David W. Deamer
Active 1966–2024
- 87
- Papers
- 25,027
- Citations
- 79
- h-index
- 86
- i10-index
Citations
Citation sources
Countries
Institutions
Fields
- Biochemistry, Genetics and Molecular Biology38.3%
- Engineering21.7%
- Physics and Astronomy16.5%
- Medicine6.2%
- Materials Science4.2%
- Chemistry2.7%
- Other10.4%
Topics
- Nanopore and Nanochannel Transport Studies8.1%
- Lipid Membrane Structure and Behavior6.6%
- Origins and Evolution of Life5.7%
- Advanced biosensing and bioanalysis techniques4.6%
- Photoreceptor and optogenetics research3.4%
- Genomics and Phylogenetic Studies2.6%
- Other69%
Coauthors
- Daniel Branton7
- Mark Akeson7
- Pierre‐Alain Monnard7
- Bruce Damer5
- James L. Nichols5
- Alexander G. Volkov4
- Anastassia Kanavarioti3
- Antony R. Crofts3
- L. J. Allamandola3
- Lester Packer3
- Stefan Paula3
- Vladimir Kompanichenko3
- W. Vercoutere3
- Ajoy C. Chakrabarti2
- Andrew Pohorille2
- Charles L. Apel2
- Daniel Milshteyn2
- David Haussler2
- David S. Ross2
- Eric Brandin2
- Jason P. Dworkin2
- John J. Kasianowicz2
- Paul S. Uster2
- Scott A. Sandford2
All papers
- Three decades of nanopore sequencing
Authors: David W. Deamer, Mark Akeson, Daniel Branton - Nature Biotechnology 2016 cited by 1,316
- Characterization of individual polynucleotide molecules using a membrane channel
Authors: John J. Kasianowicz, Eric Brandin, Daniel Branton, David W. Deamer - National Academy of Sciences, Proceedings of the National Academy of Sciences 1996 cited by 3,342
- The potential and challenges of nanopore sequencing
Authors: Daniel Branton, David W. Deamer, Andre Marziali, Hagan Bayley, Steven A. Benner, Thomas Bütler, Massimiliano Di Ventra, Slaven Garaj, Andrew Hibbs, Xiaohua Huang, Stevan Jovanovich, Predrag Krstić, Stuart Lindsay, Xinsheng Ling, Carlos H. Mastrangelo, A. MELLER, John S. Oliver, Yuriy V. Pershin, J. Michael Ramsey, Robert Riehn, Gautam V. Soni, Vincent Tabard‐Cossa, Meni Wanunu, Matthew Wiggin, Jeffery A. Schloss - Co-Published with Macmillan Publishers Ltd, UK eBooks 2008 cited by 2,533
- The Hot Spring Hypothesis for an Origin of Life
Authors: Bruce Damer, David W. Deamer - Astrobiology 2019 cited by 478
- The Role of Lipid Membranes in Life’s Origin
Authors: David W. Deamer - Life 2017 cited by 267
- The Lipid World
Authors: Daniel Segrè, Dafna Ben-Eli, David W. Deamer, Doron Lancet - Origins of Life and Evolution of Biospheres 2001 cited by 615
- Permeation of protons, potassium ions, and small polar molecules through phospholipid bilayers as a function of membrane thickness
Authors: Stefan Paula, Alexander G. Volkov, Alfred N. Van Hoek, Thomas H. Haines, David W. Deamer - Biophysical Journal 1996 cited by 570
- Influence of Ionic Inorganic Solutes on Self-Assembly and Polymerization Processes Related to Early Forms of Life: Implications for a Prebiotic Aqueous Medium
Authors: Pierre‐Alain Monnard, Charles L. Apel, Anastassia Kanavarioti, David W. Deamer - Astrobiology 2002 cited by 270
- Transitions from Nonliving to Living Matter
Authors: Steen Rasmussen, Liaohai Chen, David W. Deamer, David C. Krakauer, Norman H. Packard, Peter F. Stadler, Mark A. Bedau - Science 2004 cited by 391
- Membrane self‐assembly processes: Steps toward the first cellular life
Authors: Pierre‐Alain Monnard, David W. Deamer - The Anatomical Record 2002 cited by 320
- Lipid-assisted Synthesis of RNA-like Polymers from Mononucleotides
Authors: Sudha Rajamani, Alexander V. Vlassov, Seico Benner, Amy Coombs, Felix Olasagasti, David W. Deamer - Origins of Life and Evolution of Biospheres 2007 cited by 283
- Microsecond Time-Scale Discrimination Among Polycytidylic Acid, Polyadenylic Acid, and Polyuridylic Acid as Homopolymers or as Segments Within Single RNA Molecules
Authors: Mark Akeson, Daniel Branton, John J. Kasianowicz, Eric Brandin, David W. Deamer - Biophysical Journal 1999 cited by 951
- Large volume liposomes by an ether vaporization method
Authors: David W. Deamer, A. D. Bangham - Biochimica et Biophysica Acta (BBA) - Biomembranes 1976 cited by 514
- Self-assembled vesicles of monocarboxylic acids and alcohols: conditions for stability and for the encapsulation of biopolymers
Authors: Charles L. Apel, David W. Deamer, Michael N. Mautner - Biochimica et Biophysica Acta (BBA) - Biomembranes 2002 cited by 354
- The First Cell Membranes
Authors: David W. Deamer, Jason P. Dworkin, Scott A. Sandford, Max P. Bernstein, L. J. Allamandola - Astrobiology 2002 cited by 266
- From “Banghasomes” to liposomes: A memoir of Alec Bangham, 1921–2010
Authors: David W. Deamer - The FASEB Journal 2010 cited by 121
- Liposomes from ionic, single-chain amphiphiles
Authors: William R. Hargreaves, David W. Deamer - Biochemistry 1978 cited by 582
- Permeability of lipid bilayers to water and ionic solutes
Authors: David W. Deamer, John Bramhall - Chemistry and Physics of Lipids 1986 cited by 327
- Sequence-specific detection of individual DNA polymerase complexes in real time using a nanopore
Authors: Seico Benner, Roger J. A. Chen, Noah A. Wilson, Robin Abu-Shumays, Nicholas Hurt, Kate R. Lieberman, David W. Deamer, William B. Dunbar, Mark Akeson - Nature Nanotechnology 2007 cited by 201
- Bioenergetics and Life's Origins
Authors: David W. Deamer, Arthur L. Weber - Cold Spring Harbor Perspectives in Biology 2010 cited by 167
- Two mechanisms of permeation of small neutral molecules and hydrated ions across phospholipid bilayers
Authors: Alexander G. Volkov, Stefan Paula, David W. Deamer - Bioelectrochemistry and Bioenergetics 1997 cited by 653
- Characterization of Nucleic Acids by Nanopore Analysis
Authors: David W. Deamer, Daniel Branton - Accounts of Chemical Research 2002 cited by 501
- Coupled Phases and Combinatorial Selection in Fluctuating Hydrothermal Pools: A Scenario to Guide Experimental Approaches to the Origin of Cellular Life
Authors: Bruce Damer, David W. Deamer - Life 2015 cited by 323
- Self-assembling amphiphilic molecules: Synthesis in simulated interstellar/precometary ices
Authors: Jason P. Dworkin, David W. Deamer, Scott A. Sandford, L. J. Allamandola - National Academy of Sciences, Proceedings of the National Academy of Sciences 2001 cited by 243
