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Cells lying on a bed of microneedles: An approach to isolate mechanical force John L. Tan*, Joe Tien*, Dana M. Pirone*, Darren S. Gray*, Kiran Bhadriraju*, and Christopher S. Chen*†‡ Departments of *Biomedical Engine
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Document Date: 2012-09-28 18:12:14


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City

Irvine / Schwarz / Costa Mesa / Sampson / Newton / Baltimore / Sarasota / Bristol / New York / Billerica / West Chester / Rensselaer / Cambridge / Akiyama / San Diego / /

Company

IgG / Life Technologies / Safran / SPI Supplies / Becton Dickinson / BD Biosciences / B. & Safran S. A. / Corning / BASF / /

Country

United States / /

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Event

Movie Release / /

Facility

The Johns Hopkins University / New York University / National Institute of Biomedical Imaging / Harvard University / /

IndustryTerm

image analysis software / actuator devices / computational algorithms / culture media / well-defined measurement systems / chemical and mechanical cues / mechanical and biochemical control systems / microcontact printing / /

MedicalCondition

Bovine pulmonary artery smooth mus / Bovine pulmonary artery endothelial cells / contraction / /

Movie

A. D. / /

OperatingSystem

L3 / /

Organization

National Institute of Biomedical Imaging and Bioengineering / National Institute of Health / New York University / office of Naval Research / The Johns Hopkins University / Harvard University / Defense Advanced Research Planning Agency / Whitaker Foundation / National Research Service / /

Person

Christopher S. Chen / Kiran Bhadriraju / Nat / Darren S. Gray / John L. Tan / Joe Tien / Dana M. Pirone / /

Position

representative / /

Product

penicillin / glycine / /

ProgrammingLanguage

J / /

ProvinceOrState

Maryland / New York / S. K. / Nova Scotia / Massachusetts / /

Technology

antibodies / microfluidics / photolithography / apoptosis / Biomaterials / Tissue Engineering / http / 3G / /

URL

www.pnas.org兾cgi兾doi兾10.1073兾pnas.0235407100 / /

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