Anatomical phenotyping in the brain and skull of a mutant mouse by magnetic resonance imaging and computed tomography
Open Access
- 1 February 2006
- journal article
- Published by American Physiological Society in Physiological Genomics
- Vol. 24 (2) , 154-162
- https://doi.org/10.1152/physiolgenomics.00217.2005
Abstract
Since genetically modified mice have become more common in biomedical research as models of human disease, a need has also grown for efficient and quantitative methods to assess mouse phenotype. One powerful means of phenotyping is characterization of anatomy in mutant vs. normal populations. Anatomical phenotyping requires visualization of structures in situ, quantification of complex shape differences between mouse populations, and detection of subtle or diffuse abnormalities during high-throughput survey work. These aims can be achieved with imaging techniques adapted from clinical radiology, such as magnetic resonance imaging and computed tomography. These imaging technologies provide an excellent nondestructive method for visualization of anatomy in live individuals or specimens. The computer-based analysis of these images then allows thorough anatomical characterizations. We present an automated method for analyzing multiple-image data sets. This method uses image registration to identify corresponding anatomy between control and mutant groups. Within- and between-group shape differences are used to map regions of significantly differing anatomy. These regions are highlighted and represented quantitatively by displacements and volume changes. This methodology is demonstrated for a partially characterized mouse mutation generated by N-ethyl-N-nitrosourea mutagenesis that is a putative model of the human syndrome oculodentodigital dysplasia, caused by point mutations in the gene encoding connexin 43.Keywords
This publication has 44 references indexed in Scilit:
- Magnetic resonance imaging for detection and analysis of mouse phenotypesNMR in Biomedicine, 2005
- High‐resolution MRI with cardiac and respiratory gating allows for accurate in vivo atherosclerotic plaque visualization in the murine aortic archMagnetic Resonance in Medicine, 2003
- The control of the false discovery rate in multiple testing under dependencyThe Annals of Statistics, 2001
- Functional Annotation of Mouse Genome SequencesScience, 2001
- Detecting Structural Changes in Whole Brain Based on Nonlinear Deformations—Application to Schizophrenia ResearchNeuroImage, 1999
- The detection of local shape changes via the geometry of Hotelling's $T^2$ fieldsThe Annals of Statistics, 1999
- Design and engineering aspects of a high resolution positron tomograph for small animal imagingIEEE Transactions on Nuclear Science, 1994
- Oculodentodigital dysplasia and type III syndactyly: separate genetic entities or disease spectrum?Journal of Medical Genetics, 1990
- Three new cases of oculodentodigital (ODD) syndrome: development of the facial phenotype.Journal of Medical Genetics, 1985
- Oculodentodigital dysplasiaThe Journal of Pediatrics, 1963