Jonathan Chappelow

According to our database1, Jonathan Chappelow authored at least 21 papers between 2006 and 2012.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

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Links

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Bibliography

2012
Incorporating the whole-mount prostate histology reconstruction program Histostitcher into the extensible imaging platform (XIP) framework.
Proceedings of the Medical Imaging 2012: Computer-Aided Diagnosis, 2012

2011
Determining histology-MRI slice correspondences for defining MRI-based disease signatures of prostate cancer.
Comput. Medical Imaging Graph., 2011

HistoStitcher<sup>©</sup>: An interactive program for accurate and rapid reconstruction of digitized whole histological sections from tissue fragments.
Comput. Medical Imaging Graph., 2011

Empirical evaluation of bias field correction algorithms for computer-aided detection of prostate cancer on T2w MRI.
Proceedings of the Medical Imaging 2011: Computer-Aided Diagnosis, 2011

Enhanced multi-protocol analysis via intelligent supervised embedding (EMPrAvISE): detecting prostate cancer on multi-parametric MRI.
Proceedings of the Medical Imaging 2011: Computer-Aided Diagnosis, 2011

Linked statistical shape models for multi-modal segmentation: application to prostate CT-MR segmentation in radiotherapy planning.
Proceedings of the Medical Imaging 2011: Computer-Aided Diagnosis, 2011

CADOnc ©: An integrated toolkit for evaluating radiation therapy related changes in the prostate using multiparametric MRI.
Proceedings of the 8th IEEE International Symposium on Biomedical Imaging: From Nano to Macro, 2011

Spatially weighted mutual information (SWMI) for registration of digitally reconstructed ex vivo whole mount histology and in vivo prostate MRI.
Proceedings of the 33rd Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2011

2010
A structural-functional MRI-based disease atlas: application to computer-aided-diagnosis of prostate cancer.
Proceedings of the Medical Imaging 2010: Image Processing, 2010

Computer-assisted targeted therapy (CATT) for prostate radiotherapy planning by fusion of CT and MRI.
Proceedings of the Medical Imaging 2010: Visualization, 2010

An integrated framework for analyzing three-dimensional shape differences: evaluating prostate morphometry.
Proceedings of the 2010 IEEE International Symposium on Biomedical Imaging: From Nano to Macro, 2010

Multi-attribute combined mutual information (MACMI): an image registration framework for leveraging multiple data channels.
Proceedings of the 2010 IEEE International Symposium on Biomedical Imaging: From Nano to Macro, 2010

2009
COLLINARUS: collection of image-derived non-linear attributes for registration using splines.
Proceedings of the Medical Imaging 2009: Image Processing, 2009

Integrating structural and functional imaging for computer assisted detection of prostate cancer on multi-protocol in vivo 3 Tesla MRI.
Proceedings of the Medical Imaging 2009: Computer-Aided Diagnosis, 2009

2008
Nonlinear neurobiological probability weighting functions for aversive outcomes.
NeuroImage, 2008

A Comprehensive Segmentation, Registration, and Cancer Detection Scheme on 3 Tesla In VivoProstate DCE-MRI.
Proceedings of the Medical Image Computing and Computer-Assisted Intervention, 2008

Multi-Attribute Non-initializing Texture Reconstruction Based Active Shape Model (MANTRA).
Proceedings of the Medical Image Computing and Computer-Assisted Intervention, 2008

Improving supervised classification accuracy using non-rigid multimodal image registration: detecting prostate cancer.
Proceedings of the Medical Imaging 2008: Computer-Aided Diagnosis, 2008

2007
Multimodal image registration of ex vivo 4 Tesla MRI with whole mount histology for prostate cancer detection.
Proceedings of the Medical Imaging 2007: Image Processing, 2007

A Combined Feature Ensemble Based Mutual Information Scheme for Robust Inter-Modal, Inter-Protocol Image Registration.
Proceedings of the 2007 IEEE International Symposium on Biomedical Imaging: From Nano to Macro, 2007

2006
Human striatal activation reflects degree of stimulus saliency.
NeuroImage, 2006


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