Kinematic analysis and visualization of Tetraselmis microalgae 3D motility by digital holography

Author:

Sirico Daniele Gaetano12ORCID,Cavalletti Elena3,Miccio Lisa1,Bianco Vittorio1ORCID,Memmolo Pasquale1ORCID,Sardo Angela13,Ferraro Pietro1ORCID

Affiliation:

1. CNR - Institute of Applied Sciences and Intelligent Systems (ISASI)

2. Università degli Studi di Napoli Federico II

3. Stazione Zoologica Anton Dohrn

Abstract

A study on locomotion in a 3D environment of Tetraselmis microalgae by digital holographic microscopy is reported. In particular, a fast and semiautomatic criterion is revealed for tracking and analyzing the swimming path of a microalga (i.e., Tetraselmis species) in a 3D volume. Digital holography (DH) in a microscope off-axis configuration is exploited as a useful method to enable fast autofocusing and recognition of objects in the field of view, thus coupling DH with appropriate numerical algorithms. Through the proposed method we measure, simultaneously, the tri-dimensional paths followed by the flagellate microorganism and the full set of the kinematic parameters that describe the swimming behavior of the analyzed microorganisms by means of a polynomial fitting and segmentation. Furthermore, the method is capable to furnish the accurate morphology of the microorganisms at any instant of time along its 3D trajectory. This work launches a promising trend having as the main objective the combined use of DH and motility microorganism analysis as a label-free and non-invasive environmental monitoring tool, employable also for in situ measurements. Finally, we show that the locomotion can be visualized intriguingly by different modalities to furnish marine biologists with a clear 3D representation of all the parameters of the kinematic set in order to better understand the behavior of the microorganism under investigation.

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Engineering (miscellaneous),Electrical and Electronic Engineering

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Rapid flowing cells localization enabled by spatiotemporal manipulation of their holographic patterns;APL Bioengineering;2024-09-01

2. All-Optical dual module platform for motility-based functional scrutiny of microencapsulated probiotic bacteria;Biomedical Optics Express;2023-12-18

3. A Digital Holographic analysis on Tetraselmis sensitivity to copper;2023 IEEE International Workshop on Metrology for the Sea; Learning to Measure Sea Health Parameters (MetroSea);2023-10-04

4. Digital holographic approaches to the detection and characterization of microplastics in water environments;Applied Optics;2023-02-07

5. A study on motility of the green microalgae Tetraselmis tracked by digital holography;2022 IEEE International Workshop on Metrology for the Sea; Learning to Measure Sea Health Parameters (MetroSea);2022-10-03

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