162
K. Miller et al.
74. Nasseri, S., Bilston, L.E., Phan-Thien, N.: Viscoelastic properties of pig kidney in shear,
experimental results and modelling. Rheol. Acta. 41, 180–192 (2002)
75. Bilston, L., Liu, Z., Phan-Tiem, N.: Large strain behaviour of brain tissue in shear: some
experimental data and differential constitutive model. Biorheology. 38, 335–345 (2001)
76. Farshad, M., Barbezat, M., Flüeler, P., Schmidlin, F., Graber, P., Niederer, P.: Material
characterization of the pig kidney in relation with the biomechanical analysis of renal trauma.
J. Biomech. 32(4), 417–425 (1999)
77. Walsh, E.K., Schettini, A.: Calculation of brain elastic parameters in vivo. Am. J. Phys. 247,
R637–R700 (1984)
78. Miller, K., Chinzei, K.: Mechanical properties of brain tissue in tension. J. Biomech. 35, 483–
490 (2002)
79. Bilston, L.E., Liu, Z., Phan-Tien, N.: Linear viscoelastic properties of bovine brain tissue in
shear. Biorheology. 34(6), 377–385 (1997)
80. Miller, K.: Biomechanics of the Brain for Computer Integrated Surgery. Publishing House of
Warsaw University of Technology, Warsaw (2002)
81. Prange, M.T., Margulies, S.S.: Regional, directional, and age-dependent properties of the
brain undergoing large deformation. ASME J. Biomech. Eng. 124, 244–252 (2002)
82. Seo, J., Kim, Y.-s.: Ultrasound imaging and beyond: recent advances in medical ultrasound.
Biomed. Eng. Lett. 7(2), 57–58 (2017)
83. Dietrich, C.F., Cantisani, V.: Current status and perspectives of elastography. Eur. J. Radiol.
83(3), 403–404 (2014)
84. Sinkus, R., Tanter, M., Xydeas, T., Catheline, S., Bercoff, J., Fink, M.: Viscoelastic shear
properties of in vivo breast lesions measured by MR elastography. Magn. Reson. Imaging.
23, 159–165 (2005)
85. McCracken, P.J., Manduca, A., Felmlee, J., Ehman, R.L.: Mechanical transient-based magnetic resonance elastography. Magn. Reson. Med. 53(3), 628–639 (2005)
86. Green, M.A., Bilston, L.E., Sinkus, R.: In vivo brain viscoelastic properties measured by
magnetic resonance elastography. NMR Biomed. 21(7), 755–764 (2008)
87. Glaser, K.J., Manduca, A., Ehman, R.L.: Review of MR elastography applications and recent
developments. J. Magn. Reson. Imaging. 36(4), (2012)
88. Murphy, M.C., Huston 3rd, J., Ehman, R.L.: MR elastography of the brain and its application
in neurological diseases. NeuroImage. 187, 176–183 (2019, Feb)
89. Bathe, K.J.: Finite Element Procedures. Prentice-Hall, Inc., Upper Saddle River (1996)
90. Ma, J., Wittek, A., Singh, S., Joldes, G., Washio, T., Chinzei, K., Miller, K.: Evaluation of
accuracy of non-linear finite element computations for surgical simulation: study using brain
phantom. Comput. Methods Biomech. Biomed. Eng. 13(6), 783–794 (2010)
91. Wittek, A., Dutta-Roy, T., Taylor, Z., Horton, A., Washio, T., Chinzei, K., Miller, K.: Subjectspecific non-linear biomechanical model of needle insertion into brain. Comput. Methods
Biomech. Biomed. Eng. J. 11(2), 135–146 (2008)
92. Garlapati, R., Roy, A., Joldes, G., Wittek, A., Mostayed, A., Doyle, B., Warfield, S.,
Kikinis, R., Knuckey, N., Bunt, S., Miller, K.: More accurate neuronavigation data provided
by biomechanical modeling instead of rigid registration. J. Neurosurg. 120(6), 1477–1483
(2014)
93. Mostayed, A., Garlapati, R.R., Joldes, G.R., Wittek, A., Roy, A., Kikinis, R., Warfield,
S.K., Miller, K.: Biomechanical model as a registration tool for image-guided neurosurgery:
evaluation against BSpline registration. Ann. Biomed. Eng. 41(11), 2409–2425 (2013)
94. Warfield, S.K., Haker, S.J., Talos, I.-F., Kemper, C.A., Weisenfeld, N., Mewes, U.J.,
Goldberg-Zimring, D., Zou, K.H., Westin, C.-F., Wells, W.M., Tempany, C.M.C., Golby,
A., Black, P.M., Jolesz, F.A., Kikinis, R.: Capturing intraoperative deformations: research
experience at Brigham and Women’s hospital. Med. Image Anal. 9(2), 145–162 (2005)
95. Joldes, G.R., Wittek, A., Miller, K.: An adaptive dynamic relaxation method for solving
nonlinear finite element problems. Application to brain shift estimation. Int. J. Numer.
Methods Biomed. Eng. 27(2), 173–185 (2011)
96. Wittek, A., Miller, K., Kikinis, R., Warfield, S.K.: Patient-specific model of brain deformation: application to medical image registration. J. Biomech. 40(4), 919–929 (2007)
K. Miller et al.
74. Nasseri, S., Bilston, L.E., Phan-Thien, N.: Viscoelastic properties of pig kidney in shear,
experimental results and modelling. Rheol. Acta. 41, 180–192 (2002)
75. Bilston, L., Liu, Z., Phan-Tiem, N.: Large strain behaviour of brain tissue in shear: some
experimental data and differential constitutive model. Biorheology. 38, 335–345 (2001)
76. Farshad, M., Barbezat, M., Flüeler, P., Schmidlin, F., Graber, P., Niederer, P.: Material
characterization of the pig kidney in relation with the biomechanical analysis of renal trauma.
J. Biomech. 32(4), 417–425 (1999)
77. Walsh, E.K., Schettini, A.: Calculation of brain elastic parameters in vivo. Am. J. Phys. 247,
R637–R700 (1984)
78. Miller, K., Chinzei, K.: Mechanical properties of brain tissue in tension. J. Biomech. 35, 483–
490 (2002)
79. Bilston, L.E., Liu, Z., Phan-Tien, N.: Linear viscoelastic properties of bovine brain tissue in
shear. Biorheology. 34(6), 377–385 (1997)
80. Miller, K.: Biomechanics of the Brain for Computer Integrated Surgery. Publishing House of
Warsaw University of Technology, Warsaw (2002)
81. Prange, M.T., Margulies, S.S.: Regional, directional, and age-dependent properties of the
brain undergoing large deformation. ASME J. Biomech. Eng. 124, 244–252 (2002)
82. Seo, J., Kim, Y.-s.: Ultrasound imaging and beyond: recent advances in medical ultrasound.
Biomed. Eng. Lett. 7(2), 57–58 (2017)
83. Dietrich, C.F., Cantisani, V.: Current status and perspectives of elastography. Eur. J. Radiol.
83(3), 403–404 (2014)
84. Sinkus, R., Tanter, M., Xydeas, T., Catheline, S., Bercoff, J., Fink, M.: Viscoelastic shear
properties of in vivo breast lesions measured by MR elastography. Magn. Reson. Imaging.
23, 159–165 (2005)
85. McCracken, P.J., Manduca, A., Felmlee, J., Ehman, R.L.: Mechanical transient-based magnetic resonance elastography. Magn. Reson. Med. 53(3), 628–639 (2005)
86. Green, M.A., Bilston, L.E., Sinkus, R.: In vivo brain viscoelastic properties measured by
magnetic resonance elastography. NMR Biomed. 21(7), 755–764 (2008)
87. Glaser, K.J., Manduca, A., Ehman, R.L.: Review of MR elastography applications and recent
developments. J. Magn. Reson. Imaging. 36(4), (2012)
88. Murphy, M.C., Huston 3rd, J., Ehman, R.L.: MR elastography of the brain and its application
in neurological diseases. NeuroImage. 187, 176–183 (2019, Feb)
89. Bathe, K.J.: Finite Element Procedures. Prentice-Hall, Inc., Upper Saddle River (1996)
90. Ma, J., Wittek, A., Singh, S., Joldes, G., Washio, T., Chinzei, K., Miller, K.: Evaluation of
accuracy of non-linear finite element computations for surgical simulation: study using brain
phantom. Comput. Methods Biomech. Biomed. Eng. 13(6), 783–794 (2010)
91. Wittek, A., Dutta-Roy, T., Taylor, Z., Horton, A., Washio, T., Chinzei, K., Miller, K.: Subjectspecific non-linear biomechanical model of needle insertion into brain. Comput. Methods
Biomech. Biomed. Eng. J. 11(2), 135–146 (2008)
92. Garlapati, R., Roy, A., Joldes, G., Wittek, A., Mostayed, A., Doyle, B., Warfield, S.,
Kikinis, R., Knuckey, N., Bunt, S., Miller, K.: More accurate neuronavigation data provided
by biomechanical modeling instead of rigid registration. J. Neurosurg. 120(6), 1477–1483
(2014)
93. Mostayed, A., Garlapati, R.R., Joldes, G.R., Wittek, A., Roy, A., Kikinis, R., Warfield,
S.K., Miller, K.: Biomechanical model as a registration tool for image-guided neurosurgery:
evaluation against BSpline registration. Ann. Biomed. Eng. 41(11), 2409–2425 (2013)
94. Warfield, S.K., Haker, S.J., Talos, I.-F., Kemper, C.A., Weisenfeld, N., Mewes, U.J.,
Goldberg-Zimring, D., Zou, K.H., Westin, C.-F., Wells, W.M., Tempany, C.M.C., Golby,
A., Black, P.M., Jolesz, F.A., Kikinis, R.: Capturing intraoperative deformations: research
experience at Brigham and Women’s hospital. Med. Image Anal. 9(2), 145–162 (2005)
95. Joldes, G.R., Wittek, A., Miller, K.: An adaptive dynamic relaxation method for solving
nonlinear finite element problems. Application to brain shift estimation. Int. J. Numer.
Methods Biomed. Eng. 27(2), 173–185 (2011)
96. Wittek, A., Miller, K., Kikinis, R., Warfield, S.K.: Patient-specific model of brain deformation: application to medical image registration. J. Biomech. 40(4), 919–929 (2007)
