service experience, commissioning, operation – Materials selection and their uses – Quantification of biological data and constraints
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