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Published byMackenzie Parrish Modified over 11 years ago
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Modeling the Pelvic Floor using Shell Elements 1 Departamento de Engenharia Civil Instituto Superior Técnico Av. Rovisco Pais 1049-001 Lisboa Portugal 2 S. João Hospital Porto Portugal 3 IDMEC Faculty of Engineering University of Porto Portugal D. d'Aulignac(1), J.A.C. Martins(1), T. Mascarenhas(2), R.M. Natal Jorge(3) and E.B. Pires(1)
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2 Plan Anatomy Finite Element Simulation DataGeometry
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3 Why? Understand working of the pelvic floor Support of organs Predict damages during childbirth Stress incontinence Prolapse Uterine Vaginal Rectal
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4 Pelvic Floor Illust. From Netter
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5 MRI Images Sao Joao Hospital, Porto axialsagittal
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6 Visualisation Rasmussen et al (University of Illinois at Chicago) Segmented manually from MRI data. Julia R. Fielding et al. (Harvard medical school)
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7 Cadaver Measurements Janda et al 2003
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8 Geometry Point Set NURB Surfaces (Rhino 3d) Polygon Mesh
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9 Mesh Geometry top side Frontal view of the mesh: 3068 triangles 1620 nodes
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10 3D Muscle Model isotropic fibers volume Martins et al. 98
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11 Muscle Model Deformation gradient Left Cauchy- Green tensor Right Cauchy- Green tensor
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12 Muscle Model Fibre strain Direction of fibres (deformed) First Invariant
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13 Plane Stress Since incompressibility is assumed Since normal stresses are zero the plane stress is given as
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14 Passive Behaviour Humphreys model for cardiac tissue isotropicfibres
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15 Passive Tests lambda
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16 Muscle Fibres
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17 Active Behaviour
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18 Muscle Activation Sum of passive and active contributions
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19 Total Stress active total isotropic fibers
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20 Discussion Large quantitative differences between different models Oomens Martins Bosboom Gielen Kojic Humphrey Comparison with other models and experimental results is essential
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21 Simulation 3068 triangular shell elements Non-linear simulation performed with ABAQUS UMAT routine decribing the material
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22 Muscle Activation
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23 The Future Deformation of pelvic floor during childbirth Damage, fracture of soft tissues Prolapse of internal organs Geometric models from MRI data 8-node solid FE (de Sousa et al. 03)
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24 Muscle Model Deformation gradient Left Cauchy- Green tensor Right Cauchy- Green tensor
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