自由游动的成年斑马鱼的姿势分析,Danio rerio:“鱼”的运动设计起源。

IF 2.1 4区 心理学 Q3 BEHAVIORAL SCIENCES Brain Behavior and Evolution Pub Date : 2024-12-16 DOI:10.1159/000543081
Jagmeet S Kanwal, Bhavjeet S Sanghera, Riya Dabbi, Eric Glasgow
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引用次数: 0

摘要

动作需要产生推力来转弯或在物理空间中向前移动身体。永久控制身体表面上每个点的相对位置的计算空间可能是巨大的。我们假设有效运动设计的进化,通过利用身体和周围介质之间的被动(反应)力来最大限度地减少主动(神经)控制。为了验证我们的假设,我们研究了成年斑马鱼(Danio rerio)在自由游泳时的刻板姿势。我们使用深度学习姿势估计工具包DeepLabCut进行无标记跟踪,以跟踪身体部位之间的几何关系。为了识别从12条自由行为的斑马鱼身上获得的假定的姿势配置簇,我们使用了无监督多变量时间序列分析(b - solid机器学习软件)。当应用于单个个体时,该方法显示最适合36至50个集群,而来自所有12只动物的数据池为86个集群。每一个簇的质心获得了超过14000个连续的帧,记录了一条鱼,代表了相对稳定的“目标身体姿势”和指向和远离目标姿势的姿势间“过渡姿势”的先验分类。我们使用每个簇的平均参数值的多维尺度来映射二维姿态空间内的簇质心。通过先验视觉分析,我们将相邻的姿势变体压缩为15个超星系团或核心体构型。我们制定了一个指定前后水平/s(上,中,下)和弯曲程度的术语。结论成年斑马鱼主要在三个水平上的弯曲抑制了陆地脊椎动物颈部、前肢和后肢的可操作性设计。
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Pose Analysis in Free-Swimming Adult Zebrafish, Danio rerio: "Fishy" Origins of Movement Design.

Introduction: Movement requires maneuvers that generate thrust to either make turns or move the body forward in physical space. The computational space for perpetually controlling the relative position of every point on the body surface can be vast. We hypothesize the evolution of efficient design for movement that minimizes active (neural) control by leveraging the passive (reactive) forces between the body and the surrounding medium at play. To test our hypothesis, we investigate the presence of stereotypical postures during free-swimming in adult zebrafish, Danio rerio.

Methods: We perform markerless tracking using DeepLabCut (DLC), a deep learning pose-estimation toolkit, to track geometric relationships between body parts. We identify putative clusters of postural configurations from twelve freely behaving zebrafish, using unsupervised multivariate time-series analysis (B-SOiD machine-learning software) and of distances and angles between body segments extracted from DLC data.

Results: When applied to single individuals, DLC-extracted data reveal a best-fit for 36-50 clusters in contrast to 86 clusters for data pooled from all 12 animals. The centroids of each cluster obtained over 14,000 sequential frames represent an a priori classification into relatively stable "target body postures." We use multidimensional scaling of mean parameter values for each cluster to map cluster centroids within two dimensions of postural space. From a posteriori visual analysis, we condense neighboring postural variants into 15 superclusters or core body configurations. We develop a nomenclature specifying the anteroposterior level/s (upper, mid, and lower) and degree of bending.

Conclusion: Our results suggest that constraining bends to mainly three anteroposterior levels in fish paved the way for the evolution of a neck, fore- and hind limb design for maneuverability in land vertebrates.

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来源期刊
Brain Behavior and Evolution
Brain Behavior and Evolution 医学-行为科学
CiteScore
3.10
自引率
23.50%
发文量
31
审稿时长
>12 weeks
期刊介绍: ''Brain, Behavior and Evolution'' is a journal with a loyal following, high standards, and a unique profile as the main outlet for the continuing scientific discourse on nervous system evolution. The journal publishes comparative neurobiological studies that focus on nervous system structure, function, or development in vertebrates as well as invertebrates. Approaches range from the molecular over the anatomical and physiological to the behavioral. Despite this diversity, most papers published in ''Brain, Behavior and Evolution'' include an evolutionary angle, at least in the discussion, and focus on neural mechanisms or phenomena. Some purely behavioral research may be within the journal’s scope, but the suitability of such manuscripts will be assessed on a case-by-case basis. The journal also publishes review articles that provide critical overviews of current topics in evolutionary neurobiology.
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