Publication:

A vibrating capillary for ultrasound rotation manipulation of zebrafish larvae

Date

Date

Date
2024
Journal Article
Published version

Citations

Citation copied

Zhang, Z., Cao, Y., Caviglia, S., Agrawal, P., Neuhauss, S. C. F., & Ahmed, D. (2024). A vibrating capillary for ultrasound rotation manipulation of zebrafish larvae. Lab on a Chip, 24(4), 764–775. https://doi.org/10.1039/d3lc00817g

Abstract

Abstract

Abstract

Multifunctional micromanipulation systems have garnered significant attention due to the growing interest in biological and medical research involving model organisms like zebrafish (Danio rerio). Here, we report a novel acoustofluidic rotational micromanipulation system that offers rapid trapping, high-speed rotation, multi-angle imaging, and 3D model reconstruction of zebrafish larvae. An ultrasound-activated oscillatory glass capillary is used to trap and rotate a zebrafish larva. Simulation and experimental results demonstrate tha

Additional indexing

Creators (Authors)

Journal/Series Title

Journal/Series Title

Journal/Series Title

Volume

Volume

Volume
24

Number

Number

Number
4

Page range/Item number

Page range/Item number

Page range/Item number
764

Page end

Page end

Page end
775

Item Type

Item Type

Item Type
Journal Article

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Keywords

Biomedical Engineering, General Chemistry, Biochemistry, Bioengineering

Language

Language

Language
English

Publication date

Publication date

Publication date
2024-01-01

Date available

Date available

Date available
2024-02-03

Publisher

Publisher

Publisher

ISSN or e-ISSN

ISSN or e-ISSN

ISSN or e-ISSN
1473-0189

OA Status

OA Status

OA Status
Hybrid

PubMed ID

PubMed ID

PubMed ID

Citations

Citation copied

Zhang, Z., Cao, Y., Caviglia, S., Agrawal, P., Neuhauss, S. C. F., & Ahmed, D. (2024). A vibrating capillary for ultrasound rotation manipulation of zebrafish larvae. Lab on a Chip, 24(4), 764–775. https://doi.org/10.1039/d3lc00817g

Hybrid Open Access
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Files
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Files
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