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Titlebook: High-Tc SQUIDs for Biomedical Applications: Immunoassays, Magnetoencephalography, and Ultra-Low Fiel; Fredrik Öisjöen Book 2013 Springer-V

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978-3-642-43401-3Springer-Verlag Berlin Heidelberg 2013
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High-Tc SQUIDs for Biomedical Applications: Immunoassays, Magnetoencephalography, and Ultra-Low Fiel978-3-642-31356-1Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Conclusions,ance. The noise of the sensors is an important factor since it affects the SNR of any measurement. This leads to e.g. faster MNP measurements (for immunoassays), better localization of MEG sources, and higher resolution in ULF-MRI.
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Fredrik ÖisjöenNominated as an outstanding PhD thesis by Chalmers University of Technology.Describe the development of high-Tc SQUID systems and demonstrate their feasibility for biomedical applications.Open the way
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Ultra Low Field Magnetic Resonance Imaging,In this chapter the ongoing effort to develop a system for magnetic resonance imaging in ultra-low magnetic fields is discussed. The following sections will introduce the concepts of the technique along with some background. The present status of our system will be described along with some preliminary results.
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