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701 results on '"Peyrin F"'

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105. Synchrotron-Nano-Tomografie mit Phasenkontrast

106. Tomographic reconstruction for Compton imaging in proton beam therapy

107. Case specific finite element analysis of the strains experienced by osteocytes

108. Extending validity of X-ray in-line phase tomography to heterogeneous objects

109. Investigation of the 3D orientation of mineralized collagen fibrils in human lamellar bone using synchrotron X-ray phase nano-tomography

110. THE 3D ORIENTATION OF MINERALIZED COLLAGEN FIBRILS IN HUMAN LAMELLAR BONE AND ITS MECHANICAL CONSEQUENCES

111. 3D quantification of bone tissue from synchrotron CT : from the micro-architecture to the cell level

112. Advances in 3D X-ray imaging and associated inverse problems

113. Design of priors for X-ray in-line phase tomography

114. Synchrotron radiation micro-CT imaging of the mouse brain

115. Bone microstructure reconstruction from few projections with level-set regularization

116. Mapping bone biomechanical properties: 3D synchrotron imaging, multiscale modeling, numerical simulations, and related issues

117. In-line phase tomography using nonlinear phase retrieval

118. X-ray in-line phase micro-CT for simultaneous bone and soft tissue visualisation

119. 3D bone cells quantification from 3D micro-CT images

120. Reconstruction non linéaire itératif des images de phase en rayons X

121. Super resolution of the trabecular bone images with different regularization methods

122. Synchrotron Radiation Micro-Computed Tomography as a new method to detect iron oxide nanoparticles in the brain

123. 3D nano-CT: a new approach for imaging at cellular scale

124. Evaluation of Cortical Porosity from HR-pQCT at the Tibia: Comparison with Synchrotron Radiation Micro-computed Tomograph

125. A three step homogenization model based on the Eshelby formulation to model the multiscale cortical bone structure

126. Micro-CT based homogeneization of the elastic properties of cortical bone: influence of the heterogeneous distribution of mineral and porosity

127. A sample-specific model of millimeter-scale anisotropic elastic properties of cortical bone

128. Super-résolution d’images de la micro-architecture osseuse avec des régularisations TV d’ordre elevé

129. Reconstruction non linéaire de la phase avec operateurs de projection combinée avec un seuillage itératif en ondelettes

130. Synchrotron Radiation Micro-Computed Tomography Imaging of the mouse brain

131. Quantification of Bone Cell Connections from 3D Nano-CT Images

132. Non-destructive and Multi-modal 3D Imaging of Biological Materials

133. Nanoscale imaging of the bone cell network with synchrotron X-ray tomography: optimization of acquisition setup

134. Imaging of the Bone Cell Network with Nanoscale Synchrotron Radiation Computed Tomography

135. Estimation of heterogeneous elastic properties in human femoral neck by micro-CT based multi-scale modelling

136. Effects of the axial variations of porosity and mineralization on the elastic properties of the human femoral neck

137. Role of porosity and tissue mineral density in determining the elastic properties of cortical bone tissue in the human femoral neck

138. Effects of the spatial variations of porosity and mineralization on the elastic properties of the human femoral neck

139. On the anatomical variation of elastic properties in human cortical bone: experiments, modelling and numerical simulations

140. Coupling a homogenization model with an imaging technique to retrieve cortical bone anisotropic biomechanical properties

141. A Minimum Cost Path Approach for the Segmentation of Bone Canalicular Network from Nano-CT Images

142. Minimum Cost Path Approach for the Segmentation of Bone Canalicular Network from Nano-CT Images

143. Coupling a homogenization method with Synchrotron radiation microcomputed tomography to estimate cortical bone anisotropic biomechanical properties

144. Restitution de phase par seuillage itératif en ondelettes

145. Micro-CT based modeling and numerical estimation of the heterogeneous elastic properties in human femoral neck

146. Elasticité et porosité de l'os cortical humain : modèles et expériences

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