Why do insects have such a high density of flow-sensing hairs? Insights from the hydromechanics of biomimetic MEMS sensors
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[1] Olivier Dangles,et al. Physical ecology of fluid flow sensing in arthropods. , 2010, Annual review of entomology.
[2] Thomas Steinmann,et al. The Aerodynamic Signature of Running Spiders , 2008, PloS one.
[3] G. Jacobs,et al. Direction sensitivity of the filiform hair population of the cricket cereal system , 1995, Journal of Comparative Physiology A.
[4] Jérôme Casas,et al. Hair canopy of cricket sensory system tuned to predator signals. , 2006, Journal of theoretical biology.
[5] Tomás Gedeon,et al. Non-commercial Research and Educational Use including without Limitation Use in Instruction at Your Institution, Sending It to Specific Colleagues That You Know, and Providing a Copy to Your Institution's Administrator. All Other Uses, Reproduction and Distribution, including without Limitation Comm , 2022 .
[6] T. Gedeon,et al. Modeling arthropod filiform hair motion using the penalty immersed boundary method. , 2008, Journal of biomechanics.
[7] J A C Humphrey,et al. Response of cricket and spider motion-sensing hairs to airflow pulsations , 2009, Journal of The Royal Society Interface.
[8] Jeffrey M. Camhi,et al. Neuroethology: Nerve Cells and the Natural Behavior of Animals , 1984 .
[9] G. Krijnen,et al. Cricket Inspired Flow-Sensor Arrays , 2007, 2007 IEEE Sensors.
[10] Tateo Shimozawa,et al. The aerodynamics and sensory physiology of range fractionation in the cereal filiform sensilla of the cricketGryllus bimaculatus , 1984, Journal of Comparative Physiology A.
[11] Walter Federle,et al. Why are so many adhesive pads hairy? , 2006, Journal of Experimental Biology.
[12] John Hallam,et al. A computational fluid dynamics model of viscous coupling of hairs , 2010, Journal of Comparative Physiology A.
[13] A. Y. Cheer,et al. Paddles and rakes: Fluid flow through bristled appendages of small organisms* , 1987 .
[14] Marcel Dijkstra,et al. MEMS based hair flow-sensors as model systems for acoustic perception studies , 2006, Nanotechnology.
[15] J Casas,et al. Air-flow sensitive hairs: boundary layers in oscillatory flows around arthropod appendages , 2006, Journal of Experimental Biology.
[16] M.J. de Boer,et al. Advancements in Technology and Design of Biomimetic Flow-Sensor Arrays , 2009, 2009 IEEE 22nd International Conference on Micro Electro Mechanical Systems.
[17] Graham I Cummins,et al. The cricket cercal system implements delay-line processing. , 2010, Journal of neurophysiology.
[18] Thomas Steinmann,et al. Relative contributions of organ shape and receptor arrangement to the design of cricket’s cercal system , 2008, Journal of Comparative Physiology A.
[19] Friedrich G. Barth,et al. Medium Flow-Sensing Hairs: Biomechanics and Models , 2007 .
[20] Brice Bathellier,et al. Viscosity-mediated motion coupling between pairs of trichobothria on the leg of the spider Cupiennius salei , 2005, Journal of Comparative Physiology A.
[21] J Casas,et al. Ontogeny of air-motion sensing in cricket , 2006, Journal of Experimental Biology.
[22] Tateo Shimozawa,et al. Cricket Wind Receptors: Thermal Noise for the Highest Sensitivity Known , 2003 .