ela Punjab imposes curfew with no relaxations By www.newkerala.com Published On :: Tue, 24 Mar 2020 07:24:01 +0530 Full Article
ela COVID-19: Punjab CM imposes 'full curfew' with 'no relaxation' By www.newkerala.com Published On :: Tue, 24 Mar 2020 10:12:01 +0530 Full Article
ela Chandigarh lockdown relaxations retrograde step: PGI doctors By www.newkerala.com Published On :: Sat, 28 Mar 2020 12:08:01 +0530 Full Article
ela HC notice to Chandigarh Admin for relaxing lockdown By www.newkerala.com Published On :: Sun, 29 Mar 2020 08:15:01 +0530 Full Article
ela Decision to relax curfew in Chandigarh gets court's consent By www.newkerala.com Published On :: Mon, 30 Mar 2020 07:14:01 +0530 Full Article
ela Relax utilisation of emergency relief grants: Punjab CM By www.newkerala.com Published On :: Mon, 30 Mar 2020 08:06:02 +0530 Full Article
ela Punjab State Commission for SC directs probe into delaying of Nirmal Singh's cremation By www.newkerala.com Published On :: Tue, 07 Apr 2020 01:46:01 +0530 Full Article
ela No relaxation in COVID-19 lockdown: Ludhiana DC By www.newkerala.com Published On :: Sun, 12 Apr 2020 02:18:01 +0530 Full Article
ela No relaxation in curfew till May 3, says Punjab CM By www.newkerala.com Published On :: Mon, 20 Apr 2020 09:48:01 +0530 Full Article
ela No relaxation in curfew till May 3 in Punjab; no special concessions for Ramzan By www.newkerala.com Published On :: Tue, 21 Apr 2020 06:38:01 +0530 Full Article
ela COVID-19 | ‘Sometimes, we have to ask the police to get relatives to fetch bodies’ By www.thehindu.com Published On :: Sun, 10 May 2020 07:35:43 +0530 Resident doctor shares his experience of working at Sion hospital, where unattended bodies were found next to patients Full Article Mumbai
ela Coronavirus | Fatalities dog Andhra Pradesh, Telangana battle against virus By www.thehindu.com Published On :: Sun, 10 May 2020 03:02:30 +0530 Two expatriates test positive in Kerala; Karnataka focuses on Bengaluru cases Full Article Telangana
ela IRIXS: a resonant inelastic X-ray scattering instrument dedicated to X-rays in the intermediate energy range By scripts.iucr.org Published On :: 2020-02-26 A new resonant inelastic X-ray scattering (RIXS) instrument has been constructed at beamline P01 of the PETRA III synchrotron. This instrument has been named IRIXS (intermediate X-ray energy RIXS) and is dedicated to X-rays in the tender-energy regime (2.5–3.5 keV). The range covers the L2,3 absorption edges of many of the 4d elements (Mo, Tc, Ru, Rh, Pd and Ag), offering a unique opportunity to study their low-energy magnetic and charge excitations. The IRIXS instrument is currently operating at the Ru L3-edge (2840 eV) but can be extended to the other 4d elements using the existing concept. The incoming photons are monochromated with a four-bounce Si(111) monochromator, while the energy analysis of the outgoing photons is performed by a diced spherical crystal analyzer featuring (102) lattice planes of quartz (SiO2). A total resolution of 100 meV (full width at half-maximum) has been achieved at the Ru L3-edge, a number that is in excellent agreement with ray-tracing simulations. Full Article text
ela Correlated changes in structure and viscosity during gelatinization and gelation of tapioca starch granules By journals.iucr.org Published On :: Melting of the semicrystalline structure of native tapioca starch granules is correlated to solution viscosity for elucidating gelatinization and gelation processes. Full Article text
ela Crystal and solution structures of fragments of the human leucocyte common antigen-related protein By journals.iucr.org Published On :: The crystal and solution SAXS structures of a fragment of human leucocyte common antigen-related protein show that it is less flexible than the homologous proteins tyrosine phosphatase receptors δ and σ. Full Article text
ela (S)-1-(Benzylselanyl)-3-phenylpropan-2-amine By scripts.iucr.org Published On :: 2019-07-26 In the title compound, C16H19NSe, the dihedral angle between the benzene rings is 66.49 (12) and a weak intramolecular N—H⋯Se hydrogen bond generates an S(6) ring. In the crystal, weak N—H⋯N hydrogen bonds link the molecules into [100] chains. Full Article text
ela [4-(4-Methoxyphenyl)-8-oxo-3-(phenylselanyl)spiro[4.5]deca-3,6,9-trien-2-yl]methylcyanamide By scripts.iucr.org Published On :: 2020-01-28 The title compound, C25H22N2O2Se, crystallizes in the space group P21/c with one molecule in the asymmetric unit. The compound was synthesized by the addition of phenylselenyl bromide to a cyanamide. The phenylselenyl portion and the cyano group, as well as the ketone functional group in the cyclohexa-2,5-dien-1-one portion of the structure, are disordered, with occupancy factors of 0.555 (14) and 0.445 (14). Full Article text
ela Cis versus trans arrangement of dithiocarbazate ligands in bis-chelated Ni and Cu complexes By scripts.iucr.org Published On :: 2020-04-21 The structures are described of two bis-chelated metal complexes of nickel(II) and copper(II) with S-n-hexyl 3-(1-phenylethylidene)dithiocarbazate Schiff bases in a cis configuration, namely, bis[S-n-hexyl 3-(1-phenylethylidene)dithiocarbazato-κ2N3,S]nickel(II), [Ni(C15H21N2S2)2], and bis[S-n-hexyl 3-(1-phenylethylidene)dithiocarbazato-κ2N3,S]copper(II), [Cu(C15H21N2S2)2]. In both complexes, the metals have distorted square-planar geometries. A search in the Cambridge Structural Database [Groom et al. (2016). Acta Cryst. B72, 171–179] for bis-chelated nickel(II) and copper(II) complexes with similar Schiff bases retrieved 55 and 36 hits for the two metals, respectively. An analysis of the geometrical parameters of complexes showing cis and trans configurations is reported and the values compared with those for the complexes described in this work. Full Article text
ela Structures of three ependymin-related proteins suggest their function as a hydrophobic molecule binder By scripts.iucr.org Published On :: 2019-06-20 Ependymin was first discovered as a predominant protein in brain extracellular fluid in fish and was suggested to be involved in functions mostly related to learning and memory. Orthologous proteins to ependymin called ependymin-related proteins (EPDRs) have been found to exist in various tissues from sea urchins to humans, yet their functional role remains to be revealed. In this study, the structures of EPDR1 from frog, mouse and human were determined and analyzed. All of the EPDR1s fold into a dimer using a monomeric subunit that is mostly made up of two stacking antiparallel β-sheets with a curvature on one side, resulting in the formation of a deep hydrophobic pocket. All six of the cysteine residues in the monomeric subunit participate in the formation of three intramolecular disulfide bonds. Other interesting features of EPDR1 include two asparagine residues with glycosylation and a Ca2+-binding site. The EPDR1 fold is very similar to the folds of bacterial VioE and LolA/LolB, which also use a similar hydrophobic pocket for their respective functions as a hydrophobic substrate-binding enzyme and a lipoprotein carrier, respectively. A further fatty-acid binding assay using EPDR1 suggests that it indeed binds to fatty acids, presumably via this pocket. Additional interactome analysis of EPDR1 showed that EPDR1 interacts with insulin-like growth factor 2 receptor and flotillin proteins, which are known to be involved in protein and vesicle translocation. Full Article text
ela Symmetry-mode analysis for intuitive observation of structure–property relationships in the lead-free antiferroelectric (1−x)AgNbO3–xLiTaO3 By scripts.iucr.org Published On :: 2019-06-21 Functional materials are of critical importance to electronic and smart devices. A deep understanding of the structure–property relationship is essential for designing new materials. In this work, instead of utilizing conventional atomic coordinates, a symmetry-mode approach is successfully used to conduct structure refinement of the neutron powder diffraction data of (1−x)AgNbO3–xLiTaO3 (0 ≤ x ≤ 0.09) ceramics. This provides rich structural information that not only clarifies the controversial symmetry assigned to pure AgNbO3 but also explains well the detailed structural evolution of (1−x)AgNbO3–xLiTaO3 (0 ≤ x ≤ 0.09) ceramics, and builds a comprehensive and straightforward relationship between structural distortion and electrical properties. It is concluded that there are four relatively large-amplitude major modes that dominate the distorted Pmc21 structure of pure AgNbO3, namely a Λ3 antiferroelectric mode, a T4+ a−a−c0 octahedral tilting mode, an H2 a0a0c+/a0a0c− octahedral tilting mode and a Γ4− ferroelectric mode. The H2 and Λ3 modes become progressively inactive with increasing x and their destabilization is the driving force behind the composition-driven phase transition between the Pmc21 and R3c phases. This structural variation is consistent with the trend observed in the measured temperature-dependent dielectric properties and polarization–electric field (P-E) hysteresis loops. The mode crystallography applied in this study provides a strategy for optimizing related properties by tuning the amplitudes of the corresponding modes in these novel AgNbO3-based (anti)ferroelectric materials. Full Article text
ela X-ray photon correlation spectroscopy of protein dynamics at nearly diffraction-limited storage rings By scripts.iucr.org Published On :: 2019-07-11 This study explores the possibility of measuring the dynamics of proteins in solution using X-ray photon correlation spectroscopy (XPCS) at nearly diffraction-limited storage rings (DLSRs). We calculate the signal-to-noise ratio (SNR) of XPCS experiments from a concentrated lysozyme solution at the length scale of the hydrodynamic radius of the protein molecule. We take into account limitations given by the critical X-ray dose and find expressions for the SNR as a function of beam size, sample-to-detector distance and photon energy. Specifically, we show that the combined increase in coherent flux and coherence lengths at the DLSR PETRA IV yields an increase in SNR of more than one order of magnitude. The resulting SNR values indicate that XPCS experiments of biological macromolecules on nanometre length scales will become feasible with the advent of a new generation of synchrotron sources. Our findings provide valuable input for the design and construction of future XPCS beamlines at DLSRs. Full Article text
ela Magnetic field-induced magnetostructural transition and huge tensile superelasticity in an oligocrystalline Ni–Cu–Co–Mn–In microwire By scripts.iucr.org Published On :: 2019-07-11 Meta-magnetic shape-memory alloys combine ferroelastic order with ferromagnetic order and exhibit attractive multifunctional properties, but they are extremely brittle, showing hardly any tensile deformability, which impedes their practical application. Here, for the first time, an Ni–Cu–Co–Mn–In microwire has been developed that simultaneously exhibits a magnetic field-induced first-order meta-magnetic phase transition and huge tensile superelasticity. A temperature-dependent in situ synchrotron high-energy X-ray diffraction investigation reveals that the martensite of this Ni43.7Cu1.5Co5.1Mn36.7In13 microwire shows a monoclinic six-layered modulated structure and the austenite shows a cubic structure. This microwire exhibits an oligocrystalline structure with bamboo grains, which remarkably reduces the strain incompatibility during deformation and martensitic transformation. As a result, huge tensile superelasticity with a recoverable strain of 13% is achieved in the microwire. This huge tensile superelasticity is in agreement with our theoretical calculations based on the crystal structure and lattice correspondence of austenite and martensite and the crystallographic orientation of the grains. Owing to the large magnetization difference between austenite and martensite, a pronounced magnetic field-induced magnetostructural transition is achieved in the microwire, which could give rise to a variety of magnetically driven functional properties. For example, a large magnetocaloric effect with an isothermal entropy change of 12.7 J kg−1 K−1 (under 5 T) is obtained. The realization of magnetic-field- and tensile-stress-induced structural transformations in the microwire may pave the way for exploiting the multifunctional properties under the coupling of magnetic field and stress for applications in miniature multifunctional devices. Full Article text
ela Characterizing crystalline defects in single nanoparticles from angular correlations of single-shot diffracted X-rays By scripts.iucr.org Published On :: 2020-02-19 Characterizing and controlling the uniformity of nanoparticles is crucial for their application in science and technology because crystalline defects in the nanoparticles strongly affect their unique properties. Recently, ultra-short and ultra-bright X-ray pulses provided by X-ray free-electron lasers (XFELs) opened up the possibility of structure determination of nanometre-scale matter with Å spatial resolution. However, it is often difficult to reconstruct the 3D structural information from single-shot X-ray diffraction patterns owing to the random orientation of the particles. This report proposes an analysis approach for characterizing defects in nanoparticles using wide-angle X-ray scattering (WAXS) data from free-flying single nanoparticles. The analysis method is based on the concept of correlated X-ray scattering, in which correlations of scattered X-ray are used to recover detailed structural information. WAXS experiments of xenon nanoparticles, or clusters, were conducted at an XFEL facility in Japan by using the SPring-8 Ångstrom compact free-electron laser (SACLA). Bragg spots in the recorded single-shot X-ray diffraction patterns showed clear angular correlations, which offered significant structural information on the nanoparticles. The experimental angular correlations were reproduced by numerical simulation in which kinematical theory of diffraction was combined with geometric calculations. We also explain the diffuse scattering intensity as being due to the stacking faults in the xenon clusters. Full Article text
ela Expression and interactions of stereochemically active lone pairs and their relation to structural distortions and thermal conductivity By scripts.iucr.org Published On :: 2020-03-31 In chemistry, stereochemically active lone pairs are typically described as an important non-bonding effect, and recent interest has centred on understanding the derived effect of lone pair expression on physical properties such as thermal conductivity. To manipulate such properties, it is essential to understand the conditions that lead to lone pair expression and provide a quantitative chemical description of their identity to allow comparison between systems. Here, density functional theory calculations are used first to establish the presence of stereochemically active lone pairs on antimony in the archetypical chalcogenide MnSb2O4. The lone pairs are formed through a similar mechanism to those in binary post-transition metal compounds in an oxidation state of two less than their main group number [e.g. Pb(II) and Sb(III)], where the degree of orbital interaction (covalency) determines the expression of the lone pair. In MnSb2O4 the Sb lone pairs interact through a void space in the crystal structure, and their their mutual repulsion is minimized by introducing a deflection angle. This angle increases significantly with decreasing Sb—Sb distance introduced by simulating high pressure, thus showing the highly destabilizing nature of the lone pair interactions. Analysis of the chemical bonding in MnSb2O4 shows that it is dominated by polar covalent interactions with significant contributions both from charge accumulation in the bonding regions and from charge transfer. A database search of related ternary chalcogenide structures shows that, for structures with a lone pair (SbX3 units), the degree of lone pair expression is largely determined by whether the antimony–chalcogen units are connected or not, suggesting a cooperative effect. Isolated SbX3 units have larger X—Sb—X bond angles and therefore weaker lone pair expression than connected units. Since increased lone pair expression is equivalent to an increased orbital interaction (covalent bonding), which typically leads to increased heat conduction, this can explain the previously established correlation between larger bond angles and lower thermal conductivity. Thus, it appears that for these chalcogenides, lone pair expression and thermal conductivity may be related through the degree of covalency of the system. Full Article text
ela New zeolite-like RUB-5 and its related hydrous layer silicate RUB-6 structurally characterized by electron microscopy By scripts.iucr.org Published On :: 2020-04-21 This study made use of a recently developed combination of advanced methods to reveal the atomic structure of a disordered nanocrystalline zeolite using exit wave reconstruction, automated diffraction tomography, disorder modelling and diffraction pattern simulation. By applying these methods, it was possible to determine the so far unknown structures of the hydrous layer silicate RUB-6 and the related zeolite-like material RUB-5. The structures of RUB-5 and RUB-6 contain the same dense layer-like building units (LLBUs). In the case of RUB-5, these building units are interconnected via additional SiO4/2 tetrahedra, giving rise to a framework structure with a 2D pore system consisting of intersecting 8-ring channels. In contrast, RUB-6 contains these LLBUs as separate silicate layers terminated by silanol/siloxy groups. Both RUB-6 and RUB-5 show stacking disorder with intergrowths of different polymorphs. The unique structure of RUB-6, together with the possibility for an interlayer expansion reaction to form RUB-5, make it a promising candidate for interlayer expansion with various metal sources to include catalytically active reaction centres. Full Article text
ela Inelastic scattering and solvent scattering reduce dynamical diffraction in biological crystals By scripts.iucr.org Published On :: 2019-08-01 Multi-slice simulations of electron diffraction by three-dimensional protein crystals have indicated that structure solution would be severely impeded by dynamical diffraction, especially when crystals are more than a few unit cells thick. In practice, however, dynamical diffraction turned out to be less of a problem than anticipated on the basis of these simulations. Here it is shown that two scattering phenomena, which are usually omitted from multi-slice simulations, reduce the dynamical effect: solvent scattering reduces the phase differences within the exit beam and inelastic scattering followed by elastic scattering results in diffusion of dynamical scattering out of Bragg peaks. Thus, these independent phenomena provide potential reasons for the apparent discrepancy between theory and practice in protein electron crystallography. Full Article text
ela High-energy-resolution inelastic X-ray scattering spectrometer at beamline 30-ID of the Advanced Photon Source By scripts.iucr.org Published On :: 2020-04-06 Inelastic X-ray scattering is a powerful and versatile technique for studying lattice dynamics in materials of scientific and technological importance. In this article, the design and capabilities of the momentum-resolved high-energy-resolution inelastic X-ray spectrometer (HERIX) at beamline 30-ID of the Advanced Photon Source are reported. The instrument operates at 23.724 keV and has an energy resolution of 1.3–1.7 meV. It can accommodate momentum transfers of up to 72 nm−1, at a typical X-ray flux of 4.5 × 109 photons s−1 meV−1 at the sample. A suite of in situ sample environments are provided, including high pressure, static magnetic fields and uniaxial strains, all at high or cryogenic temperatures. Full Article text
ela A design of resonant inelastic X-ray scattering (RIXS) spectrometer for spatial- and time-resolved spectroscopy By scripts.iucr.org Published On :: 2020-04-16 The optical design of a Hettrick–Underwood-style soft X-ray spectrometer with Wolter type 1 mirrors is presented. The spectrometer with a nominal length of 3.1 m can achieve a high resolving power (resolving power higher than 10000) in the soft X-ray regime when a small source beam (<3 µm in the grating dispersion direction) and small pixel detector (5 µm effective pixel size) are used. Adding Wolter mirrors to the spectrometer before its dispersive elements can realize the spatial imaging capability, which finds applications in the spectroscopic studies of spatially dependent electronic structures in tandem catalysts, heterostructures, etc. In the pump–probe experiments where the pump beam perturbs the materials followed by the time-delayed probe beam to reveal the transient evolution of electronic structures, the imaging capability of the Wolter mirrors can offer the pixel-equivalent femtosecond time delay between the pump and probe beams when their wavefronts are not collinear. In combination with some special sample handing systems, such as liquid jets and droplets, the imaging capability can also be used to study the time-dependent electronic structure of chemical transformation spanning multiple time domains from microseconds to nanoseconds. The proposed Wolter mirrors can also be adopted to the existing soft X-ray spectrometers that use the Hettrick–Underwood optical scheme, expanding their capabilities in materials research. Full Article text
ela Saturation and self-absorption effects in the angle-dependent 2p3d resonant inelastic X-ray scattering spectra of Co3+ By journals.iucr.org Published On :: It is shown that the 2p3d resonant inelastic X-ray scattering intensity is distorted by saturation and self-absorption effects, i.e. by incident-energy-dependent saturation and by emission-energy-dependent self-absorption. Full Article text
ela Correlative vibrational spectroscopy and 2D X-ray diffraction to probe the mineralization of bone in phosphate-deficient mice By scripts.iucr.org Published On :: 2019-08-23 Bone crystallite chemistry and structure change during bone maturation. However, these properties of bone can also be affected by limited uptake of the chemical constituents of the mineral by the animal. This makes probing the effect of bone-mineralization-related diseases a complicated task. Here it is shown that the combination of vibrational spectroscopy with two-dimensional X-ray diffraction can provide unparalleled information on the changes in bone chemistry and structure associated with different bone pathologies (phosphate deficiency) and/or health conditions (pregnancy, lactation). Using a synergistic analytical approach, it was possible to trace the effect that changes in the remodelling regime have on the bone mineral chemistry and structure in normal and mineral-deficient (hypophosphatemic) mice. The results indicate that hypophosphatemic mice have increased bone remodelling, increased carbonate content and decreased crystallinity of the bone mineral, as well as increased misalignment of crystallites within the bone tissue. Pregnant and lactating mice that are normal and hypophosphatemic showed changes in the chemistry and misalignment of the apatite crystals that can be related to changes in remodelling rates associated with different calcium demand during pregnancy and lactation. Full Article text
ela Recent developments in the Inorganic Crystal Structure Database: theoretical crystal structure data and related features By scripts.iucr.org Published On :: 2019-09-23 The Inorganic Crystal Structure Database (ICSD) is the world's largest database of fully evaluated and published crystal structure data, mostly obtained from experimental results. However, the purely experimental approach is no longer the only route to discover new compounds and structures. In the past few decades, numerous computational methods for simulating and predicting structures of inorganic solids have emerged, creating large numbers of theoretical crystal data. In order to take account of these new developments the scope of the ICSD was extended in 2017 to include theoretical structures which are published in peer-reviewed journals. Each theoretical structure has been carefully evaluated, and the resulting CIF has been extended and standardized. Furthermore, a first classification of theoretical data in the ICSD is presented, including additional categories used for comparison of experimental and theoretical information. Full Article text
ela Diffraction-based determination of single-crystal elastic constants of polycrystalline titanium alloys By scripts.iucr.org Published On :: 2019-09-20 Single-crystal elastic constants have been derived by lattice strain measurements using neutron diffraction on polycrystalline Ti-6Al-4V, Ti-6Al-2Sn-4Zr-6Mo and Ti-3Al-8V-6Cr-4Zr-4Mo alloy samples. A variety of model approximations for the grain-to-grain interactions, namely approaches by Voigt, Reuss, Hill, Kroener, de Wit and Matthies, including texture weightings, have been applied and compared. A load-transfer approach for multiphase alloys was also implemented and the results are compared with single-phase data. For the materials under investigation, the results for multiphase alloys agree well with the results for single-phase materials in the corresponding phases. In this respect, all eight elastic constants in the dual-phase Ti-6Al-2Sn-4Zr-6Mo alloy have been derived for the first time. Full Article text
ela High-resolution phonon energy shift measurements with the inelastic neutron spin echo technique By journals.iucr.org Published On :: An energy resolution of <10 µeV for the measurement of phonon energy change is achieved with the inelastic neutron spin echo technique on a conventional neutron triple-axis spectrometer. Full Article text
ela Small-angle neutron scattering (SANS) and spin-echo SANS measurements reveal the logarithmic fractal structure of the large-scale chromatin organization in HeLa nuclei By journals.iucr.org Published On :: This paper reports on the two-scale fractal structure of chromatin organization in the nucleus of the HeLa cell. Full Article text
ela Unit-cell response of tetragonal hen egg white lysozyme upon controlled relative humidity variation By journals.iucr.org Published On :: The effects of relative humidity on a tetragonal crystal form of hen egg white lysozyme are studied via in situ laboratory X-ray powder diffraction. Full Article text
ela job related post for Forensic Analyst By www.bleepingcomputer.com Published On :: 2019-07-24T02:05:24-05:00 Full Article
ela Two closely related bee species discovered far apart in Panama and northern Colombia By insider.si.edu Published On :: Thu, 20 Oct 2011 14:34:20 +0000 Our studies of the genetic relationships between these bees tells us that they originated in the Amazon about 22 million years ago and that they moved north into Central America before 3 million years ago. The post Two closely related bee species discovered far apart in Panama and northern Colombia appeared first on Smithsonian Insider. Full Article Animals Science & Nature bees Colombia South America
ela Alligator relatives crossed ancient seaway By insider.si.edu Published On :: Mon, 04 Mar 2013 19:16:46 +0000 The uplift of the Isthmus of Panama 2.6 million years ago formed a land-bridge that has long thought to be the crucial step in the […] The post Alligator relatives crossed ancient seaway appeared first on Smithsonian Insider. Full Article Dinosaurs & Fossils Marine Science Research News Science & Nature climate change geology prehistoric reptiles Tropical Research Institute
ela Too valuable to lose: Extinct relative reveals rarity of last two remaining monk seal species By insider.si.edu Published On :: Wed, 14 May 2014 13:23:30 +0000 A newly released study focusing on an extinct species, the Caribbean monk seal (Monachus tropicalis), has revealed just how evolutionarily unique its only two living […] The post Too valuable to lose: Extinct relative reveals rarity of last two remaining monk seal species appeared first on Smithsonian Insider. Full Article Animals Dinosaurs & Fossils Marine Science Research News Science & Nature Caribbean climate change conservation conservation biology endangered species extinction mammals National Museum of Natural History
ela Happy Thanksgiving! Here are 25 fun turkey-related objects in Smithsonian collections! By insider.si.edu Published On :: Mon, 20 Nov 2017 16:57:10 +0000 “Probably no genus of birds in the American avifauna has received the amount of attention that has been bestowed upon the turkeys…there has been no […] The post Happy Thanksgiving! Here are 25 fun turkey-related objects in Smithsonian collections! appeared first on Smithsonian Insider. Full Article Animals History & Culture Science & Nature
ela Crystal and solution structures of fragments of the human leucocyte common antigen-related protein By scripts.iucr.org Published On :: 2020-04-15 Leucocyte common antigen-related protein (LAR) is a post-synaptic type I transmembrane receptor protein that is important for neuronal functionality and is genetically coupled to neuronal disorders such as attention deficit hyperactivity disorder (ADHD). To understand the molecular function of LAR, structural and biochemical studies of protein fragments derived from the ectodomain of human LAR have been performed. The crystal structure of a fragment encompassing the first four FNIII domains (LARFN1–4) showed a characteristic L shape. SAXS data suggested limited flexibility within LARFN1–4, while rigid-body refinement of the SAXS data using the X-ray-derived atomic model showed a smaller angle between the domains defining the L shape compared with the crystal structure. The capabilities of the individual LAR fragments to interact with heparin was examined using microscale thermophoresis and heparin-affinity chromatography. The results showed that the three N-terminal immunoglobulin domains (LARIg1–3) and the four C-terminal FNIII domains (LARFN5–8) both bound heparin, while LARFN1–4 did not. The low-molecular-weight heparin drug Innohep induced a shift in hydrodynamic volume as assessed by size-exclusion chromatography of LARIg1–3 and LARFN5–8, while the chemically defined pentameric heparin drug Arixtra did not. Together, the presented results suggest the presence of an additional heparin-binding site in human LAR. Full Article text
ela Maturation and phenotype of pathophysiological neuronal excitability of human cells in tau-related dementia [RESEARCH ARTICLE] By jcs.biologists.org Published On :: 2020-04-16T06:39:33-07:00 Olga Kopach, Noemi Esteras, Selina Wray, Dmitri A. Rusakov, and Andrey Y. AbramovFrontotemporal dementia and parkinsonism (FTDP-17) caused by the 10+16 splice-site mutation in the MAPT provides an established platform to model tau-related dementia in vitro. Human iPSC-derived neurons have been shown to recapitulate the neurodevelopmental profile of tau pathology during in vitro corticogenesis as in the adult human brain. However, the neurophysiological phenotype of these cells has remained unknown, leaving unanswered questions over the functional relevance and the gnostic power of this disease model. Here we used electrophysiology to explore the membrane properties and intrinsic excitability of the generated neurons to find that human cells mature by ~150 days of neurogenesis to become compatible with matured cortical neurons. In earlier FTDP-17, neurons, however, exhibited a depolarized resting membrane potential associated with increased resistance and reduced voltage-gated Na+- and K+-channel-mediated conductance. The Nav1.6 protein was reduced in FTDP-17. These led to a reduced cell capability of induced firing and changed action potential waveform in FTDP-17. The revealed neuropathology may thus contribute to the clinicopathological profile of the disease. This sheds new light on the significance of human models of dementia in vitro. Full Article
ela Scientists uncover relationship between lavas erupting on sea floor and deep-carbon cycle By insider.si.edu Published On :: Fri, 03 May 2013 00:23:49 +0000 Scientists from the Smithsonian and the University of Rhode Island have found unsuspected linkages between the oxidation state of iron in volcanic rocks and variations […] The post Scientists uncover relationship between lavas erupting on sea floor and deep-carbon cycle appeared first on Smithsonian Insider. Full Article Earth Science Marine Science Research News Science & Nature geology National Museum of Natural History
ela Relativistic correction of atomic scattering factors for high-energy electron diffraction By scripts.iucr.org Published On :: 2019-10-24 Relativistic electron diffraction depends on linear and quadratic terms in the electric potential, the latter being neglected in the frequently used relativistically corrected Schrödinger equation. The quadratic electric potential term modifies atomic scattering amplitudes in particular for large-angle scattering and backscattering. The respective correction increases with increasing scattering angle, increasing atomic number and increasing kinetic energy. Conventional tabulations for electron scattering and its large-angle extrapolations can be amended in closed form by a universal correction based on the screened Coulomb potential squared. Full Article text
ela Elastic propagation of fast electron vortices through amorphous materials By scripts.iucr.org Published On :: 2019-11-04 This work studies the elastic scattering behavior of electron vortices when propagating through amorphous samples. A formulation of the multislice approach in cylindrical coordinates is used to theoretically investigate the redistribution of intensity between different angular momentum components due to scattering. To corroborate and elaborate on our theoretical results, extensive numerical simulations are performed on three model systems (Si3N4, Fe0.8B0.2, Pt) for a wide variety of experimental parameters to quantify the purity of the vortices, the net angular momentum transfer, and the variability of the results with respect to the random relative position between the electron beam and the scattering atoms. These results will help scientists to further improve the creation of electron vortices and enhance applications involving them. Full Article text
ela Smithsonian volcanologist Rick Wunderman talks about volcanos and the recent eruptions in Iceland By insider.si.edu Published On :: Fri, 30 Apr 2010 00:11:41 +0000 Rick Wunderman of the Global Volcanism Program at the Smithsonian's National Museum of Natural History talks about the current volcanic activity in Iceland. The post Smithsonian volcanologist Rick Wunderman talks about volcanos and the recent eruptions in Iceland appeared first on Smithsonian Insider. Full Article Research News Science & Nature Video climate change geology National Museum of Natural History rocks & minerals volcanoes
ela Creating a dictionary: Gabriela Pérez Báez, Curator of Linguistics By insider.si.edu Published On :: Thu, 17 May 2012 18:18:26 +0000 The post Creating a dictionary: Gabriela Pérez Báez, Curator of Linguistics appeared first on Smithsonian Insider. Full Article Anthropology Science & Nature Video National Museum of Natural History
ela Elastic – Opening Credits: True Detective By insider.si.edu Published On :: Fri, 05 Aug 2016 15:11:27 +0000 Elastic has created some of the most intriguing title sequences in recent television history. Directed by Patrick Clair (Australian b. 1982), the opening credits for […] The post Elastic – Opening Credits: True Detective appeared first on Smithsonian Insider. Full Article Art History & Culture Video Cooper Hewitt
ela Reagan and Gorbachev’s Relationship Warmed Cold War Tensions By insider.si.edu Published On :: Mon, 01 May 2017 15:17:44 +0000 The post Reagan and Gorbachev’s Relationship Warmed Cold War Tensions appeared first on Smithsonian Insider. Full Article History & Culture Video National Air and Space Museum
ela Alan Alda: Relating Through Improvisation By insider.si.edu Published On :: Tue, 14 Nov 2017 13:14:52 +0000 As the host of PBS’s “Scientific American Frontiers,” Alan Alda has interviewed scientists, physicists, neuroscientists, and academics. Forging a connection with these guests through freewheeling […] The post Alan Alda: Relating Through Improvisation appeared first on Smithsonian Insider. Full Article History & Culture Science & Nature Video