Bibliography
The bibliography contains articles mentioning explicitly PicoQuant or at least one of our product's name (e.g. MicroTime).
Most of the references can be found easily by full-text searches on the internet. However, some papers cite us only indirectly,
sometimes not at all. Such publications are included only if the use of a PicoQuant product is known, for example, based on
communication with the author(s). There are certainly many more articles reporting results obtained using PicoQuant devices.
Unfortunately, such papers are often hidden for us. Please help completing this list.
Do you miss your publication? If yes, we will be happy to include it in our bibliography. Please send an e-mail
to info@picoquant.com containing the appropriate citation.
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Searching for MicroTime 200
1310 results found.
The accumulation of methylated porphyrins in dormant cells of Mycolicibacterium smegmatis is accompanied by a decrease in membrane fluidity and an impede of the functioning of the respiratory chain
Gligonov I.A., Baggaeva D.I., Demina G.R., Vostroknutova G.N., Vorozhtsov D.S., Kaprelyants A.S., Savitsky A.P., Shleeva M.O.
Biochimica et Biophysica Acta (BBA) - Biomembranes, Vol.1866, 184270 (2024)
Reference to: MicroTime 200, SymPhoTime
Retention of the RNA ends provides the molecular memory for maintaining the activation of the Csm complex
Imrisch P., Moglia I., Samatanga B., Tamulaitis G., Seidel R.
Nucleic Acids Research, Vol.052, p.3896-3910 (2024)
Reference to:
MicroTime 200
Related to:
FCS
Monitoring cancer treatment in live melanoma cells using FLIM
Herrera-Ochoa D., Bravo I., Garzón Ruiz A.
ChemRxiv, preprint (2024)
Reference to:
MicroTime 200
Related to:
FLIM
Deciphering the liquid–liquid phase separation induced modulation in the structure, dynamics, and enzymatic activity of an ordered protein β-lactoglobulin
Rai S., Pramanik S., Mekherjee S.
Chemical Science, Vol.015, p.3936-3948 (2024)
Reference to:
MicroTime 200, PicoHarp 300
Related to:
FLIM
Cu2 (Thiourea) Br2 complex as a multifunctional interfacial layer for reproducible PTAA‐based p‐i‐n Perovskite solar cells
Wang Y., Zhou S., Liu X., Sun K., Lee M., Liu Z., Zhang M., Bai Y., Hameiri Z., Hao H.
Solar RRL, Vol.008, 2300920 (2024)
Reference to: MicroTime 200
Analyzing the protein complex formation of SARS-CoV-2 nucleocapsid protein and α-Synuclein
Hove J.H.
Dissertation University of Twente (2024)
Reference to:
MicroTime 200
Related to:
FCS
Phosphonium-substituted conjugated polyelectrolytes display efficient visible-light-induced antibacterial activity
Sun H., Barboza-Ramos I., Wang X., Schanze K.S.
ACS Applied Materials & Interfaces, Vol.016, p.20023-20033 (2024)
Reference to: MicroTime 200, TimeHarp 260, SymPhoTime
Direct laser write-read-erase in a functional molecular phase change material–polymer nanocomposite thin film
Maurya R.S., Chaudhary N., Srujana P., Rajput V.K., Naraharisetty S.R.G., Radhakrishnan T.P.
Advanced Optical Materials, Vol.012, 2302279 (2024)
Reference to: MicroTime 200, PicoHarp 300
Charge of a transmembrane peptide alters its interaction with lipid membranes
Thakur G.C.N., Uday A., Cebecauer M., Roos W.H., Cwiklik L., Hof M., Jurkiewicz P., Melcrová A.
Colloids and Surfaces B: Biointerfaces, Vol.235, 113765 (2024)
Reference to:
MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), FluoFit
Related to:
FRET
Brillouin light scattering anisotropy microscopy for imaging the viscoelastic anisotropy in living cells
Keshmiri H., Cikes D., Samalova M., Schindler L., Appel L.-M., Urbanek M., Yudushkin I., Slade D., Weninger W.J., Peaucelle A., Penninger J., Elsayad K.
Nature Photonics (2024)
Reference to:
MicroTime 200
Related to:
FLIM
Multifunctional entinostat enhances the mechanical robustness and efficiency of flexible perovskite solar cells and minimodules
Xu W., Chen B., Zhang Z., Liu Y., Xian Y., Wang X., Shi Z., Gu H., Fei C., Li N., Uddin A., Zhang H., Dou L., Yan Y., Huang J.
Nature Photonics (2024)
Reference to:
MicroTime 200, FluoTime 300
Related to:
FLIM
Color routing of the emission from magnetic and electric dipole transitions of Eu3+ by broken-symmetry TiO2 metasurfaces
Bashiri A., Vaskin A., Tanaka K., Steinert M., Pertsch T., Staude I.
ACS Nano, Vol.018, p.506-514 (2024)
Reference to: MicroTime 200
A practical guide to time-resolved fluorescence microscopy and spectroscopy
Clark B.S., Silvernail I., Gordon K., Mogan A.N., Rolband L.A., Castaneda J.F., LeBlanc S.J.
bioRxiv, preprint (2024)
Reference to:
MicroTime 200, MultiHarp 150, SymPhoTime
Related to:
FCS, FLCS, FRET
Surface modification of 3D-printed micro- and macro-structures via in situ nitroxide-mediated radical photopolymerization
Wu X., Leuschel B., Nam N.H., Guillaneuf Y., Gigmes D., Clément J.-L., Spangenberg A.
Advanced Functional Materials, early view, 2312211 (2023)
Reference to:
MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SymPhoTime
Related to:
FLIM
Reliability and accuracy of single-molecule FRET studies for characterization of structural dynamics and distances in proteins
Agam G., Gebhard C., Popara M., Mächtel R., Folz J., Ambrose B., Chamachi N., Chung S.Y., Craggs T.D., de Boer M., Grohmann D., Ha T., Hartmann A., Hendrix J., Hirschfeld V., Hübner C.G., Hugel T., Kammerer D., Kang H.-S., Kapanidis A.N., Krainer G., Kramm K., Lemke E.A., Lerner E., Margeat E., Martens K., Michaelis J., Mitra J., Moya Muñoz G.G., Quast R.B., Robb N.C., Sattler M., Schlierf M., Schneider J., Schröder T., Sefer A., Tan P.S., Thurn J., Tinnefeld P., van Noort J., Weiss S., Wendler N., Zijstra N., Barth A., Seidel 'C.A.M., Lamb D.C., Cordes T.
Nature Methods, Vol.020, p.532-535 (2023)
Reference to:
MicroTime 200, TimeHarp 100/200, HydraHarp 400, SymPhoTime
Related to:
FRET
An engineered nanosugar enables rapid and sustained glucose-responsive insulin delivery in diabetic mice
Xu R., Bhangu S.K., Soirris K.C., Vanni D., Sani M.-A., Karas J.A., Alt K., Niego B., Ale A., Besford Q.A., Dyett B., Patrick J., Carmichael I., Shaw J.E., Caruso F., Cooper M.E., Hagemeyer C.E., Cavalieri F.
Advanced Materials, Vol.035, 2210392 (2023)
Reference to: MicroTime 200
Near-infrared fluorescence lifetime imaging of biomolecules with carbon nanotubes
Sistemich L., Galonska P., Stegemann J., Ackermann J., Kruss S.
Angewandte Chemie International Edition, Vol.062, e202300682 (2023)
Reference to: MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), HydraHarp 400, SymPhoTime
Imagining the future of optical microscopy: everything, everywhere, all at once
Balasubramanian H., Hobson C.M., Chew T.-L., Aaron J.
Communications Biology, Vol.006, (2023)
Reference to: MicroTime 200, Luminosa, LSM Upgrade Kit, MicroTime 100
Multicolor lifetime imaging and its application to HIV-1 uptake
Starling T., Calon-Andres I., Iliopoulou M., Kraemer B., Loidolt-Krueger M., Williamson D.J., Padilla-Parra S.
Nature Communications, Vol.014, 4994 (2023)
Reference to:
MicroTime 200, MultiHarp 150, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SPADs, SymPhoTime
Related to:
FLIM, Pulsed Interleaved Excitation (PIE), FRET
Polarization dynamics of solid-state quantum emitters
Kumar A., Samaner C., Cholsuk C., Matthes T., Paçal S., Oyun Y., Zand A., Chapman R.J., Saerens G., Grange R., Suwanna S., Ateş S., Vogl T.
Quantum Physics (2023)
Reference to: MicroTime 200
Ultrafast one-step deposition route to fabricate single-crystal CsPbX3 (X = Cl, Cl/Br, Br, and Br/I) photodetectors
Zhang l., Li X., Tian Y., Hao B., Han J., Chen H., Zou B., Du C.
Applied Materials & Interfaces, Vol.015, p.13270-13280 (2023)
Reference to: MicroTime 200
Bacterial division ring stabilizing ZapA versus destabilizing SlmA modulate FtsZ switching between biomolecular condensates and polymers
Monterroso B., Robles-Ramos M.Á., Sobrinos-Sanguino M., Luque-Ortega J.R., Alfonso C., Margolin W., Rivas G., Zorrilla S.
Open Biology, Vol.013, 220324 (2023)
Reference to:
MicroTime 200, Pulsed Diode Lasers (PDL Series, LDH-Series, LDH-FA Series), SPADs
Related to:
FCS
Ratiometric two-photon near-infrared probe to detect DPP IV in human plasma, living cells, human tissues, and whole organisms using zebrafish
Valverde-Pozo J., Paredes J.M., Widmann T.J., Griñan-Lison C., Ceccarelli G., Gioiello A., Garcia-Rubiño M.E., Marchal J.A., Alvarez-Pez J.M., Talavera E.M.
ACS Sensors, Vol.008, p.1064-1075 (2023)
Reference to: MicroTime 200
Hybrid dielectric-plasmonic nanoantenna with multiresonances for subwavelength photon sources
Dmitriev P.A., Lassalle E., Ding L., Pan Z., Neo D.C.J., Valuckas V., Paniagua-Dominguez R., Yang J.K.W., Demir H.V., Kuznetsov A.I.
ACS Photonics, Vol.010, p.582-594 (2023)
Reference to: MicroTime 200
New insights into the bacterial targets of antimicrobial blue light
dos Anjos C., Leanse L.G., Ribeiro M.S., Sellera F.P., Dropa M., Arana-Chavez V.E., Lincopan N., Baptista M.S., Pogliani F.C., Dai T., Sabino C.P.
Microbiology Spectrum, Vol.011, p.1-13
Reference to:
MicroTime 200, SymPhoTime
Related to:
FLIM