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1993 1
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166 results

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Page 1
Suicide among veterans with amyotrophic lateral sclerosis.
Lund EM, Hostetter TA, Forster JE, Hoffmire CA, Stearns-Yoder KA, Brenner LA, Tahmasbi Sohi M. Lund EM, et al. Muscle Nerve. 2021 Jun;63(6):807-811. doi: 10.1002/mus.27181. Epub 2021 Feb 16. Muscle Nerve. 2021. PMID: 33470429
Phosphorescent Carbon-Nanodots-Assisted Förster Resonant Energy Transfer for Achieving Red Afterglow in an Aqueous Solution.
Liang YC, Cao Q, Liu KK, Peng XY, Sui LZ, Wang SP, Song SY, Wu XY, Zhao WB, Deng Y, Lou Q, Dong L, Shan CX. Liang YC, et al. ACS Nano. 2021 Oct 26;15(10):16242-16254. doi: 10.1021/acsnano.1c05234. Epub 2021 Oct 8. ACS Nano. 2021. PMID: 34623793
The phosphorescence emission spectrum of the CNDs and the absorption spectrum of the RhB match well, and efficient energy transfer from the CNDs to the RhB via Forster resonant energy transfer process can be achieved, with a transfer efficiency can reach 99.2%. ...The lumi …
The phosphorescence emission spectrum of the CNDs and the absorption spectrum of the RhB match well, and efficient energy transfer from the …
Quantifying nuclear wide chromatin compaction by phasor analysis of histone Förster resonance energy transfer (FRET) in frequency domain fluorescence lifetime imaging microscopy (FLIM) data.
Liang Z, Lou J, Scipioni L, Gratton E, Hinde E. Liang Z, et al. Data Brief. 2020 Mar 12;30:105401. doi: 10.1016/j.dib.2020.105401. eCollection 2020 Jun. Data Brief. 2020. PMID: 32300614 Free PMC article.
One alternative solution to quantify chromatin structure in a living cell at the level of nucleosome proximity is to measure and spatially map Forster resonance energy transfer (FRET) between fluorescently labelled histones - the core protein of a nucleosome [3]. ...
One alternative solution to quantify chromatin structure in a living cell at the level of nucleosome proximity is to measure and spatially m …
Chemiluminescence Resonance Energy Transfer Efficiency and Donor-Acceptor Distance: from Qualitative to Quantitative.
Lou J, Tang X, Zhang H, Guan W, Lu C. Lou J, et al. Angew Chem Int Ed Engl. 2021 Jun 1;60(23):13029-13034. doi: 10.1002/anie.202102999. Epub 2021 May 5. Angew Chem Int Ed Engl. 2021. PMID: 33819367
The details disclosed in this contribute have provided the solid evidence that CRET follows Forster resonance theory. Our strategy would build a promising platform to control donor-acceptor distance, allowing to the interdisciplinary applications of CRET....
The details disclosed in this contribute have provided the solid evidence that CRET follows Forster resonance theory. Our strategy wo …
Phasor histone FLIM-FRET microscopy quantifies spatiotemporal rearrangement of chromatin architecture during the DNA damage response.
Lou J, Scipioni L, Wright BK, Bartolec TK, Zhang J, Masamsetti VP, Gaus K, Gratton E, Cesare AJ, Hinde E. Lou J, et al. Proc Natl Acad Sci U S A. 2019 Apr 9;116(15):7323-7332. doi: 10.1073/pnas.1814965116. Epub 2019 Mar 27. Proc Natl Acad Sci U S A. 2019. PMID: 30918123 Free PMC article.
The method is based on phasor image-correlation spectroscopy of histone fluorescence lifetime imaging microscopy (FLIM)-Forster resonance energy transfer (FRET) microscopy data acquired in live cells coexpressing H2B-eGFP and H2B-mCherry. ...
The method is based on phasor image-correlation spectroscopy of histone fluorescence lifetime imaging microscopy (FLIM)-Forster reson …
Evidence for D0-D0 mixing.
Aubert B, Bona M, Boutigny D, Karyotakis Y, Lees JP, Poireau V, Prudent X, Tisserand V, Zghiche A, Garra Tico J, Grauges E, Lopez L, Palano A, Eigen G, Stugu B, Sun L, Abrams GS, Battaglia M, Brown DN, Button-Shafer J, Cahn RN, Groysman Y, Jacobsen RG, Kadyk JA, Kerth LT, Kolomensky YG, Kukartsev G, Lopes Pegna D, Lynch G, Mir LM, Orimoto TJ, Ronan MT, Tackmann K, Wenzel WA, Del Amo Sanchez P, Hawkes CM, Watson AT, Held T, Koch H, Lewandowski B, Pelizaeus M, Schroeder T, Steinke M, Walker D, Asgeirsson DJ, Cuhadar-Donszelmann T, Fulsom BG, Hearty C, Knecht NS, Mattison TS, McKenna JA, Khan A, Saleem M, Teodorescu L, Blinov VE, Bukin AD, Druzhinin VP, Golubev VB, Onuchin AP, Serednyakov SI, Skovpen YI, Solodov EP, Todyshev KY, Bondioli M, Curry S, Eschrich I, Kirkby D, Lankford AJ, Lund P, Mandelkern M, Martin EC, Stoker DP, Abachi S, Buchanan C, Foulkes SD, Gary JW, Liu F, Long O, Shen BC, Zhang L, Paar HP, Rahatlou S, Sharma V, Berryhill JW, Campagnari C, Cunha A, Dahmes B, Hong TM, Kovalskyi D, Richman JD, Beck TW, Eisner AM, Flacco CJ, Heusch CA, Kroseberg J, Lockman WS, Schalk T, Schumm BA, Seiden A, Williams DC, Wilson MG, Winstrom LO, Chen E, Cheng CH, Fang F, Hitlin DG, Nar… See abstract for full author list ➔ Aubert B, et al. Phys Rev Lett. 2007 May 25;98(21):211802. doi: 10.1103/PhysRevLett.98.211802. Epub 2007 May 24. Phys Rev Lett. 2007. PMID: 17677764
We present evidence for D0-D(0) mixing in D(0)-->K(+)pi(-) decays from 384 fb(-1) of e(+)e(-) colliding-beam data recorded near square root s=10.6 GeV with the BABAR detector at the PEP-II storage rings at the Stanford Linear Accelerator Center. ...
We present evidence for D0-D(0) mixing in D(0)-->K(+)pi(-) decays from 384 fb(-1) of e(+)e(-) colliding-beam data recorded near square ro …
Production and decay of Omegac0.
Aubert B, Bona M, Boutigny D, Karyotakis Y, Lees JP, Poireau V, Prudent X, Tisserand V, Zghiche A, Tico JG, Grauges E, Lopez L, Palano A, Eigen G, Ofte I, Stugu B, Sun L, Abrams GS, Battaglia M, Brown DN, Button-Shafer J, Cahn RN, Groysman Y, Jacobsen RG, Kadyk JA, Kerth LT, Kolomensky YG, Kukartsev G, Pegna DL, Lynch G, Mir LM, Orimoto TJ, Pripstein M, Roe NA, Ronan MT, Tackmann K, Wenzel WA, del Amo Sanchez P, Hawkes CM, Watson AT, Held T, Koch H, Lewandowski B, Pelizaeus M, Schroeder T, Steinke M, Cottingham WN, Walker D, Asgeirsson DJ, Cuhadar-Donszelmann T, Fulsom BG, Hearty C, Knecht NS, Mattison TS, McKenna JA, Khan A, Saleem M, Teodorescu L, Blinov VE, Bukin AD, Druzhinin VP, Golubev VB, Onuchin AP, Serednyakov SI, Skovpen YI, Solodov EP, Todyshev KY, Bondioli M, Curry S, Eschrich I, Kirkby D, Lankford AJ, Lund P, Mandelkern M, Martin EC, Stoker DP, Abachi S, Buchanan C, Foulkes SD, Gary JW, Liu F, Long O, Shen BC, Zhang L, Paar HP, Rahatlou S, Sharma V, Berryhill JW, Campagnari C, Cunha A, Dahmes B, Hong TM, Kovalskyi D, Richman JD, Beck TW, Eisner AM, Flacco CJ, Heusch CA, Kroseberg J, Lockman WS, Schalk T, Schumm BA, Seiden A, Williams DC, Wilson MG, Winstrom LO, Chen E… See abstract for full author list ➔ Aubert B, et al. Phys Rev Lett. 2007 Aug 10;99(6):062001. doi: 10.1103/PhysRevLett.99.062001. Epub 2007 Aug 6. Phys Rev Lett. 2007. PMID: 17930815
Phasor Histone FLIM-FRET Microscopy Maps Nuclear-Wide Nanoscale Chromatin Architecture With Respect to Genetically Induced DNA Double-Strand Breaks.
Lou J, Solano A, Liang Z, Hinde E. Lou J, et al. Front Genet. 2021 Dec 10;12:770081. doi: 10.3389/fgene.2021.770081. eCollection 2021. Front Genet. 2021. PMID: 34956323 Free PMC article.
To address this demand, here we present the phasor approach to fluorescence lifetime imaging microscopy (FLIM) of Forster resonance energy transfer (FRET) between fluorescently labeled histones in the DSB inducible via AsiSI cell system (DIvA), which has sufficient spatial …
To address this demand, here we present the phasor approach to fluorescence lifetime imaging microscopy (FLIM) of Forster resonance e …
Early loss of cerebellar Purkinje cells in human and a transgenic mouse model of Alzheimer's disease.
Chaudhari K, Wang L, Kruse J, Winters A, Sumien N, Shetty R, Prah J, Liu R, Shi J, Forster M, Yang SH. Chaudhari K, et al. Neurol Res. 2021 Jul;43(7):570-581. doi: 10.1080/01616412.2021.1893566. Epub 2021 Mar 10. Neurol Res. 2021. PMID: 33688799 Free PMC article.
BACKGROUND: The cerebellum's involvement in AD has been under-appreciated by historically labeling as a normal control in AD research. ...
BACKGROUND: The cerebellum's involvement in AD has been under-appreciated by historically labeling as a normal control in AD research …
166 results