Advances in BiomagnetismSamuel J. Williamson |
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49 pages matching magnetocardiography in this book
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Contents
Biomagnetic Sources and Their Models invited | 1 |
Principles and Applications of SQUID Sensors invited | 19 |
Fundamentals of Neuromagnetism invited | 33 |
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action potential activity Advances in Biomagnetism alpha amplitude analysis applied auditory cortex average axis Biomagnetism Edited brain calculated cardiac cell cerebellum channels clin clinical component conductivity cortical current dipole current source detected dewar dipolar Edited by S.J. electric electrodes Erné error estimated evoked field evoked response extrema Fenici field distributions field patterns Figure filtered flux frequency function gradiometer hemisphere human interval inverse inverse problem isofield isomagnetic map isopotential Katila latency magnetic field magnetite magnetocardiography magnetoencephalography magnetometer measurements median nerve method msec myocardial infarction nerve neuromagnetic neurons noise normal obtained order gradiometer orientation parameters particles patients peak pickup coil position potential probe recorded region repolarization Romani S.J. Williamson scalp sensor shown in Fig shows signal solution spatial SQUID stimulation subjects superconducting surface techniques temporal tinnitus tissue Tokyo Denki University vector ventricular visual wave waveform