204 research outputs found

    Breakdown of the Z=8 shell closure in unbound 12O and its mirror symmetry

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    An excited state in the proton-rich unbound nucleus 12O was identified at 1.8(4) MeV via missing-mass spectroscopy with the 14O(p,t) reaction at 51  AMeV. The spin-parity of the state was determined to be 0+ or 2+ by comparing the measured differential cross sections with distorted-wave calculations. The lowered location of the excited state in 12O indicates the breakdown of the major shell closure at Z=8 near the proton drip line. This demonstrates the persistence of mirror symmetry in the disappearance of the magic number 8 between 12O and its mirror partner 12Be

    Aversion-related effects of kappa-opioid agonist U-50488 on neural activity and functional connectivity between amygdala, ventral tegmental area, prefrontal cortex, hippocampus, and nucleus accumbens

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    This paper aims to provide an understanding of the neural activity underlying the aversion-associated effects of the KOR agonist U-5048

    Effects of kappa-opioid agonist U-50488 and p38 MAPK inhibitor SB203580 on the spike activity of pyramidal neurons in the basolateral amygdala

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    Our study found that the KOR agonist-induced spiking activity of the BLA pyramidal neurons is mediated by the beta-arrestin pathway and can be suppressed by the application of the p38 MAPK inhibitor SB20358

    Effect of Clozapine and 5-NT2A-Antagonist RU-31 on electroencephalography and Motor Activity of Rats in a Model of Schizophrenia with Neonatal Destruction of the Ventral Hippocampus

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    Background. Schizophrenia is a socially signifi cant disease that takes a variety of forms. The form of the course determines prescribing antipsychotic drugs with a different range of clinical effects. The study of the pharmacological activity of neuroleptics involves an experimental model using animals which makes it possible to reproduce some aspects of schizophrenia.Objectives. The study is aimed at evaluating the antipsychotic activity of 5-HT2A— RU-31 antagonist and atypical neuroleptic clozapine in behavioral tests and electroencephalography (EEG).Methods. The research methodology involved a dysontogenetic model of schizophrenia, implemented via aspiration destruction of the ventral hippocampus of rats on day 7 of postnatal development. The study was carried out on white outbred male rats selected from the offspring of females, represented by a simple random sample, provided by Rappolovo animal breeding facility of the National Research Center “Kurchatov Institute”. Injection of the studied substances was initiated on day 35 of postnatal development. Motor activity was assessed on day 54 of postnatal development in the Open Field unit and included assessing vertical motor activity, measured as the number of acts of verticalization in 5 minutes, and horizontal motor activity of rats, recorded as the number of crossed squares in 5 minutes. EEG signals were recorded on day 55 of postnatal development; thereafter the spectral density was calculated in the delta- (д) (0.4–4 Hz), theta- (и) (4.8–8 Hz), alpha- (б) (8–12 Hz) and beta- (в) (12–30 Hz) frequency ranges and the effect of the “operation” and “substance” factors on spectral density was evaluated in comparison with control groups. Statistical data processing was performed using GraphPad Prism 9 (Insight Partners, USA).Results. The antipsychotic activity of 1-(2-diethylaminoethyl)-2-(4-methoxyphenyl)-imidazo[1,2-a] benzimidazole — RU-31 compound with 5-HT2A-antagonistic mechanism of action was evaluated. RU-31 compound (10 mg/kg, intraperitoneally (i.p.)) statistically signifi cantly reduced vertical and horizontal spontaneous locomotor activity in rats with psychotic disorder by 18.8% and 20.9%, while the atypical neuroleptic clozapine (2 mg/kg, i.p.) signifi cantly reduced these values by 41.15% and 27.67%, respectively. The 5-HT2A-receptor antagonist RU-31 increased EEG signal power in the delta range by 123.33% and decreased it in the alpha range by 41.86% in surgically operated animals (p < 0.05). Clozapine increased the EEG signal power in all studied frequency ranges: in delta — by 107.99%, theta — by 97.16%, alpha — by 41.86% and in beta — by 49.16% in animals with neonatal destruction of the ventral hippocampus (p < 0.05).Conclusion. The studied substances contributed to the correction of behavioural disturbances associated with hypermobility as well as electrophysiological changes induced by a surgical operation, while similar activity was not observed (or was observed to a lesser extent) in healthy animals

    Sponge-like nanostructured silicon for integrated emitters

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    A new approach to nanoporous silicon formation is proposed. Anomalies both in low current densities and low fluorine ion concentrations, which is lead to low uniformity of formed porous silicon, are under consideration. It is shown that at very low current densities and fluorine ion concentration high uniformity, high porosity nanoporous silicon layers can be created. Structural, electrical and optical properties of porous silicon formed in a wide range of current densities, doping levels of silicon substrates and fluorine concentrations are presented

    Self-organized nanostructured anodic oxides for display applications

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    Electrochemical technologies have a high potential for display applications because of their cheapness and simplicity, easiness to scaling to large substrates and lowtemperature nature. However, in major display technologies the oxide films should be deposited on transparent conductive substrate, usually ITO on glass. For dielectric substrates like glasses, a special technology of current control is applied to anodizing metal films, which changes the oxide porous structure in a final stage and prevents formation of metal islands. To transform the residual metal nanowires into oxide, a special fading process similar to anoding bonding can be done. Usually, high reactivity electrolytes are used in the anodizing process, which destroys ITO layers. We have analyzed chemical properties of ITO in various anodizing electrolytes and found some suitable reagents and compositions. A lot of functional layers can be created by anodizing. For example, different filters may be formed by filling the pores by ink jet printing. Porous oxides can have low refractive indexes – lower than any bulk material, and can be used as effective antireflective coatings. A titanium oxide cover film forms “self-cleaning” surface due to its semiconductor photonics properties and oxygen production

    Blimp1(+) cells generate functional mouse sebaceous gland organoids in vitro

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    Most studies on the skin focus primarily on the hair follicle and interfollicular epidermis, whereas little is known regarding the homeostasis of the sebaceous gland (SG). The SG has been proposed to be replenished by different pools of hair follicle stem cells and cells that resides in the SG base, marked by Blimp1. Here, we demonstrate that single Blimp1(+) cells isolated from mice have the potential to generate SG organoids in vitro. Mimicking SG homeostasis, the outer layer of these organoids is composed of proliferating cells that migrate inward, undergo terminal differentiation and generating lipid-filled sebocytes. Performing confocal microscopy and mass-spectrometry, we report that these organoids exhibit known markers and a lipidomic profile similar to SGs in vivo. Furthermore, we identify a role for c-Myc in sebocyte proliferation and differentiation, and determine that SG organoids can serve as a platform for studying initial stages of acne vulgaris, making this a useful platform to identify potential therapeutic targets

    Optoelectronic performance of AgNW transparent conductive films with different width-to-height ratios and a figure of merit embodying an optical haze

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    Transparent conductive films (TCFs) based on rectangularly shaped silver nanowires (AgNWs) with different width-to-height ratios were theoretically studied. We show that tall AgNWs (height > width) possess higher transmittance and lower sheet resistance compared to other configurations of AgNWs. Moreover, tall AgNWs possesses significantly higher optical haze, which makes them a transparent conductor of choice for thin solar cell applications. For applications requiring low haze such as displays and touch screens, we propose an updated figure of merit embodying transmittance, sheet resistance and haze, allowing tuning width-to-height ratio to achieve a reasonable AgNW TCF performance trade-off. Obtained results offer a means for deeper analysis of AgNW properties for many optoelectronic applications

    Spectroscopy of 18^{18}Na: Bridging the two-proton radioactivity of 19^{19}Mg

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    The unbound nucleus 18^{18}Na, the intermediate nucleus in the two-proton radioactivity of 19^{19}Mg, was studied by the measurement of the resonant elastic scattering reaction 17^{17}Ne(p,17^{17}Ne)p performed at 4 A.MeV. Spectroscopic properties of the low-lying states were obtained in a R-matrix analysis of the excitation function. Using these new results, we show that the lifetime of the 19^{19}Mg radioactivity can be understood assuming a sequential emission of two protons via low energy tails of 18^{18}Na resonances
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