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Brain phenotype of carbonic anhydrase IX-deficient mice
Pei-wen Pan
*
, Anna-Kaisa Parkkila
, Salla Autio
,
Mika Hilvo
, Raija Sormunen
, Silvia Pastorekova
, Jaromir Pastorek
, Hannu Haapasalo
, Seppo Parkkila
*
Corresponding author for this work
BA6308 Health data analytics
Tampere University
Tampere University Hospital (TAYS)
University of Oulu
Slovak Academy of Sciences
Research output
:
Contribution to journal
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Article
›
Scientific
›
peer-review
25
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Keyphrases
Gene-deficient Mice
100%
Brain Phenotypes
100%
Carbonic Anhydrase IX
100%
Brain Histology
50%
Wild Mice
50%
1-year Follow-up
25%
Morphological Analysis
25%
Process Behavior
25%
Poor Performance
25%
Behavior Change
25%
Novel Functions
25%
Biological Processes
25%
Reduced Expression
25%
Degenerative Changes
25%
RNA Metabolism
25%
Brain Tissue
25%
Functional Annotation
25%
Behavioral Phenotype
25%
Transcriptomic Response
25%
Memory Test
25%
Age-dependent
25%
Microscopic Changes
25%
Locomotor Activity
25%
Behavioral Tests
25%
CDNA Microarray Analysis
25%
Locomotory Behavior
25%
Functional Change
25%
Ion Homeostasis
25%
Activity Performance
25%
Downregulated Genes
25%
INIS
mice
100%
brain
100%
phenotype
100%
carbonic anhydrase
100%
genes
44%
psychological behavior
33%
histology
22%
performance
11%
comparative evaluations
11%
design
11%
tissues
11%
rna
11%
regulations
11%
ions
11%
metabolism
11%
homeostasis
11%
age dependence
11%
Biochemistry, Genetics and Molecular Biology
Carbonic Anhydrase
100%
Morphology
50%
Wild Type Mouse
50%
cDNA Microarray
25%
Transcriptomics
25%
Biological Phenomena and Functions Concerning the Entire Organism
25%
Homeostasis
25%
Behavioral Change
25%
RNA Metabolism
25%
Immunology and Microbiology
Carbonate Dehydratase IX
100%
Morphology
50%
Wild Type Mouse
50%
Brain Tissue
25%
Transcriptomics
25%
Biological Phenomena and Functions Concerning the Entire Organism
25%
Homeostasis
25%
RNA Metabolism
25%
cDNA Microarray
25%
Neuroscience
Carbonate Dehydratase IX
100%
Behavior (Neuroscience)
75%
Behavioral Test
25%
Ion Homeostasis
25%
cDNA Microarray
25%
Locomotor Activity
25%
RNA Metabolism
25%
Transcriptomics
25%
Memory Test
25%