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量化活体完整鱿鱼单个器官水平上对视觉惊吓刺激作出反应时色素细胞活动的速度。

Quantifying the Speed of Chromatophore Activity at the Single-Organ Level in Response to a Visual Startle Stimulus in Living, Intact Squid.

作者信息

Hadjisolomou Stavros P, El-Haddad Rita W, Kloskowski Kamil, Chavarga Alla, Abramov Israel

机构信息

Department of Social and Behavioral Sciences, College of Arts and Sciences, American University of Kuwait, Salmiya, Kuwait.

Department of Psychology, Brooklyn College, City University of New York, Brooklyn, NY, United States.

出版信息

Front Physiol. 2021 Jun 18;12:675252. doi: 10.3389/fphys.2021.675252. eCollection 2021.

Abstract

The speed of adaptive body patterning in coleoid cephalopods is unmatched in the natural world. While the literature frequently reports their remarkable ability to change coloration significantly faster than other species, there is limited research on the temporal dynamics of rapid chromatophore coordination underlying body patterning in living, intact animals. In this exploratory pilot study, we aimed to measure chromatophore activity in response to a light flash stimulus in seven squid, . We video-recorded the head/arms, mantle, and fin when squid were presented with a light flash startle stimulus. Individual chromatophores were detected and tracked over time using image analysis. We assessed baseline and response chromatophore surface area parameters before and after flash stimulation, respectively. Using change-point analysis, we identified 4,065 chromatophores from 185 trials with significant surface area changes elicited by the flash stimulus. We defined the temporal dynamics of chromatophore activity to flash stimulation as the latency, duration, and magnitude of surface area changes (expansion or retraction) following the flash presentation. Post stimulation, the response's mean latency was at 50 ms (± 16.67 ms), for expansion and retraction, across all body regions. The response duration ranged from 217 ms (fin, retraction) to 384 ms (heads/arms, expansion). While chromatophore expansions had a mean surface area increase of 155.06%, the retractions only caused a mean reduction of 40.46%. Collectively, the methods and results described contribute to our understanding of how cephalopods can employ thousands of chromatophore organs in milliseconds to achieve rapid, dynamic body patterning.

摘要

在自然界中,头足纲软体动物适应性身体图案形成的速度无与伦比。虽然文献中经常报道它们具有比其他物种更快显著改变体色的非凡能力,但对于活体完整动物身体图案形成背后快速色素细胞协调的时间动态研究有限。在这项探索性初步研究中,我们旨在测量7只鱿鱼对闪光刺激的色素细胞活动。当鱿鱼受到闪光惊吓刺激时,我们对其头部/腕部、外套膜和鳍进行了视频记录。使用图像分析对单个色素细胞进行了随时间的检测和跟踪。我们分别评估了闪光刺激前后的基线和反应色素细胞表面积参数。通过变点分析,我们从185次试验中识别出4065个色素细胞,这些色素细胞因闪光刺激而出现显著的表面积变化。我们将色素细胞对闪光刺激活动的时间动态定义为闪光呈现后表面积变化(扩张或收缩)的潜伏期、持续时间和幅度。刺激后,所有身体区域的反应平均潜伏期在50毫秒(±16.67毫秒),用于扩张和收缩。反应持续时间从217毫秒(鳍,收缩)到384毫秒(头部/腕部,扩张)不等。虽然色素细胞扩张的平均表面积增加了155.06%,但收缩仅导致平均减少了40.46%。总的来说,所描述的方法和结果有助于我们理解头足类动物如何在几毫秒内利用数千个色素细胞器官实现快速、动态的身体图案形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90af/8250766/cfb06ea233de/fphys-12-675252-g001.jpg

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