Search Results - "HENG, J. B"
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The Electromechanics of DNA in a Synthetic Nanopore
Published in Biophysical journal (01-02-2006)“…We have explored the electromechanical properties of DNA on a nanometer-length scale using an electric field to force single molecules through synthetic…”
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2
Beyond the gene chip
Published in Bell Labs technical journal (2005)“…We describe a prospective strategy for reading the encyclopedic information encoded in the genome: using a nanopore in a membrane formed from a metal-oxide…”
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Small-signal performance and modeling of sub-50 nm nMOSFETs with fT above 460-GHz
Published in Solid-state electronics (01-06-2008)Get full text
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Interexaminer reliability of the electromagnetic radiation receiver for determining lumbar spinal joint dysfunction in subjects with low back pain
Published in Journal of manipulative and physiological therapeutics (01-03-1990)“…Twenty subjects (6 male, 14 female) with low back pain were examined by two experienced and licensed chiropractic doctors (E1 and E2). Both examiners examined…”
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Microscopic Kinetics of DNA Translocation through Synthetic Nanopores
Published in Biophysical journal (01-09-2004)“…We have previously demonstrated that a nanometer-diameter pore in a nanometer-thick metal-oxide-semiconductor-compatible membrane can be used as a molecular…”
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Electrolytic Transport through a Synthetic Nanometer-Diameter Pore
Published in Proceedings of the National Academy of Sciences - PNAS (26-07-2005)“…We have produced single, synthetic nanometer-diameter pores by using a tightly focused, high-energy electron beam to sputter atoms in 10-nm-thick silicon…”
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Sizing DNA Using a Nanometer-Diameter Pore
Published in Biophysical journal (01-10-2004)“…Each species from bacteria to human has a distinct genetic fingerprint. Therefore, a mechanism that detects a single molecule of DNA represents the ultimate…”
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Stretching DNA Using the Electric Field in a Synthetic Nanopore
Published in Nano letters (01-10-2005)“…The mechanical properties of DNA over segments comparable to the size of a protein-binding site (3−10 nm) are examined using an electric-field-induced…”
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Stretching DNA Using the Electric Field in a Synthetic Nanopore
Published in Nano letters (12-10-2005)“…The mechanical properties of DNA over segments comparable to the size of a protein-binding site (3-10 nm) are examined using an electric-field-induced…”
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