File list
This special page shows all uploaded files.
Date | Name | Thumbnail | Size | Description | Versions |
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07:11, 1 December 2009 | ActinMutantArrhenius.png (file) | ![]() |
74 KB | Temperature dependence of actin network properties. S. M. Volkner Ward, A. Weins, M. R. Pollak, & D.A. Weitz, "Dynamic Viscoelasticity of Actin Cross-Linked with Wild-Type and Disease-Causing Mutant α-Actinin-4" (2008). | 1 |
07:09, 1 December 2009 | ActinMutantRheologyConcentration.png (file) | ![]() |
188 KB | Variation in rheological properties of cross-linked actin networks v. concentration. S. M. Volkner Ward, A. Weins, M. R. Pollak, & D.A. Weitz, "Dynamic Viscoelasticity of Actin Cross-Linked with Wild-Type and Disease-Causing Mutant α-Actinin-4" (2008). | 1 |
06:54, 1 December 2009 | RheologyWildMutant.png (file) | ![]() |
74 KB | Rheology of wild-type and mutant α-actinin-4. S. M. Volkner Ward, A. Weins, M. R. Pollak, & D.A. Weitz, "Dynamic Viscoelasticity of Actin Cross-Linked with Wild-Type and Disease-Causing Mutant α-Actinin-4" (2008). | 1 |
06:40, 1 December 2009 | ActinPhalloidin.png (file) | ![]() |
157 KB | Visualizing actin networks with phalloidin. S. M. Volkner Ward, A. Weins, M. R. Pollak, & D.A. Weitz, "Dynamic Viscoelasticity of Actin Cross-Linked with Wild-Type and Disease-Causing Mutant α-Actinin-4" (2008). | 1 |
06:10, 23 November 2009 | ElasticModulus-shortRange.png (file) | ![]() |
23 KB | Elastic modulus for a gel with a short range attractive interaction. A. D. Dinsmore, V. Prasad, I.Y. Wong, & D.A. Weitz (2006) | 1 |
06:07, 23 November 2009 | ElasticModulus.png (file) | ![]() |
169 KB | Elastic modulus for a colloidal gel. A. D. Dinsmore, V. Prasad, I.Y. Wong, & D.A. Weitz (2006) | 1 |
06:06, 23 November 2009 | PairDistribution.png (file) | ![]() |
31 KB | Pair Distribution function and probability of the existence of a secondary path between two links. A. D. Dinsmore, V. Prasad, I.Y. Wong, & D.A. Weitz (2006) | 1 |
05:53, 23 November 2009 | ColloidalGelReconstruction.png (file) | ![]() |
139 KB | Reconstruction of a colloidal gel. A. D. Dinsmore, V. Prasad, I.Y. Wong, & D.A. Weitz (2006) | 1 |
14:22, 16 November 2009 | MicrofluidicFocusing.png (file) | ![]() |
138 KB | Microfluidic focusing of particles(Morton, K.J., Loutherback, K., Inglis, D.W., Tsui, O.K., Sturm, J.C., Chou, S.Y., & Austin, R.H., 2008) | 1 |
14:22, 16 November 2009 | BeamSteering.png (file) | ![]() |
129 KB | Beam steering in hydrodynamic metamaterials (Morton, K.J., Loutherback, K., Inglis, D.W., Tsui, O.K., Sturm, J.C., Chou, S.Y., & Austin, R.H., 2008) | 1 |
14:21, 16 November 2009 | AsymmetricPostArray.png (file) | ![]() |
804 KB | Asymmetric post array for size-based separation of particles (Morton, K.J., Loutherback, K., Inglis, D.W., Tsui, O.K., Sturm, J.C., Chou, S.Y., & Austin, R.H., 2008) | 1 |
02:29, 4 November 2009 | MicrofluidicNMR.png (file) | ![]() |
1.11 MB | Microfluidic NMR system Hakho Lee, Tae-Jong Yoon, and Ralph Weissleder. "Ultrasensitive detection of bacteria using core-shell nanoparticles and a NMR-filter system." Angewandte Chemie Internation Edition (2009). | 1 |
02:29, 4 November 2009 | BcgDetection.png (file) | ![]() |
1.36 MB | Detection of Bacillus Calmette-Guerin. Hakho Lee, Tae-Jong Yoon, and Ralph Weissleder. "Ultrasensitive detection of bacteria using core-shell nanoparticles and a NMR-filter system." Angewandte Chemie Internation Edition (2009). | 1 |
02:10, 4 November 2009 | Cannonballs.png (file) | ![]() |
1.78 MB | Magnetic nanoparticles Hakho Lee, Tae-Jong Yoon, and Ralph Weissleder. "Ultrasensitive detection of bacteria using core-shell nanoparticles and a NMR-filter system." Angewandte Chemie Internation Edition (2009). | 1 |
06:55, 28 October 2009 | DynamicArrayCytometer.png (file) | ![]() |
261 KB | Overview of Dynamic Array Cytometer. (Voldman, J., Gray, M.L., Toner, M., and Schmidt, M.A. "A Microfabrication-Based Dynamic Array Cytometer" Anal. Chem. (2002), 74(16), 3984-3990.) | 1 |
06:55, 28 October 2009 | CellsArrayCytometer.png (file) | ![]() |
101 KB | Photos and schematics of Dynamic Array Cytometer. (Voldman, J., Gray, M.L., Toner, M., and Schmidt, M.A. "A Microfabrication-Based Dynamic Array Cytometer" Anal. Chem. (2002), 74(16), 3984-3990.) | 1 |
06:54, 28 October 2009 | DepTrap.png (file) | ![]() |
19 KB | Schematic of a trap, which confines objects using negative dielectrophoresis (Voldman, J., Gray, M.L., Toner, M., and Schmidt, M.A. "A Microfabrication-Based Dynamic Array Cytometer" Anal. Chem. (2002), 74(16), 3984-3990.) | 1 |
06:03, 20 October 2009 | CellFusion.png (file) | ![]() |
200 KB | Image showing the fused and unfused cells cultured after a fusion protocol in a microfluidic device (Skelley, A.M., Kirak, O., Suh, H., Jaenisch, R., & Voldman, J. "Microfluidic control of cell pairing and fusion" Nature Methods (2009), Vol. 6(2), pp. 147 | 1 |
06:02, 20 October 2009 | CellPairing.png (file) | ![]() |
448 KB | Image showing cell pairing within a microfluidic device (Skelley, A.M., Kirak, O., Suh, H., Jaenisch, R., & Voldman, J. "Microfluidic control of cell pairing and fusion" Nature Methods (2009), Vol. 6(2), pp. 147-152). | 1 |
06:02, 20 October 2009 | MicrofluidicCellFusionDevice.png (file) | ![]() |
438 KB | Image showing the microfluidic device for cell pairing and fusion (Skelley, A.M., Kirak, O., Suh, H., Jaenisch, R., & Voldman, J. "Microfluidic control of cell pairing and fusion" Nature Methods (2009), Vol. 6(2), pp. 147-152). | 1 |
00:31, 5 October 2009 | Cho-splittingDrops.png (file) | ![]() |
118 KB | Diagram of splitting drops on EWOD device. Sung Kwon Cho, Hyejin Moon, and Chang-Jin Kim. "Creating, Transporting, Cutting, and Merging Liquid Droplets by Electrowetting-Based Actuation for Digital Microfluidic Circuits." Journal of Microelectromechani | 1 |
00:31, 5 October 2009 | Cho-electrowetting.png (file) | ![]() |
122 KB | Diagram of electrowetting on dielectric principle Sung Kwon Cho, Hyejin Moon, and Chang-Jin Kim. "Creating, Transporting, Cutting, and Merging Liquid Droplets by Electrowetting-Based Actuation for Digital Microfluidic Circuits." Journal of Microelectro | 1 |
12:02, 21 September 2009 | FlowRateVolumeRelationship.png (file) | ![]() |
14 KB | Graph of bubble volume v. flow rate for microfluidic bubble generator (Garstecki et al., Appl. Phys. Lett., 2004). | 1 |
12:01, 21 September 2009 | FlowRateFrequencyRelationship.png (file) | ![]() |
14 KB | Graph of Frequency (and other parameters) v. Flow Rate in the microfluidic bubble generator (Garstecki et al., Appl. Phys. Lett., 2004). | 1 |
12:00, 21 September 2009 | MicrofluidicBubbleGenerator.png (file) | ![]() |
9 KB | Microfluidic device for generating bubbles within a fluid flow (Garstecki et al., Appl. Phys. Lett., 2004). | 1 |
11:59, 21 September 2009 | BubbleLattice.png (file) | ![]() |
23 KB | Lattices of air bubbles formed in Microfluidic Channels (Garstecki et al., Appl. Phys. Lett., 2004). | 1 |
11:20, 14 September 2009 | VesicleOilEvaporation.png (file) | ![]() |
528 KB | Oil Phase is Evaporated from Double Emulsions forming Vesicles (Shum et al., 2008) | 1 |
11:18, 14 September 2009 | VesicleDoubleEmulsion.png (file) | ![]() |
609 KB | Glass microfluidic device for creating double emulsion templates (Shum et al., 2008) | 1 |
10:59, 14 September 2009 | PhospholipidVesicle.png (file) | ![]() |
349 KB | Formation of phospholipid vesicles from a double emulsion template (Shum et al. 2008) | 1 |
02:13, 14 September 2009 | Protein folding.png (file) | ![]() |
70 KB | (Illustration of the process of protein folding. Chymotrypsin inhibitor 2 from pdb file 1LW6.) Originally uploaded to Wikimedia Commons by user: DrKjaergaard. Licensed for use in the public domain. | 1 |