Year |
Citation |
Score |
2024 |
Wu W, Ishamuddin SH, Quinn TW, Yerrum S, Zhang Y, Debaize LL, Kao PL, Duquette SM, Murakami MA, Mohseni M, Chow KH, Miettinen TP, Ligon KL, Manalis SR. Measuring single-cell density with high throughput enables dynamic profiling of immune cell and drug response from patient samples. Biorxiv : the Preprint Server For Biology. PMID 38712225 DOI: 10.1101/2024.04.25.591092 |
0.696 |
|
2021 |
Katsikis G, Collis JF, Knudsen SM, Agache V, Sader JE, Manalis SR. Inertial and viscous flywheel sensing of nanoparticles. Nature Communications. 12: 5099. PMID 34429420 DOI: 10.1038/s41467-021-25266-3 |
0.646 |
|
2019 |
Stockslager MA, Olcum S, Knudsen SM, Kimmerling RJ, Cermak N, Payer KR, Agache V, Manalis SR. Rapid and high-precision sizing of single particles using parallel suspended microchannel resonator arrays and deconvolution. The Review of Scientific Instruments. 90: 085004. PMID 31472632 DOI: 10.1063/1.5100861 |
0.649 |
|
2019 |
Hamza B, Ng SR, Prakadan SM, Delgado FF, Chin CR, King EM, Yang LF, Davidson SM, DeGouveia KL, Cermak N, Navia AW, Winter PS, Drake RS, Tammela T, Li CM, ... ... Manalis SR, et al. Optofluidic real-time cell sorter for longitudinal CTC studies in mouse models of cancer. Proceedings of the National Academy of Sciences of the United States of America. PMID 30674677 DOI: 10.1073/Pnas.1814102116 |
0.634 |
|
2017 |
Cetin AE, Stevens MM, Calistri NL, Fulciniti M, Olcum S, Kimmerling RJ, Munshi NC, Manalis SR. Determining therapeutic susceptibility in multiple myeloma by single-cell mass accumulation. Nature Communications. 8: 1613. PMID 29151572 DOI: 10.1038/S41467-017-01593-2 |
0.699 |
|
2016 |
Cermak N, Becker JW, Knudsen SM, Chisholm SW, Manalis SR, Polz MF. Direct single-cell biomass estimates for marine bacteria via Archimedes' principle. The Isme Journal. PMID 27922599 DOI: 10.1038/Ismej.2016.161 |
0.651 |
|
2016 |
Cermak N, Olcum S, Delgado FF, Wasserman SC, Payer KR, A Murakami M, Knudsen SM, Kimmerling RJ, Stevens MM, Kikuchi Y, Sandikci A, Ogawa M, Agache V, Baléras F, Weinstock DM, ... Manalis SR, et al. High-throughput measurement of single-cell growth rates using serial microfluidic mass sensor arrays. Nature Biotechnology. PMID 27598230 DOI: 10.1038/Nbt.3666 |
0.669 |
|
2015 |
Knudsen SM, Cermak N, Feijó Delgado F, Setlow B, Setlow P, Manalis SR. Water and Small Molecule Permeation of Dormant Bacillus subtilis Spores. Journal of Bacteriology. PMID 26483518 DOI: 10.1128/Jb.00435-15 |
0.626 |
|
2014 |
Bryan AK, Hecht VC, Shen W, Payer K, Grover WH, Manalis SR. Measuring single cell mass, volume, and density with dual suspended microchannel resonators. Lab On a Chip. 14: 569-76. PMID 24296901 DOI: 10.1039/C3Lc51022K |
0.68 |
|
2013 |
Feijó Delgado F, Cermak N, Hecht VC, Son S, Li Y, Knudsen SM, Olcum S, Higgins JM, Chen J, Grover WH, Manalis SR. Intracellular water exchange for measuring the dry mass, water mass and changes in chemical composition of living cells. Plos One. 8: e67590. PMID 23844039 DOI: 10.1371/Journal.Pone.0067590 |
0.758 |
|
2013 |
Feijó Delgado F, Cermak N, Hecht VC, Son S, Li Y, Knudsen SM, Olcum S, Higgins JM, Chen J, Grover WH, Manalis SR. Correction: Intracellular Water Exchange for Measuring the Dry Mass, Water Mass and Changes in Chemical Composition of Living Cells Plos One. 8. DOI: 10.1371/annotation/c3a3219b-935b-42ed-b3a7-bbbc36dc1dfe |
0.64 |
|
2012 |
Shaw J, Payer K, Son S, Grover WH, Manalis SR. A microfluidic "baby machine" for cell synchronization. Lab On a Chip. 12: 2656-63. PMID 22627487 DOI: 10.1039/C2Lc40277G |
0.639 |
|
2012 |
Knudsen SM, von Muhlen MG, Manalis SR. Quantifying particle coatings using high-precision mass measurements. Analytical Chemistry. 84: 1240-2. PMID 22243334 DOI: 10.1021/Ac300034R |
0.638 |
|
2011 |
Weng Y, Delgado FF, Son S, Burg TP, Wasserman SC, Manalis SR. Mass sensors with mechanical traps for weighing single cells in different fluids Lab On a Chip - Miniaturisation For Chemistry and Biology. 11: 4174-4180. PMID 22038401 DOI: 10.1039/c1lc20736a |
0.312 |
|
2011 |
Grover WH, Bryan AK, Diez-Silva M, Suresh S, Higgins JM, Manalis SR. Measuring single-cell density. Proceedings of the National Academy of Sciences of the United States of America. 108: 10992-6. PMID 21690360 DOI: 10.1073/Pnas.1104651108 |
0.675 |
|
2010 |
Godin M, Delgado FF, Son S, Grover WH, Bryan AK, Tzur A, Jorgensen P, Payer K, Grossman AD, Kirschner MW, Manalis SR. Using buoyant mass to measure the growth of single cells. Nature Methods. 7: 387-90. PMID 20383132 DOI: 10.1038/Nmeth.1452 |
0.669 |
|
2010 |
von Muhlen MG, Brault ND, Knudsen SM, Jiang S, Manalis SR. Label-free biomarker sensing in undiluted serum with suspended microchannel resonators. Analytical Chemistry. 82: 1905-10. PMID 20148583 DOI: 10.1021/Ac9027356 |
0.651 |
|
2009 |
Knudsen SM, von Muhlen MG, Schauer DB, Manalis SR. Determination of bacterial antibiotic resistance based on osmotic shock response. Analytical Chemistry. 81: 7087-90. PMID 20337387 DOI: 10.1021/Ac900968R |
0.622 |
|
2008 |
Grover WH, von Muhlen MG, Manalis SR. Teflon films for chemically-inert microfluidic valves and pumps. Lab On a Chip. 8: 913-8. PMID 18497911 DOI: 10.1039/B800600H |
0.607 |
|
2008 |
Son S, Grover WH, Burg TP, Manalis SR. Suspended microchannel resonators for ultralow volume universal detection. Analytical Chemistry. 80: 4757-60. PMID 18489125 DOI: 10.1021/Ac800307A |
0.649 |
|
2007 |
Burg TP, Godin M, Knudsen SM, Shen W, Carlson G, Foster JS, Babcock K, Manalis SR. Weighing of biomolecules, single cells and single nanoparticles in fluid. Nature. 446: 1066-9. PMID 17460669 DOI: 10.1038/Nature05741 |
0.678 |
|
2007 |
Chunara R, Godin M, Knudsen SM, Manalis SR. Mass-based readout for agglutination assays Applied Physics Letters. 91. DOI: 10.1063/1.2806197 |
0.645 |
|
2005 |
Manalis S, Burg T, Sparks A. Microdevices for high resolution measurement Ieee/Leos Optical Mems 2005: International Conference On Optical Mems and Their Applications. 75-76. DOI: 10.1109/OMEMS.2005.1540084 |
0.302 |
|
2004 |
Savran CA, Knudsen SM, Ellington AD, Manalis SR. Micromechanical detection of proteins using aptamer-based receptor molecules. Analytical Chemistry. 76: 3194-8. PMID 15167801 DOI: 10.1021/Ac049859F |
0.639 |
|
2002 |
Grow RJ, Minne SC, Manalis SR, Quate CF. Silicon nitride cantilevers with oxidation-sharpened silicon tips for atomic force microscopy Journal of Microelectromechanical Systems. 11: 317-321. DOI: 10.1109/Jmems.2002.800924 |
0.51 |
|
2001 |
Sulchek T, Hsieh R, Minne SC, Quate CF, Manalis SR. Interdigital cantilever as a biological sensor Proceedings of the Ieee Conference On Nanotechnology. 2001: 562-566. DOI: 10.1109/NANO.2001.966485 |
0.635 |
|
2001 |
Sulchek T, Grow RJ, Yaralioglu GG, Minne SC, Quate CF, Manalis SR, Kiraz A, Aydine A, Atalar A. Parallel atomic force microscopy with optical interferometric detection Applied Physics Letters. 78: 1787-1789. DOI: 10.1063/1.1352697 |
0.736 |
|
2001 |
Matsumoto K, Kinosita S, Gotoh Y, Uchiyama T, Manalis S, Quate C. Ultralow biased field emitter using single-wall carbon nanotube directly grown onto silicon tip by thermal chemical vapor deposition Applied Physics Letters. 78: 539-540. DOI: 10.1063/1.1343470 |
0.44 |
|
2000 |
Gotoh Y, Matsumoto K, Maeda T, Cooper EB, Manalis SR, Fang H, Minne SC, Hunt T, Dai H, Harris J, Quate CF. Experimental and theoretical results of room-temperature single-electron transistor formed by the atomic force microscope nano-oxidation process Journal of Vacuum Science and Technology a: Vacuum, Surfaces and Films. 18: 1321-1325. DOI: 10.1116/1.582347 |
0.487 |
|
2000 |
Cooper EB, Post ER, Griffith S, Levitan J, Manalis SR, Schmidt MA, Quate CF. High-resolution micromachined interferometric accelerometer Applied Physics Letters. 76: 3316-3318. DOI: 10.1063/1.126637 |
0.515 |
|
2000 |
Manalis SR, Cooper EB, Indermuhle PF, Kernen P, Wagner P, Hafeman DG, Minne SC, Quate CF. Microvolume field-effect pH sensor for the scanning probe microscope Applied Physics Letters. 76: 1072-1074. DOI: 10.1063/1.125942 |
0.486 |
|
1999 |
Ghislain LP, Elings VB, Crozier KB, Manalis SR, Minne SC, Wilder K, Kino GS, Quate CF. Near-field photolithography with a solid immersion lens Applied Physics Letters. 74: 501-503. DOI: 10.1063/1.123168 |
0.561 |
|
1999 |
Cooper EB, Manalis SR, Fang H, Dai H, Matsumoto K, Minne SC, Hunt T, Quate CF. Terabit-per-square-inch data storage with the atomic force microscope Applied Physics Letters. 75: 3566-3568. |
0.501 |
|
1998 |
Yaralioglu GG, Atalar A, Manalis SR, Quate CF. Analysis and design of an interdigital cantilever as a displacement sensor Journal of Applied Physics. 83: 7405-7415. DOI: 10.1063/1.367984 |
0.676 |
|
1998 |
Minne SC, Adams JD, Yaralioglu G, Manalis SR, Atalar A, Quate CF. Centimeter scale atomic force microscope imaging and lithography Applied Physics Letters. 73: 1742-1744. DOI: 10.1063/1.122263 |
0.669 |
|
1998 |
Minne SC, Yaralioglu G, Manalis SR, Adams JD, Zesch J, Atalar A, Quate CF. Automated parallel high-speed atomic force microscopy Applied Physics Letters. 72: 2340-2342. DOI: 10.1063/1.121353 |
0.686 |
|
1997 |
Manalis SR, Minne SC, Quate CF, Yaralioglu GG, Atalar A. Two-dimensional micromechanical bimorph arrays for detection of thermal radiation Applied Physics Letters. 70: 3311-3313. DOI: 10.1063/1.119147 |
0.648 |
|
1996 |
Manalis SR, Minne SC, Atalar A, Quate CF. Interdigital cantilevers for atomic force microscopy Applied Physics Letters. 69: 3944-3946. DOI: 10.1063/1.117578 |
0.696 |
|
1996 |
Manalis SR, Minne SC, Quate CF. Atomic force microscopy for high speed imaging using cantilevers with an integrated actuator and sensor Applied Physics Letters. 68: 871-873. DOI: 10.1063/1.116528 |
0.535 |
|
1996 |
Minne SC, Manalis SR, Atalar A, Quate CF. Contact imaging in the atomic force microscope using a higher order flexural mode combined with a new sensor Applied Physics Letters. 68: 1427-1429. DOI: 10.1063/1.116102 |
0.672 |
|
1996 |
Manalis SR, Minne SC, Atalar A, Quate CF. High-speed atomic force microscopy using an integrated actuator and optical lever detection Review of Scientific Instruments. 67: 3294-3297. DOI: 10.1063/1.1147410 |
0.69 |
|
1995 |
Minne SC, Manalis SR, Quate CF. Parallel atomic force microscopy using cantilevers with integrated piezoresistive sensors and integrated piezoelectric actuators Applied Physics Letters. 67: 3918. DOI: 10.1063/1.115317 |
0.533 |
|
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