selimolcum.mit.edu
Publications | Selim Olcum
http://selimolcum.mit.edu/publications
Skip to main content. Koch Institute for Integrative Cancer Research. FF Delgado, S.C. Wasserman, K.R. Payer, M.A. Murakami, S.M. Knudsen, R.J. Kimmerling, M.M. Stevens, Y. Kikuchi, A. Sandikci, M. Ogawa, V. Agache, F. Baleras, D.M. Weinstock and S.R. Manalis,. High-throughput measurement of single-cell growth rates using serial microfluidic mass sensor arrays. N Cordero, A. Idbaih, P. Wen, D.M. Weinstock, K. Ligon and S.R. Manalis,. Supp Info , see also. SC Wasserman, S.R. Manalis,. 111, 1310 - 1315.
cehs.mit.edu
Members | CEHS
http://cehs.mit.edu/members
Skip to main content. Cite the Center Support. Past Pilot Project Recipients. Facilities Core Inquiry Form. NF: Postdoc Transition Seminar. The Center consist of 45 center members, of which 40 are faculty members and five are research members. Our membership crosses 9 departments. Harvard/MIT Division of Health Sciences and. Biological Engineering, Media Lab. John M. Essigmann. Biological Engineering, Chemistry. Biological Engineering, Division of Comparative Medicine. Civil and Environmental Engineering.
selimolcum.mit.edu
Weighing particles at the attogram scale | Selim Olcum
http://selimolcum.mit.edu/news/weighing-particles-attogram-scale
Skip to main content. Koch Institute for Integrative Cancer Research. Weighing particles at the attogram scale. The device builds on a technology developed for weighing single cells. This device, known as a suspended microchannel resonator. Etal, Weighing nanoparticles in solution at the attogram scale. Proceedings of National Academy of Sciences. Contributed equally to this work. For the news article or PNAS Journal Club. In highlighted article news. Massachusetts Institute of Technology.
selimolcum.mit.edu
Measuring single-cell growth: from bacteria to cancer cells | Selim Olcum
http://selimolcum.mit.edu/news/measuring-single-cell-growth-bacteria-cancer-cells
Skip to main content. Koch Institute for Integrative Cancer Research. Measuring single-cell growth: from bacteria to cancer cells. Francisco F. Delgado, Steven C. Wasserman, Kristofor R. Payer, Mark Murakami, Scott M. Knudsen, Robert J. Kimmerling, Mark M. Stevens, Yuki Kikuchi, Arzu Sandikci, Masaaki Ogawa, Vincent Agache, Francois Baleras, David M. Weinstock and Scott R. Manalis. High-throughput measurement of single-cell growth rates using serial microfluidic mass sensor arrays. For the news article.
selimolcum.mit.edu
Multiple-mode mass-sensing | Selim Olcum
http://selimolcum.mit.edu/news/multiple-mode-mass-sensing
Skip to main content. Koch Institute for Integrative Cancer Research. Towards nanoscale mass tomography in solution. Recently, we have developed suspended nanochannel resonators. Etal, High-speed multiple-mode mass-sensing resolves dynamic nanoscale mass distributions. Contributed equally to this work. For the news article. Massachusetts Institute of Technology.