Why do insects have such a high density of flow-sensing hairs? Insights from the hydromechanics of biomimetic MEMS sensors

被引:48
作者
Casas, Jerome [1 ,2 ]
Steinmann, Thomas [1 ]
Krijnen, Gijs [3 ]
机构
[1] Univ Tours, CNRS, UMR 6035, Fac Sci & Tech,Inst Rech Biol Insecte, F-37200 Tours, France
[2] INRA, UR Zool Forestiere 633, F-45075 Orleans 2, France
[3] Univ Twente, Transducers Sci & Technol Grp, MESA Res Inst, Fac Elect Engn, NL-7500 AE Enschede, Netherlands
关键词
sensory ecology; physical ecology; biomimetics; hair canopy; mechanosensors; boundary layer; FLUID-FLOW; CRICKET;
D O I
10.1098/rsif.2010.0093
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Insects and arachnids are often quite hairy. The reasons for this high density of sensory hairs are unknown. Previous studies have predicted strong hydrodynamic coupling between densely packed airflow-sensitive hairs. Flow perturbation owing to single hairs and between tandem hairs, however, has never been experimentally measured. This paper aims to quantify the extent of flow perturbation by single and tandem hairs directly, using biomimetic microelectromechanical system (MEMS) hairs as physical models and particle image velocimetry (PIV) for flow visualization. Single and tandem MEMS hairs of varying interhair distances were subjected to oscillatory flows of varying frequency. Decreasing hair-to-hair distance markedly reduced flow velocity amplitude and increased the phase shift between the far-field flow and the flow between hairs. These effects were stronger for lower flow frequencies. We predict strong hydrodynamic coupling within whole natural hair canopies exposed to natural stimuli, depending on arthropod and hair sizes, and hair density. Thus, rather than asking why arthropods have so many hairs, it may be useful to address why hairs are packed together at such high densities, particularly given the exquisite sensitivity of a single hair.
引用
收藏
页码:1487 / 1495
页数:9
相关论文
共 23 条
[1]   Viscosity-mediated motion coupling between pairs of trichobothria on the leg of the spider Cupiennius salei [J].
Bathellier, B ;
Barth, FG ;
Albert, JT ;
Humphrey, JAC .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-NEUROETHOLOGY SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 2005, 191 (08) :733-746
[2]   Viscosity-mediated motion coupling between pairs of trichobothria on the leg of the spider Cupiennius salei (vol 191, pg 733, 2005) [J].
Bathellier, Brice ;
Barth, Friedrich G. ;
Albert, Joerg T. ;
Humphrey, Joseph A. C. .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-NEUROETHOLOGY SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 2010, 196 (01) :89-89
[3]   ADVANCEMENTS IN TECHNOLOGY AND DESIGN OF BIOMIMETIC FLOW-SENSOR ARRAYS [J].
Bruinink, C. M. ;
Jaganatharaja, R. K. ;
de Boer, M. J. ;
Berenschot, E. ;
Kolster, M. L. ;
Lammerink, T. S. J. ;
Wiegerink, R. J. ;
Krijnen, G. J. M. .
IEEE 22ND INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS (MEMS 2009), 2009, :152-155
[4]  
Camhi J.M., 1984, NEUROETHOLOGY NERVE
[5]   Physical Ecology of Fluid Flow Sensing in Arthropods [J].
Casas, Jerome ;
Dangles, Olivier .
ANNUAL REVIEW OF ENTOMOLOGY, 2010, 55 :505-520
[6]   The Aerodynamic Signature of Running Spiders [J].
Casas, Jerome ;
Steinmann, Thomas ;
Dangles, Olivier .
PLOS ONE, 2008, 3 (05)
[7]   PADDLES AND RAKES - FLUID-FLOW THROUGH BRISTLED APPENDAGES OF SMALL ORGANISMS [J].
CHEER, AYL ;
KOEHL, MAR .
JOURNAL OF THEORETICAL BIOLOGY, 1987, 129 (01) :17-39
[8]   Interaction between arthropod filiform hairs in a fluid environment [J].
Cummins, Bree ;
Gedeon, Tomas ;
Klapper, Isaac ;
Cortez, Ricardo .
JOURNAL OF THEORETICAL BIOLOGY, 2007, 247 (02) :266-280
[9]   Ontogeny of air-motion sensing in cricket [J].
Dangles, O. ;
Pierre, D. ;
Magal, C. ;
Vannier, F. ;
Casas, J. .
JOURNAL OF EXPERIMENTAL BIOLOGY, 2006, 209 (21) :4363-4370
[10]   Relative contributions of organ shape and receptor arrangement to the design of cricket's cercal system [J].
Dangles, Olivier ;
Steinmann, Thomas ;
Pierre, Dominique ;
Vannier, Fabrice ;
Casas, Jerome .
JOURNAL OF COMPARATIVE PHYSIOLOGY A-NEUROETHOLOGY SENSORY NEURAL AND BEHAVIORAL PHYSIOLOGY, 2008, 194 (07) :653-663