The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)

In most beetles, the hind wings are thin and fragile; when at rest, they are held over the back of the beetle. When the hind wing unfolds, it provides the necessary aerodynamic forces for flight. In this paper, we investigate the hydraulic mechanism of the unfolding process of the hind wings in Dorc...

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Main Authors: Jiyu Sun, Mingze Ling, Wei Wu, Bharat Bhushan, Jin Tong
Format: Article
Language:English
Published: MDPI AG 2014-04-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:http://www.mdpi.com/1422-0067/15/4/6009
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spelling doaj-4dd0a566e2d54947a5df05561b6a6f6e2020-11-25T00:38:56ZengMDPI AGInternational Journal of Molecular Sciences1422-00672014-04-011546009601810.3390/ijms15046009ijms15046009The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)Jiyu Sun0Mingze Ling1Wei Wu2Bharat Bhushan3Jin Tong4Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130025, ChinaKey Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130025, ChinaKey Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130025, ChinaNanoprobe Laboratory for Bio- & Nanotechnology and Biomimetics (NLB2), the Ohio State University, 201 W. 19th Avenue, Columbus, OH 43210-1142, USAKey Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130025, ChinaIn most beetles, the hind wings are thin and fragile; when at rest, they are held over the back of the beetle. When the hind wing unfolds, it provides the necessary aerodynamic forces for flight. In this paper, we investigate the hydraulic mechanism of the unfolding process of the hind wings in Dorcus titanus platymelus (Oder: Coleoptera). The wing unfolding process of Dorcus titanus platymelus was examined using high speed camera sequences (400 frames/s), and the hydraulic pressure in the veins was measured with a biological pressure sensor and dynamic signal acquisition and analysis (DSA) during the expansion process. We found that the total time for the release of hydraulic pressure during wing folding is longer than the time required for unfolding. The pressure is proportional to the length of the wings and the body mass of the beetle. A retinal camera was used to investigate the fluid direction. We found that the peak pressures correspond to two main cross-folding joint expansions in the hind wing. These observations strongly suggest that blood pressure facilitates the extension of hind wings during unfolding.http://www.mdpi.com/1422-0067/15/4/6009beetlehind wingunfoldinghydraulic mechanismmicro air vehicles (MAVs)
collection DOAJ
language English
format Article
sources DOAJ
author Jiyu Sun
Mingze Ling
Wei Wu
Bharat Bhushan
Jin Tong
spellingShingle Jiyu Sun
Mingze Ling
Wei Wu
Bharat Bhushan
Jin Tong
The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
International Journal of Molecular Sciences
beetle
hind wing
unfolding
hydraulic mechanism
micro air vehicles (MAVs)
author_facet Jiyu Sun
Mingze Ling
Wei Wu
Bharat Bhushan
Jin Tong
author_sort Jiyu Sun
title The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
title_short The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
title_full The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
title_fullStr The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
title_full_unstemmed The Hydraulic Mechanism of the Unfolding of Hind Wings in Dorcus titanus platymelus (Order: Coleoptera)
title_sort hydraulic mechanism of the unfolding of hind wings in dorcus titanus platymelus (order: coleoptera)
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2014-04-01
description In most beetles, the hind wings are thin and fragile; when at rest, they are held over the back of the beetle. When the hind wing unfolds, it provides the necessary aerodynamic forces for flight. In this paper, we investigate the hydraulic mechanism of the unfolding process of the hind wings in Dorcus titanus platymelus (Oder: Coleoptera). The wing unfolding process of Dorcus titanus platymelus was examined using high speed camera sequences (400 frames/s), and the hydraulic pressure in the veins was measured with a biological pressure sensor and dynamic signal acquisition and analysis (DSA) during the expansion process. We found that the total time for the release of hydraulic pressure during wing folding is longer than the time required for unfolding. The pressure is proportional to the length of the wings and the body mass of the beetle. A retinal camera was used to investigate the fluid direction. We found that the peak pressures correspond to two main cross-folding joint expansions in the hind wing. These observations strongly suggest that blood pressure facilitates the extension of hind wings during unfolding.
topic beetle
hind wing
unfolding
hydraulic mechanism
micro air vehicles (MAVs)
url http://www.mdpi.com/1422-0067/15/4/6009
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