Biomedical Engineering Reference
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2. Church; G., Deamer; D.W., Branton; D., Baldarelli; R., Kasianowicz; J., Characterization
of individual polymer molecules based on monomer-interface interactions, US Patent
No. 5,795,782 (issued on 8-18-1998).
3. Akeson, M., Branton, D., Kasianowicz, J. J., Brandin, D. & Deamer, D. W. (1999) Microsecond
time-scale discrimination among polycytidylic acid, polyadenylic acid, and polyuridylic acid as
homopolymers or as segments within single RNA molecules. Biophys. J. 77 , 3227-3233.
4. Meller, A., L. Nivon and D. Branton (2001) Voltage-Driven DNA Translocations through a
Nanopore. Phys. Rev. Lett. 86 , 3435-3438.
5. Li, J., Stein, D., McMullan, C., Branton, D., Aziz, M.J., & Golovchenko, J.A. (2001) Ion-beam
sculpting at nanometre length scale. Nature 412 , 166-169.
6. Storm, A. J., Chen, J. H., Ling, X. S., Zandbergen, H. W. & Dekker, C. (2003) Fabrication of
solid-state nanopores with single-nanometre precision. Nature Mater. 2 , 537-540.
7. Chang, H., Kosari, F., Andreadakis, G., Alam, M.A., Vasmatzis, G., Bashir, R., Nano Lett.
(2004), 4 , 1551.
8. Wu, S.., Park, S.R., and Ling, X.S. (2006) Lithography-Free Formation of Nanopores in
Plastic Membranes using Laser Heating, Nano Letters 6 , 2571-2576.
9. Park, S.R., Peng, H. and Ling, X.S. (2007) Fabrication of Nanopores in Silicon Chips Using
Feedback Chemical Etching, Small 3 , 116-119.
10. McCord, M. A.; M. J. Rooks (2000). SPIE Handbook of Microlithography, Micromachining
and Microfabrication .
11. Wu, M.Y., Krapf, D., Zandbergen, M., Zandbergen, H. and Baton, P.E. (2005) Formation of
nanopores in a SiN/SiO 2 membrane with an electron beam. Appl. Phys. Lett. 87 , 113106-1-3.
12. Kim, M-J., B. McNally, K. Murata and A. Meller (2007) Characteristics of solid-state nanometer
pores fabricated using transmission electron microscope. Nanotechnology, 18 , 205302 (5pp).
13. Apel, P.Y., Korchev, Y.E., Siwy, Z., Spohr, R., Yoshida, M. Nucl. Instrum. Methods Phys.
Res. Sect. B (2001), 184 , 337-346.
14. Ling, X.S., Bready, B., and Pertsinidis, A., “Hybridization-Assisted Nanopore Sequencing”,
United States Patent Application No. 20070190542.
15. Ling, X.S., “Addressable nanopores and micropores including methods for making and using
same”, United States Patent 7678562.
16. Politzer, A., Sc.B. thesis (2005), Brown University.
17. Riehn, R., (2008), private communications.
18. Sanger, F, Nicklen, S, Coulson, A.R. (1977), “DNA sequencing with chain-terminating
inhibitors”. Proc. Natl. Acad. Sci. U.S.A. 74 , 5463-7.
19. Maxam, A.M., Gilbert, W., (1977), “A new method for sequencing DNA”. Proc. Natl. Acad.
Sci. U.S.A. 74 (2): 560-4.
20. Southern, E. M. (1975), “Detection of specific sequences among DNA fragments separated by
gel electrophoresis”. Journal of Molecular Biology 98 (3): 503-517.
21. Marko, J.F., and Siggia, E.D., (1995), “Statistical mechanics of supercoiled DNA”, Phys.
Rev. E 52 , 2912-2938.
22. Bustamante, C., Marko, J.F., Siggia, E.D., Smith, S. (1994), “Entropic elasticity of lambda-
phage DNA”, Science , 265 , 1599-1601.
23. Lubensky, D. K., Nelson, D. R., (1999). Driven Polymer Translocation Through a Narrow
Pore, Biophys. J. 77 , 1824.
24. Redner, S. (2001). A Guide to First-Passage Processes, Cambridge University Press.
25. Golovchenko, J. (2010), private communications.
26. Storm, A.J., Storm, C., Chen, J.H., Zandbergen, H.W., Joanny, J.F., and Dekker, C.,
(2005),“Fast DNA translocation through a solid-state nanopore”, Nano Lett. 5 , 1193-1197.
27. Peng, H. and Ling, X.S., (2009), “Reverse DNA translocation through a solid-state nanopore
by magnetic tweezers”, Nanotechnology , 20 , 185101 (8pp).
28. Keyser, U.F., Koeleman, B.N., Krapf, D., Smeets, R.M.M., Lemay, S.G., Dekker, N.H.,
Dekker, C., (2006), “Direct force measurements on DNA in a solid-state nanopore”, Nature
Physics , 2 , 473.
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