Phosphorescence Decay Kinetics in the Presence of Statistical Distribution of Molecules Over the Rates of Radiative and Nonradiative Deactivation of Triplet Excitations

Author(s):  
N. V. Zhdanova ◽  
M. I. Deryabin ◽  
M. V. Erina
Author(s):  
N.V. Zhdanova ◽  
◽  
M.I. Deryabin ◽  
M.V. Erina ◽  
◽  
...  

Approximate formulas of phosphorescence decay kinetics under the conditions of the statistical scatter of molecules over rate constants of radiative or non-radiative deactivation of triplet excitation have been obtained. It is shown that the phosphorescence decay function has different form for these two cases. The obtained difference in kinetics was used to establish the reason for the deviation from the exponential law and faster decay of the sensitized phosphorescence of naphthalene and diphenyl in n-paraffin matrices ( T = 77 K) in the presence of heavy atoms in the donor.


Author(s):  
И.Г. Мегела ◽  
В.Т. Маслюк ◽  
И.Ю. Роман ◽  
О.М. Поп ◽  
Т.А. Виеру-Василица

The investigation of the luminescent properties of nonstoichiometric spinel compositions of MgO·2,5Al2O3 irradiated in direct and scattered beams of 12 MeV electrons on M-30 microtron are given. The phosphorescence decay kinetics of these compounds that occur after irradiation have been studied. It was found that the kinetics of induced luminescence can be described the Becquerel’s hyperbola. The degree parameter of this hyperbola is increased with increasing the dose of radiation. The regularities of the thermoluminescence peak change in the range of 110-250ºC with the dose are investigated. It is concluded that obtained results can be used for clinical and technological dosimetry of pulsed electron beams.


Author(s):  
Junhui Mei ◽  
Xidong Zhang ◽  
Heng Zhang ◽  
Guojun Lai ◽  
Guixia Kang

2020 ◽  
Vol 22 (1) ◽  
pp. 111
Author(s):  
Oksana M. Subach ◽  
Natalia V. Barykina ◽  
Elizaveta S. Chefanova ◽  
Anna V. Vlaskina ◽  
Vladimir P. Sotskov ◽  
...  

Red fluorescent genetically encoded calcium indicators (GECIs) have expanded the available pallet of colors used for the visualization of neuronal calcium activity in vivo. However, their calcium-binding domain is restricted by calmodulin from metazoans. In this study, we developed red GECI, called FRCaMP, using calmodulin (CaM) from Schizosaccharomyces pombe fungus as a calcium binding domain. Compared to the R-GECO1 indicator in vitro, the purified protein FRCaMP had similar spectral characteristics, brightness, and pH stability but a 1.3-fold lower ΔF/F calcium response and 2.6-fold tighter calcium affinity with Kd of 441 nM and 2.4–6.6-fold lower photostability. In the cytosol of cultured HeLa cells, FRCaMP visualized calcium transients with a ΔF/F dynamic range of 5.6, which was similar to that of R-GECO1. FRCaMP robustly visualized the spontaneous activity of neuronal cultures and had a similar ΔF/F dynamic range of 1.7 but 2.1-fold faster decay kinetics vs. NCaMP7. On electrically stimulated cultured neurons, FRCaMP demonstrated 1.8-fold faster decay kinetics and 1.7-fold lower ΔF/F values per one action potential of 0.23 compared to the NCaMP7 indicator. The fungus-originating CaM of the FRCaMP indicator version with a deleted M13-like peptide did not interact with the cytosolic environment of the HeLa cells in contrast to the metazoa-originating CaM of the similarly truncated version of the GCaMP6s indicator with a deleted M13-like peptide. Finally, we generated a split version of the FRCaMP indicator, which allowed the simultaneous detection of calcium transients and the heterodimerization of bJun/bFos interacting proteins in the nuclei of HeLa cells with a ΔF/F dynamic range of 9.4 and a contrast of 2.3–3.5, respectively.


2021 ◽  
Vol 28 (1) ◽  
Author(s):  
Seyed Mohammad Mahdi Mortazavi ◽  
Saeid Ahmadjo ◽  
Mojtaba Omidvar ◽  
Mohammad Reza Zamani ◽  
Rezvan Fallahnezhad

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