Literature DB >> 23538838

Selective pumping in a network: insect-style microscale flow transport.

Yasser Aboelkassem1, Anne E Staples.   

Abstract

A new paradigm for selective pumping of fluids in a complex network of channels in the microscale flow regime is presented. The model is inspired by internal flow distributions produced by the rhythmic wall contractions observed in many insect tracheal networks. The approach presented here is a natural extension of previous two-dimensional modeling of insect-inspired microscale flow transport in a single channel, and aims to manipulate fluids efficiently in microscale networks without the use of any mechanical valves. This selective pumping approach enables fluids to be transported, controlled and precisely directed into a specific branch in a network while avoiding other possible routes. In order to present a quantitative analysis of the selective pumping approach presented here, the velocity and pressure fields and the time-averaged net flow that are induced by prescribed wall contractions are calculated numerically using the method of fundamental solutions. More specifically, the Stokeslets-meshfree method is used in this study to solve the Stokes equations that govern the flow motions in a network with moving wall contractions. The results presented here might help in understanding some features of the insect respiratory system function and guide efforts to fabricate novel microfluidic devices for flow transport and mixing, and targeted drug delivery applications.

Mesh:

Year:  2013        PMID: 23538838     DOI: 10.1088/1748-3182/8/2/026004

Source DB:  PubMed          Journal:  Bioinspir Biomim        ISSN: 1748-3182            Impact factor:   2.956


  3 in total

1.  Finding our way through phenotypes.

Authors:  Andrew R Deans; Suzanna E Lewis; Eva Huala; Salvatore S Anzaldo; Michael Ashburner; James P Balhoff; David C Blackburn; Judith A Blake; J Gordon Burleigh; Bruno Chanet; Laurel D Cooper; Mélanie Courtot; Sándor Csösz; Hong Cui; Wasila Dahdul; Sandip Das; T Alexander Dececchi; Agnes Dettai; Rui Diogo; Robert E Druzinsky; Michel Dumontier; Nico M Franz; Frank Friedrich; George V Gkoutos; Melissa Haendel; Luke J Harmon; Terry F Hayamizu; Yongqun He; Heather M Hines; Nizar Ibrahim; Laura M Jackson; Pankaj Jaiswal; Christina James-Zorn; Sebastian Köhler; Guillaume Lecointre; Hilmar Lapp; Carolyn J Lawrence; Nicolas Le Novère; John G Lundberg; James Macklin; Austin R Mast; Peter E Midford; István Mikó; Christopher J Mungall; Anika Oellrich; David Osumi-Sutherland; Helen Parkinson; Martín J Ramírez; Stefan Richter; Peter N Robinson; Alan Ruttenberg; Katja S Schulz; Erik Segerdell; Katja C Seltmann; Michael J Sharkey; Aaron D Smith; Barry Smith; Chelsea D Specht; R Burke Squires; Robert W Thacker; Anne Thessen; Jose Fernandez-Triana; Mauno Vihinen; Peter D Vize; Lars Vogt; Christine E Wall; Ramona L Walls; Monte Westerfeld; Robert A Wharton; Christian S Wirkner; James B Woolley; Matthew J Yoder; Aaron M Zorn; Paula Mabee
Journal:  PLoS Biol       Date:  2015-01-06       Impact factor: 8.029

2.  Anisotropic shrinkage of insect air sacs revealed in vivo by X-ray microtomography.

Authors:  Liang Xu; Rongchang Chen; Guohao Du; Yiming Yang; Feixiang Wang; Biao Deng; Honglan Xie; Tiqiao Xiao
Journal:  Sci Rep       Date:  2016-09-01       Impact factor: 4.379

3.  Patterns of Tracheal Compression in the Thorax of the Ground Beetle, Platynus decentis.

Authors:  John S Hochgraf; James S Waters; John J Socha
Journal:  Yale J Biol Med       Date:  2018-12-21
  3 in total

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