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Betzig E, Trautman JK, Harris TD, Weiner JS, Kostelak RL.  1991.  Breaking the diffraction barrier: optical microscopy on a nanometric scale. (With commentary). Science. 251(5000):1468-70.
Betzig E, Trautman JK, Weiner JS, Harris TD, Wolfe R.  1992.  Polarization contrast in near-field scanning optical microscopy.. Applied Optics. 31(22):4563-8.
Betzig E.  2016.  Bessel beam plane illumination microscope.. USPTO. B2
Betzig E, Trautman JK, Harris TD, Weiner JS, Kostelak RL.  1991.  Breaking the diffraction barrier: optical microscopy on a nanometric scale.. Science. 251(5000):1468-70.
Betzig E, Trautman JK.  1992.  Near-field optics: microscopy, spectroscopy, and surface modification beyond the diffraction limit. (With commentary). Science. 257(5067):189-95.
Betzig E, Patterson GH, Sougrat R, O Lindwasser W, Olenych S, Bonifacino JS, Davidson MW, Lippincott-Schwartz J, Hess HF.  2006.  Imaging intracellular fluorescent proteins at nanometer resolution. (With commentary). Science. 313:1642-5.
Betzig E, Chichester RJ.  1993.  Single molecules observed by near-field scanning optical microscopy. (With commentary). Science. 262:1422-5.
Betzig E.  2015.  Single molecules, cells, and super-resolution optics (Nobel Lecture).. Angewandte Chemie (International Edition in English).
Betzig E, Trautman JK, Wolfe R, Gyorgy EM, Finn PL, Kryder MH, Chang CH.  1992.  Near-field magneto-optics and high density data storage. (With commentary). Applied Physics Letters.. 61
Betzig E.  2005.  Sparse and composite coherent lattices. (With commentary). Physical Review A. 71:063406.
Betzig E.  1995.  Proposed method for molecular optical imaging. (With commentary). Optics Letters. 20:237-9.
Betzig E, Finn PL, Weiner JS.  1992.  Combined shear force and near-field scanning optical microscopy (With commentary). Applied Physics Letters. 60
Betzig E, Chichester RJ, Lanni F, Taylor DL.  1993.  Near-field fluorescence imaging of cytoskeletal actin. (With commentary). Bioimaging. 1(3):129-35.
Beyene AG, Delevich K, Yang SJ, Landry MP.  2018.  New optical probes bring dopamine to light.. Biochemistry. 57(45):6379-6381.
Beyene AG, McFarlane IR, Pinals RL, Landry MP.  2017.  Stochastic simulation of dopamine neuromodulation for implementation of fluorescent neurochemical probes in the striatal extracellular space.. ACS Chemical Neuroscience. 8(10):2275-2289.
Beyene AG, Delevich K, Del Bonis-O’Donnell JTravis, Piekarski DJ, Lin WChen, A. Thomas W, Yang SJ, Kosillo P, Yang D, Prounis GS et al..  2019.  Imaging striatal dopamine release using a nongenetically encoded near infrared fluorescent catecholamine nanosensor.. Science Advances. 5(7):eaaw3108.
Beyene AG, Panescu P.  2020.  A community for Black chemists.. Nature Chemistry. 12(11):988-989.
Beyene AG, Alizadehmojarad AA, Dorlhiac G, Goh N, Streets AM, Král P, Vuković L, Landry MP.  2018.  Ultralarge modulation of fluorescence by neuromodulators in carbon nanotubes functionalized with self-assembled oligonucleotide rings.. Nano Letters. 18(11):6995-7003.
Bharadwaj R, Roy M, Ohyama T, Sivan-Loukianova E, Delannoy M, Lloyd TE, Zlatic M, Eberl DF, Kolodkin AL.  2013.  Cbl-associated protein regulates assembly and function of two tension-sensing structures in Drosophila.. Development. 140:627-38.
Bharathan NKrishnan, Giang W, Hoffman CL, Aaron JS, Khuon S, Chew T-L, Preibisch S, Trautman ET, Heinrich L, Bogovic J et al..  2023.  Architecture and dynamics of a desmosome-endoplasmic reticulum complex.. Nature Cell Biology. 25(6):823-835.
Bharathan NKrishnan, Giang W, Aaron JS, Khuon S, Chew T-L, Preibisch S, Trautman ET, Heinrich L, Bogovic J, Bennett D et al..  2022.  Architecture and dynamics of a novel desmosome-endoplasmic reticulum organelle. bioRxiv.
Bharioke A, Chklovskii DB.  2015.  Automatic adaptation to fast input changes in a time-invariant neural circuit.. PLoS Computational Biology. 11(8):e1004315.
Bibb MJ, Van Etten RA, Wright CT, Walberg MW, Clayton DA.  1981.  Sequence and gene organization of mouse mitochondrial DNA.. Cell. 26:167-80.
Bickel R, Belletier N, Cleveland H, Stern DL, Davis G.  2010.  A patterning difference underlying viviparous and oviparous development in the pea aphid. Society for Integrative and Comparative Biology. 50:E205-E205.
Bickel RD, Cleveland HC, Barkas J, Jeschke CC, Raz AA, Stern DL, Davis GK.  2013.  The pea aphid uses a version of the terminal system during oviparous, but not viviparous, development.. Evodevo. 4(1):10.