Biomedical Engineering Reference
In-Depth Information
[104] I. B. Feldberg, N. J. Cronin, “A 9.2 GHz microwave applicator for the treatment
of menorrhagia,” IEEE MTT-S Dig ., Vol. 2, pp. 755-758, 1998.
[105] D. A. Hodgson, I. B. Feldberg, N. Sharp, et al., “Microwave endometrial ablation:
Development,
clinical trials and outcomes at three years,”
Br.
J.
Obstet.
Gynaecol. , Vol. 106, pp. 684-694, 1999.
[106] N. C. Sharp, N. Cronin, I. Feldberg, et al., “Microwaves for menorrhagia: A new
fast technique for endometrial ablation,” Lancet , Vol. 346, pp. 1003-1004, 1995.
[107] M. P. Milligan, G. A. Etokowo, “Microwave endometrial ablation for menorrha-
gia,” J. Obstet. Gynaecol ., Vol. 19, pp. 496-499, 1999.
[108] T. Fulop, I. Rakoczi, I. Barna, “NovaSure TM impedance controlled endometrial
ablation system, long-term follow-up results,” 2nd World Congress on Contro-
versies in Obstetrics , Gynecology and Invertility , Modizzi Editore S.p.A—MED-
IMOND, 2001.
[109] J. Schepps, A. Rosen, “Microwave industry outlook—Wireless communications
in healthcare,” IEEE Trans Microwave Theory Tech ., Vol. 50, No. 3, pp. 1044-1045,
Mar. 2002.
[110] R. Bansal (Ed.), Handbook of Engineering Electromagnetics , New York: Marcel
Dekker, 2004.
[111] M. R. Tofighi, A. S. Daryoush, “Measurement techniques,” in R. Bansal (Ed.),
Handbook of Engineering Elecromagnetics , New York: Marcel Dekker, 2004.
[112] F. Sterzer, R. Paglione, F. Wozniak, et al., “A self-balancing microwave radiome-
ter for non-invasively measuring the temperature of subcutaneous tissues during
localized hyperthermia treatments of cancer,” IEEE MTT-S Int. Microwave
Symp. Dig. , Vol. 1, pp. 438-440, June 1982.
[113] R. W. Paglione, “Portable diagnostic radiometer,” RCA Rev. , Vol. 47, Dec. 1986.
[114] F. Sterzer, “Microwave radiometers for non-invasive measurements of subsur-
face tissue temperatures,” J. Automedica , Vol. 8, pp. 203-211, 1987.
[115] D. D. Mawhinney, T. Kresky, “Non-invasive physiological monitoring with
microwaves,” Proc. National Aerospace and Electronics Conference , Dayton, OH:
NAECON, 1986.
[116] J. Lin, et al., “Microwave apex-cardiography,” IEEE Trans. MTT , Vol. 27, No. 6,
June 1979.
[117] S. S. Stuchly et al., “Monitoring of arterial wall movement by microwave doppler
radar,” Proc. 1978 Symposium on Electromagnetic Fields in Biological Systems,
Ottawa, Canada, June 1978.
[118] I. Yamaura, “Measurements of 1.8-2.7 GHz microwave attenuation in the human
torso, “ IEEE Trans. MTT , Vol. 25, No. 8, pp. 707-710, Aug. 1977.
[119] C. C. Johnson, A. W. Guy, “Nonionizing electromagnetic wave effects in biologi-
cal materials and systems,” Proc . IEEE, Vol. 60, No. 6,
pp. 692-718, June
1972.
[120] I. Yamaura, “Mapping of microwave power transmitted through the human
thorax,” Proc. IEEE, Vol. 67, No. 8, pp. 1170-1171, Aug. 1979.
[121] A. Rosen, W. P. Santamore, “Method of measuring blood perfusion,” U.S. Patent
4,228,805, Oct. 21, 1980.
[122] F. A. Gibbs, Proc. Soc. Exper. Biol. Med. , Vol. 31, pp. 141-147, 1933.
Search WWH ::




Custom Search