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Effects of aneuploidy on skull growth in a mouse model of Down syndrome
Cheryl A. Hill
, Roger H. Reeves
, Joan T. Richtsmeier
Anthropology
Center for Neural Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
34
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Scopus citations
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Dive into the research topics of 'Effects of aneuploidy on skull growth in a mouse model of Down syndrome'. Together they form a unique fingerprint.
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Keyphrases
Mouse Model
100%
Aneuploidy
100%
Down Syndrome
100%
Skull Growth
100%
Ts65Dn
100%
Euploid
75%
Trisomic Mice
75%
Littermate
50%
Palate
50%
Mandible
50%
Environmental Factors
25%
Three-dimensional Coordinates
25%
Trisomy 21
25%
Genetic Factors
25%
Growth Pattern
25%
At Birth
25%
Skull
25%
Epigenetic Factors
25%
Euclidean Distance Matrix Analysis
25%
Complex Interactions
25%
Trisomic
25%
Morphological Difference
25%
Reduced Growth
25%
Craniofacial Morphology
25%
Craniofacial Features
25%
Cranial Base
25%
Craniofacial Dysmorphology
25%
Development Control
25%
Genetic Program
25%
Dysmorphology
25%
Ts65Dn Mice
25%
Micro-computed Tomography Scan
25%
Genetics/epigenetics
25%
Craniofacial Growth
25%
Medicine and Dentistry
Aneuploidy
100%
Trisomy
100%
Down Syndrome
100%
Skull Development
100%
Dysmorphology
40%
Palate
40%
Genetics
40%
Morphology
20%
Base
20%
Environmental Factor
20%
X-Ray Microtomography
20%
Neonatal Infant
20%
Growth, Development and Aging
20%
Craniofacial Morphology
20%
Trisomy 21
20%
Euclidean Distance Matrix Analyse
20%
Biochemistry, Genetics and Molecular Biology
Down Syndrome
100%
Aneuploidy
100%
Mouse Model
100%
Skull Development
100%
Genetics
33%
Morphology
33%
Trisomy 21
33%
Growth, Development and Aging
33%
Craniofacial Morphology
33%
Micro-Computed Tomography
33%
Trisomy
33%
Genetic Program
33%
Neuroscience
Skull
100%
Down Syndrome
100%
Face
66%
Palate
66%
Genetics
66%
Euclidean Distance Matrix Analyse
33%
Craniofacial Morphology
33%
Agricultural and Biological Sciences
Aneuploidy
100%
Trisomics
100%
Face
50%
Genetics
50%
Environmental Factor
25%
Growth and Development
25%
Micro-Computed Tomography
25%
Veterinary Science and Veterinary Medicine
Mouse
100%
Palate
33%