Biomedical Engineering Reference
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10. Dietz, H.P.: Levator function before and after childbirth. Aust. N. Z. J. Obstet. Gynaecol. 44
(1), 19-23 (2004)
11. Li, X.S., et al. Effects of fetal head motion on pelvic floor mechanics . Comput. Biomech. Med.
Part 2, 129-137 (2010)
12. Dietz, H.P., Haylen, B.T., Broome, J.: Ultrasound in the quantification of female pelvic organ
prolapse. Ultrasound. Obst. Gyn. 18(5), 511-514 (2001)
13. Kruger, J.A., Dietz, H.P., Murphy, B.A.: Pelvic floor function in elite nulliparous athletes.
Ultrasound. Obst. Gyn. 30(1), 81-85 (2007)
14. Kruger, J.A., Murphy, B.A., Heap, S.W.: Alterations in levator ani morphology in elite
nulliparous athletes: A pilot study. Aust. N. Z. J. Obstet. Gynaecol. 45(1), 42-47 (2005)
15. Singh, K., Reid, W.M., Berger, L.A.: Magnetic resonance imaging of normal levator ani
anatomy and function. Obstet. Gynecol. 99(3), 433-438 (2002)
16. Lee, S.L., et al.: Statistical shape modelling of the levator ani with thickness variation.
MICCAI 3216, 258-265 (2004)
17. Kruger, J.A., et al.: Comparison of pelvic floor function in nulliparous elite athletes and
nulliparous controls. Neurourol. Urodyn. 25(6), 525-526 (2006)
18. Continuum mechanics, image analysis, signal processing and system identification.
Accessed date 11.08.2011, http://www.cmiss.org
19. Wold, S., Esbensen, K., Geladi, P.: Principal component analysis. Chemom. Intell. Lab. Syst.
2(1-3), 37-52 (1987)
20. Prautzsch, H., Boehm, W., Paluszny, M.: BĀ“zier and B-spline Techniques. Mathematics and
Visualization, xiv, p. 304. Springer, Berlin (2002)
21. Mahfouz, M., et al.: Automatic methods for characterization of sexual dimorphism of adult
femora: distal femur. Comput. Method. Biomech. Biomed. Eng. 10(6), 447-456 (2007)
22. Rosse, C., Gaddum-Rosse, P., Hollinshead, W.H. The pelvis. In: Hollinshead's Textbook of
A natomy, pp. 641-647, Lippincott-Raven Publishers, Philadelphia, PA (1997)
23. Lapeer, R.J., Prager, R.W.: Fetal head moulding: finite element analysis of a fetal skull
subjected to uterine pressures during the first stage of labour. J. Biomech. 34(9), 1125-1133
(2001)
24. Li, X.: Modelling levator ani mechanics during the second stage of labour. 2011, Bioengineer-
ing-University of Auckland. p. 190. xxiv (2011)
25. Jing, D.J., Ashton-Miller, J.A., DeLancey, J.O.L.: A biomechanical analysis of the effect of
pelvic floor ripening on predicted second stage of labor duration. J. Womens Health 18(10),
1514-1515 (2009)
26. Li, X., et al.: Effects of nonlinear muscle elasticity on pelvic floor mechanics during vaginal
childbirth. J. Biomech. Eng. 132(11), 111010 (2010)
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