Main Menu (Mobile)- Block

Main Menu - Block

Biblio

Export 3920 results:
Author Title [ Type(Desc)] Year
Journal Article
Xie ME, Adam Y, Fan LZ, Böhm UL, Kinsella I, Zhou D, Rozsa M, Singh A, Svoboda K, Paninski L et al..  2021.  High-fidelity estimates of spikes and subthreshold waveforms from 1-photon voltage imaging in vivo.. Cell Reports. 35(1):108954.
Schmid B, Schindelin J, Cardona A, Longair M, Heisenberg M..  2010.  A high-level 3D visualization API for Java and ImageJ.. BMC Bioinformatics. 11:274.
Song S, Sjöström PJesper, Reigl M, Nelson S, Chklovskii DB.  2005.  Highly nonrandom features of synaptic connectivity in local cortical circuits.. PLoS Biology. 3(3):e68.
Zhang X, Zhang M, Li D, He W, Peng J, Betzig E, Xu P.  2016.  Highly photostable, reversibly photoswitchable fluorescent protein with high contrast ratio for live-cell superresolution microscopy.. Proceedings of the National Academy of Sciences of the United States of America. 113(37):10364-9.
Yatzeck MM, Lavis LD, Chao T-Y, Chandran SS, Raines RT.  2008.  A highly sensitive fluorogenic probe for cytochrome P450 activity in live cells.. Bioorganic & Medicinal Chemistry Letters. 18(22):5864-6.
Dana H, Sun Y, Mohar B, Hulse BK, Kerlin AM, Hasseman JP, Tsegaye G, Tsang A, Wong A, Patel R et al..  2019.  High-performance calcium sensors for imaging activity in neuronal populations and microcompartments.. Nature Methods. 16(7):649-57.
Hario S, Le GNT, Sugimoto H, Takahashi-Yamashiro K, Nishinami S, Toda H, Li S, Marvin JS, Kuroda S, Drobizhev M et al..  2024.  High-Performance Genetically Encoded Green Fluorescent Biosensors for Intracellular l-Lactate.. ACS Central Science. 10(2):402-416.
Dana H, Sun Y, Mohar B, Hulse B, Hasseman JP, Tsegaye G, Tsang A, Wong A, Patel R, Macklin JJ et al..  2018.  High-performance GFP-based calcium indicators for imaging activity in neuronal populations and microcompartments.. bioRxiv.
Viswanathan S, Williams ME, Bloss EB, Stasevich TJ, Speer CM, Nern A, Pfeiffer BD, Hooks BM, Li W-P, English BP et al..  2015.  High-performance probes for light and electron microscopy.. Nature Methods. 12(6):568-76.
Stringer C, Michaelos M, Tsyboulski D, Lindo SE, Pachitariu M.  2021.  High-precision coding in visual cortex.. Cell. 184(10):2767-78.
Wolf FW, Rodan AR, Tsai LT-Y, Heberlein U.  2002.  High-resolution analysis of ethanol-induced locomotor stimulation in Drosophila.. The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 22(24):11035-44.
Jung J, Grant T, Thomas DR, Diehnelt CW, Grigorieff N, Leemor J-T.  2019.  High-resolution cryo-EM structures of outbreak strain human norovirus shells reveal size variations.. Proceedings of the National Academy of Sciences of the United States of America. 116(26):12828-32.
Pamula MC, Carlini L, Forth S, Verma P, Suresh S, Legant WR, Khodjakov A, Betzig E, Kapoor TM.  2019.  High-resolution imaging reveals how the spindle midzone impacts chromosome movement.. The Journal of Cell Biology. 218(8):2529-44.
Park J-H, Sun W, Cui M.  2015.  High-resolution in vivo imaging of mouse brain through the intact skull.. Proceedings of the National Academy of Sciences of the United States of America. 112(30):9236-41.
Xiao Y, Faucherre A, Pola-Morell L, Heddleston JM, Liu T-L, Chew T-L, Sato F, Sehara-Fujisawa A, Kawakami K, López-Schier H.  2015.  High-resolution live imaging reveals axon-glia interactions during peripheral nerve injury and repair in zebrafish.. Disease Models & Mechanisms. 8(6):553-64.
Rodriguez JA, Gonen T.  2016.  High-resolution macromolecular structure determination by MicroED, a cryo-EM method.. Methods in Enzymology.
Orgogozo V, Broman KW, Stern DL.  2006.  High-resolution quantitative trait locus mapping reveals sign epistasis controlling ovariole number between two Drosophila species.. Genetics. 173(1):197-205.
Thompson CL, Ng L, Menon V, Martinez S, Lee C-K, Glattfelder K, Sunkin SM, Henry A, Lau C, Dang C et al..  2014.  A high-resolution spatiotemporal atlas of gene expression of the developing mouse brain.. Neuron. 83(2):309-23.
Nannenga BL, Shi D, Leslie AGW, Gonen T.  2014.  High-resolution structure determination by continuous-rotation data collection in MicroED.. Nature Methods. 11(9):927-30.
Yamashita T, Zheng F, Finkelstein D, Kellard Z, Carter R, Rosencrance CD, Sugino K, Easton J, Gawad C, Zuo J.  2018.  High-resolution transcriptional dissection of in vivo Atoh1-mediated hair cell conversion in mature cochleae identifies Isl1 as a co-reprogramming factor.. PLoS Genetics. 14(7):e1007552.
Ji N, Magee JC, Betzig E.  2008.  High-speed, low-photodamage nonlinear imaging using passive pulse splitters.. Nature Methods. 5(2):197-202.
Ji N, Magee JC, Betzig E.  2008.  High-speed, low-photodamage nonlinear imaging using passive pulse splitters. (With commentary). Nature Methods. 5(2):197-202.
Taylor PE, Card GM, House J, Dickinson MH, Flagan RC.  2006.  High-speed pollen release in the white mulberry tree, Morus alba L.. Sexual Plant Reproduction. 19(1):19-24.
Ohyama T, Jovanic T, Denisov G, Dang TC, Hoffmann D, Kerr RA, Zlatic M.  2013.  High-throughput analysis of stimulus-evoked behaviors in Drosophila larva reveals multiple modality-specific escape strategies.. PLoS One. 8(8):e71706.
Croteau-Chonka EC, Clayton MS, Venkatasubramanian L, Harris SN, Jones BMW, Narayan L, Winding M, Masson J-B, Zlatic M, Klein KT.  2022.  High-throughput automated methods for classical and operant conditioning of larvae.. eLife. 11