Magnetospinography: Instruments and Application to Functional Imaging of Spinal Cords
Author:
Affiliation:
1. Applied Electronics Laboratory, Kanazawa Institute of Technology
2. Tokyo Medical and Dental University
3. Tokyo Metropolitan University
4. Yokogawa Electric Corp.
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Link
https://www.jstage.jst.go.jp/article/transele/E96.C/3/E96.C_326/_pdf
Reference18 articles.
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2. [2] S. Kawabata, H. Komori, K. Mochida, H. Ohkubo, and K. Shinomiya, “Visualization of conductive spinal cord activity using a bio-magnetometer,” Spine, vol.27, pp.475-479, 2003.
3. [3] S. Kuriki and Y. Mizutani, “Magnetic responses evoked in cervical cord and brain by somatic stimulation,” in Biomagnetism 87, ed. K. Atsumi, M. Kotani, S. Ueno, T. Katila, and S.J. Williamson, pp.50-57, Tokyo Denki University Press, 1988.
4. [4] G. Curio, S.N. Erné, J. Sandfort, J. Scheer, R. Stehr, and L. Trahms, “Exploratory mapping of evoked neuromagnetic activity from human peripheral nerve, brachial plexus and spinal cord,” Electroencephalography Clin Neurophysiol, vol.81, pp.450-453, 1991.
5. [5] B.-M. Mackert, M. Burghoff, L.-H. Hiss, M. Nordahn, P. Marx, L. Trahms, and G. Curio, “Magnetoneurography of evoked compound action currents in human cervical nerve roots,” Clin Neurophysiol, vol.112, pp.330-335, 2001.
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