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==Microfluidic Devices for Quantitative Biology==
==Microfluidic Devices for Quantitative Biology==
{| style="margin: 1em auto 1em auto;"
|-
| width="75px" |[[Image:Open-access-patch-clamp-chip_icon.gif|75px]]||[http://biopoems.berkeley.edu/publications/adrian-loc-open_access_patch.pdf Patch-clamp Array]
| width="75px" |[[Image:Electroporation-chip_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/Khine-Electroporation.pdf Single Cell Electroporation Array]
| width="75px" |[[Image:Cell-culture-chip_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/philipandpaul.pdf Cell Culture Array]
|-
| width="75px" |[[Image:Electrochemical-lysis-chip_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/DiCarlo-OHlysis-LabChip2005.pdf Electrochemical Cell Lysis]
| width="75px" |[[Image:Mechanical-lysis-chip_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/DiCarlo-mechanical-LabChip2003.pdf Mechanical Cell Lysis]
| width="75px" |[[Image:Fast-solution-exchange_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/ApplPhysLett_88_183901.pdf Fast Solution Exchange Microfluidic Device]
|-
| width="75px" |[[Image:Cell-cell-chip_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/pjlee-APL%202005.pdf Cell-cell Communication Device]
| width="75px" |[[Image:Single-cell-array_icon.jpg|75px]]||[http://biopoems.berkeley.edu/publications/dino-loc-dynamic_culture.pdf Large-Scale Single Cell Analysis Chip]
| width="75px" | ||
|}
==Biomolecular Imaging==
==Biomolecular Imaging==
*Nanocrescent SERS Probes
*Nanogap Biomolecular Junction
==Biologically-inspired Devices==
==Biologically-inspired Devices==
*[[Image:Compound-eye_icon.jpg|75px]] [http://biopoems.berkeley.edu/publications/jeong-science-2006.pdf Artificial Compound Eye]
*Tunable Spherical Retina
*Microfluidic Doublet Lens Array
*Microfluidic Tunable Lens
==Previous and Completed Work==
*Microscale Confocal Imaging Array
*Microarrays of Total Internal Reflection Fluorescent Microscopy
*Electrothermally Activated SU-8 Microgripper for Single Cell Manipulation
*Nanomechanical force gauge

Latest revision as of 22:18, 11 November 2007

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Microfluidic Devices for Quantitative Biology

Patch-clamp Array Single Cell Electroporation Array Cell Culture Array
Electrochemical Cell Lysis Mechanical Cell Lysis Fast Solution Exchange Microfluidic Device
Cell-cell Communication Device Large-Scale Single Cell Analysis Chip

Biomolecular Imaging

  • Nanocrescent SERS Probes
  • Nanogap Biomolecular Junction

Biologically-inspired Devices

Previous and Completed Work

  • Microscale Confocal Imaging Array
  • Microarrays of Total Internal Reflection Fluorescent Microscopy
  • Electrothermally Activated SU-8 Microgripper for Single Cell Manipulation
  • Nanomechanical force gauge