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From Past Issues:
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David Colquhoun
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Explicit Channel Conductance: Can It Be Computed? Biophys. J. 2005. 88:3742-3743.
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A Local Area Network of Protonated Water Molecules Biophys. J. 2004. 87:2105-2106.
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A Deeper Look into Single-Secretory Vesicle Dynamics Biophys. J. 2004. 87:1403-1405.
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Melting under Stress Biophys. J. 2004. 86:2639-2640.
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New Angles for NMR Studies of Biological Molecules Biophys. J. 2003. 85:3429-3430.
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TIR-FCS: Staying on the Surface Can Sometimes Be Better Biophys. J. 2003. 85:2783-2784.
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Subtle Shades of Permeability Biophys. J. 2003. 84:2793-2794.
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The Iso-Competition Point, a New Concept for Characterizing Multivalent versus Monovalent Counterion Competition, Successfully Describes Cation Binding to DNA Biophys. J. 1999. 77:1-2.
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Cells Use the Singular Properties of Different Channels to Produce Unique Electrical Songs Biophys. J. 1998. 74:2745-2746.
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Expanding Time Scales Usher in a New Era for Kinetic Studies Biophys. J. 1998. 74:2141-2141.
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Bacteriorhodopsin: A Spectroscopic Intermediate with Two Conformations and Three Relay Events Is Voltage Sensitive Biophys. J. 1998. 74:1-2.
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The unusual pKa of the rhodopsin chromophore: Is this how nature minimizes photoreceptor noise? Biophys. J. 1993. 64:1371-1372.
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New turns on old spins Biophys. J. 1993. 64:989-990.
Alfred R. Holzwarth
Is it time to throw away your apparatus for chlorophyll fluorescence induction? Biophys. J. 1993. 64:1280-1281.
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Attaching molecules to surfaces for scanning probe microscopy Biophys. J. 1993. 64:896-897.
Jane D. LeGrange
Microscopic manipulation of materials by atomic force microscopy Biophys. J. 1993. 64:903-904.
Robert M. Macnab
Running tests on a miniature motor Biophys. J. 1993. 64:934-935.
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Anisotropy and NMR of macromolecules Biophys. J. 1993. 64:301-302.