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1.
Lab Chip ; 9(10): 1449-54, 2009 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-19417913

RESUMO

The generation and sensation of mechanical force plays a role in many dynamic biological processes, including touch sensation. This paper presents a two-axis micro strain gauge force sensor constructed from multiple layers of SU-8 and metal on quartz substrates. The sensor was designed to meet requirements for measuring tactile sensitivity and interaction forces exerted during locomotion by small organisms such as the nematode Caenorhabditis elegans. The device is transparent and compatible with light microscopes, allowing behavioral experiments to be combined with quantitative force measurements. For the first time, we have characterized the scale of interaction forces generated in wild-type C. elegans in probing and responding to their environment during locomotion. The device features sub-microN force resolution from 1 Hz to 1 kHz, >25 microN range, kHz acquisition rates and biocompatibility.


Assuntos
Fenômenos Biomecânicos/fisiologia , Compostos de Epóxi , Técnicas Analíticas Microfluídicas/instrumentação , Polímeros , Pressão , Tato/fisiologia , Animais , Caenorhabditis elegans/fisiologia , Simulação por Computador , Desenho de Equipamento , Locomoção/fisiologia
2.
PLoS One ; 8(7): e69058, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-23935923

RESUMO

We present "molecular threading", a surface independent tip-based method for stretching and depositing single and double-stranded DNA molecules. DNA is stretched into air at a liquid-air interface, and can be subsequently deposited onto a dry substrate isolated from solution. The design of an apparatus used for molecular threading is presented, and fluorescence and electron microscopies are used to characterize the angular distribution, straightness, and reproducibility of stretched DNA deposited in arrays onto elastomeric surfaces and thin membranes. Molecular threading demonstrates high straightness and uniformity over length scales from nanometers to micrometers, and represents an alternative to existing DNA deposition and linearization methods. These results point towards scalable and high-throughput precision manipulation of single-molecule polymers.


Assuntos
Ar , DNA/química , Conformação de Ácido Nucleico , Soluções/química , DNA/ultraestrutura , DNA de Cadeia Simples/química , DNA de Cadeia Simples/ultraestrutura , Microscopia Eletrônica/métodos , Microscopia de Fluorescência/métodos , Reprodutibilidade dos Testes , Propriedades de Superfície , Tecnologia/instrumentação , Tecnologia/métodos
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