Pulsed laser activated impulse response encoder (PLAIRE): sensitive evaluation of surface cellular stiffness on zebrafish embryos

Mechanical properties of cells and tissues closely link to their architectures and physiological functions. To obtain the mechanical information of submillimeter scale small biological objects, we recently focused on the object vibration responses when excited by a femtosecond laser-induced impulsiv...

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Veröffentlicht in:Biomedical optics express 2021-03, Vol.12 (3), p.1366-1374
Hauptverfasser: Yasukuni, Ryohei, Minamino, Daiki, Iino, Takanori, Araki, Takashi, Takao, Kohei, Yamada, Sohei, Bessho, Yasumasa, Matsui, Takaaki, Hosokawa, Yoichiroh
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Sprache:eng
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Zusammenfassung:Mechanical properties of cells and tissues closely link to their architectures and physiological functions. To obtain the mechanical information of submillimeter scale small biological objects, we recently focused on the object vibration responses when excited by a femtosecond laser-induced impulsive force. These responses are monitored by the motion of an AFM cantilever placed on top of a sample. In this paper, we examined the surface cellular stiffness of zebrafish embryos based on excited vibration forms in different cytoskeletal states. The vibration responses were more sensitive to their surface cellular stiffness in comparison to the Young's modulus obtained by a conventional AFM force curve measurement. (c) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
ISSN:2156-7085
2156-7085
DOI:10.1364/BOE.414338