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Titlebook: Structural Proteomics; High-Throughput Meth Raymond J. Owens Book 2015Latest edition Springer Science+Business Media New York 2015 Bioinfor

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High-Throughput Studies of Protein Shapes and Interactions by Synchrotron Small-Angle X-Ray Scatteriing have reduced data acquisition times to the millisecond range and the application of automated methods have allowed data processing and low resolution shape modelling to be completed within minutes. These developments have paved the way for high-throughput studies that generate significant quanti
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Marco Punta,István Simon,Zsuzsanna Dosztányiscattering in the liver. The fundamentals of information entropy and an algorithmic scheme for ultrasound entropy imaging are then presented. Lastly, some examples of using ultrasound entropy imaging to grade hepatic steatosis and evaluate the risk of liver fibrosis in patients with significant hepa
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combined with each other, their capabilities may be more powerful in many applications. Furthermore, all can be used fused with other imaging modalities, such as computed tomography (CT), magnetic-resonance (MR), positron-emission-tomography (PET), or single-photon emission computerized tomography (
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Matthias Haffke,Martin Marek,Martin Pelosse,Marie-Laure Diebold,Uwe Schlattner,Imre Berger,Christophied by substantial experimental challenges, many of which become more onerous as the transducer frequency is increased. In this chapter, typical QAM technology and standard image formation methods are reviewed. Then, novel experimental and signal processing approaches are presented with the specific
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Elena Seiradake,Yuguang Zhao,Weixian Lu,A. Radu Aricescu,E. Yvonne Jonescombined with each other, their capabilities may be more powerful in many applications. Furthermore, all can be used fused with other imaging modalities, such as computed tomography (CT), magnetic-resonance (MR), positron-emission-tomography (PET), or single-photon emission computerized tomography (
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Vincent J. Fazio,Thomas S. Peat,Janet Newmanon Quantenkommunikationsnetzen mit Hilfe von Simulatoren auf der Grundlage klassischer Hardware und Software behandelt. Darüber hinaus werden in diesem Kapitel die wichtigsten derzeit verfügbaren Simulatoren, ihre Eigenschaften sowie ihre Vor- und Nachteile aufgeführt.
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