By James C. Lin
The goal of this fourth quantity within the sequence Advances in Electromagnetic Fields in residing structures remains just like earlier volumes: so as to add a few major advances during this sector of study to medical literature.
In normal, the interplay of electromagnetic fields and waves with organic platforms is frequency-dependent. in addition, the mechanisms of interplay for fields at low frequencies are very diverse from these at excessive frequencies. whereas major advances are being made on many fronts, a distinct emphasis of this quantity is on present and destiny biomedical functions of electromagnetic fields, ranging in frequency from quasi-static to the optical area. every one bankruptcy comprises a accomplished presentation of an issue of present curiosity and becoming significance.
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Extra info for Advances in Electromagnetic Fields in Living Systems
Springer, New York, 585–588. Leeuwen P. , 2001a , Bestimmung der fetalen Herzzeitenintervalle anhand der Magnetokardiographie: Einﬂuss der Anzahl der evaluierten Messkan¨ale, Biomed. , 43 Suppl 1:256–257. Leeuwen P. , Hatzmann W. , 2001b , Assessment of intra-uterine growth retardation by fetal magnetocardiography, in: Biomag2000 Proc. 12th Int Conf on Biomagnetism, pp. 603–606. T. , 1999, Noninvasive in utero assessment of PR and QRS intervals from the fetal magnetocardiogram, Early Hum. , 54(3), 235–243.
XP (t)}. The elements o f the vector x possess diffuse and complex patterns of correlations between them. Independent component analysis is a method to remove those correlations by multiplying x with a matrix as follows: U = Wx (4) The goal is to ﬁnd a matrix W such that the components of U maximally are independent. The infomax algorithm, which minimizes the joint entropy, is used for extracting the fetal signals. Results of independent component analysis applied to fetal MCG are shown in Fig.
Yoshimoto, M. Kotani, S. Kuriki, H. Karibe and N. , Tohoku University Press, Sendai, pp. 1070–1073. 40 Maria J. Peters et al. J. , 2001a , Extracting reliable data from the fetal MCG, in: Biomag2000 Proceedings 12th Int Conf on Biomagnetism, pp. 591–594. , Shigemitsu S.
Advances in Electromagnetic Fields in Living Systems by James C. Lin