0000000000847268

AUTHOR

M. Muller

Human Immunodeficiency Virus Continuum of Care in 11 European Union Countries at the End of 2016 Overall and by Key Population: Have We Made Progress?

Abstract Background High uptake of antiretroviral treatment (ART) is essential to reduce human immunodeficiency virus (HIV) transmission and related mortality; however, gaps in care exist. We aimed to construct the continuum of HIV care (CoC) in 2016 in 11 European Union (EU) countries, overall and by key population and sex. To estimate progress toward the Joint United Nations Programme on HIV/AIDS (UNAIDS) 90-90-90 target, we compared 2016 to 2013 estimates for the same countries, representing 73% of the population in the region. Methods A CoC with the following 4 stages was constructed: number of people living with HIV (PLHIV); proportion of PLHIV diagnosed; proportion of those diagnosed …

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A study of the effect of molecular and aerosol conditions in the atmosphere on air fluorescence measurements at the Pierre Auger Observatory

The air fluorescence detector of the Pierre Auger Observatory is designed to perforin calorimetric measurements of extensive air showers created by Cosmic rays of above 10(18) eV. To correct these measurements for the effects introduced by atmospheric fluctuations, the Observatory contains a group Of monitoring instruments to record atmospheric conditions across the detector site, ail area exceeding 3000 km(2). The atmospheric data are used extensively in the reconstruction of air showers, and are particularly important for the correct determination of shower energies and the depths of shower maxima. This paper contains a summary of the molecular and aerosol conditions measured at the Pierr…

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TRANS-FUSIMO – A novel system for treatment support for FUS applications in moving abdominal organs

Computer based treatemnt support for FUS therapy of moviving abdominal organs is essential due to great intrinsic challenges: the target moves due to breathing and may be occluded by the rib cage. In the EU project TRANS-FUSIMO we have developed a sophisticated software system that connects to a FUS transducer and an MRI. This enables physicians to conduct safe, effective and efficient ablation of tumors in the moving liver.

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Les maladies du bois de la vigne : recherches pour apporter des solutions de lutte aux Professionnels

Les travaux réalisés sur deux maladies du bois de la vigne (esca, BDA) ont montré leur effet sur la récolte et la croissance de la pousse printanière qui était annulé deux années après l’apparition des symptômes. Ces maladies ont aussi conduit à des modifications des propriétés analytiques des moûts et des vins. Les vins issus de raisins collectés sur des ceps symptomatiques n’étaient pas toujours les plus dépréciés. Les études effectuées sur le cycle biologique ont permis de mettre au point des outils pour différencier les individus de deux espèces de Botryosphaeriaceae et des outils d’hybridation in situ qui permettront de les localiser précisément dans les tissus. Elles ont aussi identif…

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THz electrical writing speed in an antiferromagnetic memory

The speed of writing of state-of-the-art ferromagnetic memories is physically limited by an intrinsic GHz threshold. Recently, an alternative research direction has been initiated by realizing memory devices based on antiferromagnets in which spin directions periodically alternate from one atomic lattice site to the next. In our work we experimentally demonstrate at room temperature that the speed of reversible electrical writing in a memory device can be scaled up to THz using an antiferromagnet. Efficient current-induced spin-torque mechanism is responsible for the switching in our memory devices throughout the twelve orders of magnitude range of writing speeds from Hz to THz. Our work op…

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Experiments with a fiber-based optical dipole trap for cold Cs-Atoms

Pulling a standard optical fiber to a diameter of less than the wavelength of the guided light causes the light field to project slightly over the fiber boundaries in form of an evanescent wave. The latter can be used for light-matter-interactions in the vicinity of the surface of the fiber and therefore allows to perform quantum optic experiments.

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CCDC 774616: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 775333: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, A.Valkonen, K.Rissanen|2010|CrystEngComm|12|3698|doi:10.1039/c003636f

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CCDC 745351: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, A.Valkonen, K.Rissanen|2010|CrystEngComm|12|3698|doi:10.1039/c003636f

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CCDC 795078: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, J.Sackmann, A.Hoffmann, F.Dierkes, A.Valkonen, K.Rissanen|2010|Dalton Trans.|39|11329|doi:10.1039/c0dt00766h

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CCDC 229670: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 745350: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, A.Valkonen, K.Rissanen|2010|CrystEngComm|12|3698|doi:10.1039/c003636f

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CCDC 229675: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 779161: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 752835: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 229674: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 752838: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 229671: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 752830: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 229676: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 795077: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, J.Sackmann, A.Hoffmann, F.Dierkes, A.Valkonen, K.Rissanen|2010|Dalton Trans.|39|11329|doi:10.1039/c0dt00766h

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CCDC 752832: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 752836: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 745348: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, A.Valkonen, K.Rissanen|2010|CrystEngComm|12|3698|doi:10.1039/c003636f

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CCDC 229669: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 229673: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 745349: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, A.Valkonen, K.Rissanen|2010|CrystEngComm|12|3698|doi:10.1039/c003636f

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CCDC 752839: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 229672: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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CCDC 752837: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 774615: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 752831: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 774617: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 779159: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 779160: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 229677: Experimental Crystal Structure Determination

Related Article: M.C.Grunert, J.Schweifer, P.Weinberger, W.Linert, K.Mereiter, G.Hilscher, M.Muller, G.Wiesinger, P.J.van Koningsbruggen|2004|Inorg.Chem.|43|155|doi:10.1021/ic034452z

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Elucidating the aryl hydrocarbon receptor antagonism from a chemical-structural perspective

The aryl hydrocarbon receptor (AhR) plays an important role in several biological processes such as reproduction, immunity and homoeostasis. However, little is known on the chemical-structural and physicochemical features that influence the activity of AhR antagonistic modulators. In the present report, in vitro AhR antagonistic activity evaluations, based on a chemical-activated luciferase gene expression (AhR-CALUX) bioassay, and an extensive literature review were performed with the aim of constructing a structurally diverse database of contaminants and potentially toxic chemicals. Subsequently, QSAR models based on Linear Discriminant Analysis and Logistic Regression, as well as two tox…

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CCDC 774614: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, V.Gossen, T.Peters, A.Hoffmann, G.Raabe, A.Valkonen, K.Rissanen|2010|Chem.-Eur.J.|16|12446|doi:10.1002/chem.201001534

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CCDC 795076: Experimental Crystal Structure Determination

Related Article: M.Muller, M.Albrecht, J.Sackmann, A.Hoffmann, F.Dierkes, A.Valkonen, K.Rissanen|2010|Dalton Trans.|39|11329|doi:10.1039/c0dt00766h

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CCDC 752833: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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CCDC 752834: Experimental Crystal Structure Determination

Related Article: M.Albrecht, M.Muller, O.Mergel, K.Rissanen, A.Valkonen|2010|Chem.-Eur.J.|16|5062|doi:10.1002/chem.200903016

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