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Pheno measurements correlated to your selected measurements

Pearson correlation p value
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Your selected measurement:
blood — clinical chemistry — electrolytes — iron         metabolic panel  
Yuan3
Fe_M06   iron (serum Fe)   [mmol/L]
31 strains   age 6mo
  Inbred
 

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Correlated measurement from anywhere in MPD
(organized by category)
Sex Pearson
r
p value
on r
Spearman
rs
# strains
in
common
Click
for
scatterplot
Log-
improved
Pearson
behavior – anxiety
Brown1   groom_EZM  
grooming duration
male –0.86 p = 0.0058 –0.45 8 Plot -0.89
behavior – balance and coordination
Brown2   fall_ave_d2  
latency to fall from accelerating (8rpm/min) rotarod, day 2
male –0.90 p = 0.0009 –0.95 9 Plot  
Brown2   fall_ave_d3  
latency to fall from accelerating (8rpm/min) rotarod, day 3
male –0.81 p = 0.0082 –0.86 9 Plot  
Brown2   fall_ave_d1  
latency to fall from accelerating (8rpm/min) rotarod, day 1
male –0.80 p = 0.0099 –0.87 9 Plot  
behavior – involuntary movement
Crowley1   subtlechew_d60  
subtle chewing movement, count of events day 60 (haloperidol 60d)
male –0.70 p = 0.0036 –0.71 15 Plot  
blood – clinical chemistry – electrolytes
Yuan3   Fe_M12  
iron (serum Fe) (age 12mo)
female 0.74 p < 0.0001 0.63 27 Plot  
Yuan3   Fe_M12  
iron (serum Fe) (age 12mo)
male 0.68 p = 0.0005 0.69 22 Plot  
Yuan3   Fe_M18  
iron (serum Fe) (age 18mo)
male 0.63 p = 0.0012 0.54 23 Plot  
Yuan3   Fe_M18  
iron (serum Fe) (age 18mo)
female 0.56 p = 0.0029 0.63 26 Plot  
Yuan3   Mg_M18  
magnesium (serum Mg) (age 18mo)
male –0.56 p = 0.0087 –0.37 21 Plot -0.62
blood – clinical chemistry – urea nitrogen
Harrill2   BUN_trt  
blood urea nitrogen (serum BUN) (DB289 )
female –0.61 p = 0.0030 –0.51 21 Plot -0.68
blood – hematology – cell counts – WBC – misc
Peters4   pctLUC_M12  
large unstained cell differential (percent of total WBC) (age 12mo)
female –0.56 p = 0.0022 –0.52 27 Plot -0.63
blood – lipids – cholesterol – HDL
Paigen2   HDLC_fat17  
HDL cholesterol (high-fat diet 17wks)
female 0.64 p = 0.0008 0.68 24 Plot  
Paigen4   HDLC  
HDL cholesterol
female 0.58 p = 0.0027 0.45 24 Plot  
Paigen2   HDLC  
HDL cholesterol
female 0.55 p = 0.0052 0.48 24 Plot  
Yuan3   HDL_M06  
HDL cholesterol (plasma HDL) (age 6mo)
female 0.51 p = 0.0083 0.50 26 Plot 0.56
blood – lipids – cholesterol – LDL or non-HDL
Paigen2   nonHDL  
non-HDL cholesterol
female 0.52 p = 0.0087 0.29 24 Plot  
blood – lipids – cholesterol – total
Paigen4   CHOL  
total cholesterol
female 0.67 p = 0.0003 0.53 24 Plot  
Paigen2   CHOL  
total cholesterol
female 0.65 p = 0.0005 0.43 24 Plot  
bone – morphology
Everett1   incisor_region  
mandible, diastema to pogonion
male –0.81 p = 0.0086 –0.42 9 Plot  
brain – cerebral cortex
Wiltshire3   GAL_index  
galanin (GAL), change index (fluoxetine )
male –0.73 p = 0.0012 –0.46 16 Plot  
cardiovascular – atherosclerosis
Paigen1   aortic_lesion  
fatty streak aortic lesion size (high-fat diet 8wks)
male –0.71 p = 0.0007 –0.14 19 Plot -0.75
endocrine – hormones
Yuan3   T4_M18  
thyroxine/T4 (serum T4) (age 18mo)
male –0.59 p = 0.0033 –0.45 23 Plot  
Yuan1   IGF1_M06  
insulin-like growth factor 1 (serum IGF-1) (age 6mo)
male 0.51 p = 0.0094 0.35 25 Plot  
eye – vision
Chang1   rod_Bwave  
b-wave amplitude of rod photoreceptors (ERG)
female –0.81 p = 0.0083 –0.80 9 Plot -0.87
immune system – cell counts – peripheral blood
Petkova1   B_cells_M12  
B cells (as percent of total lymphocytes) (age 12mo)
male –0.58 p = 0.0032 –0.56 24 Plot  
Petkova1   CD4_all_M18  
CD4 T cells (as percent of total lymphocytes) (age 18mo)
male 0.60 p = 0.0055 0.60 20 Plot 0.70
Petkova1   B_cells_M18  
B cells (as percent of total lymphocytes) (age 18mo)
female –0.51 p = 0.0076 –0.43 26 Plot -0.55
Petkova1   CD8_mem_effector_M18  
effector memory CD8 T cells (as percent of total CD8 T cells) (age 18mo)
male –0.57 p = 0.0081 –0.33 20 Plot -0.60
immune system – response to fungal infection
Gros1   susceptibility  
susceptibility to C. albicans based on fungal load
(0=susceptible; 1=resistant) (Candida albicans )
female –0.68 p = 0.0025 –0.41 17 Plot  
Gros1   fungal_load  
kidney fungal load 48h post-infection,
colony-forming units (log10 CFU per kidney) (Candida albicans )
female 0.61 p = 0.0093 0.47 17 Plot  
ingestive preference – ethanol
Finn1   6pct_EtOH  
dose of ethanol voluntarily consumed at 6% ethanol in water
male –0.81 p = 0.0009 –0.74 13 Plot -0.84
Finn1   10pct_EtOH  
dose of ethanol voluntarily consumed at 10% ethanol in water
male –0.73 p = 0.0044 –0.35 13 Plot -0.78
Finn1   6pct_EtOH  
dose of ethanol voluntarily consumed at 6% ethanol in water
female –0.68 p = 0.0079 –0.58 14 Plot -0.72
Finn1   3pct_EtOH  
dose of ethanol voluntarily consumed at 3% ethanol in water
female –0.68 p = 0.0080 –0.46 14 Plot -0.71
ingestive preference – ethanol and saccharin
Finn1   saccharin  
consumption of 0.2% saccharin in water
male –0.78 p = 0.0016 –0.62 13 Plot  
Finn1   3pct_EtOHsach  
dose of ethanol voluntarily consumed at 3% ethanol in water with 0.2% saccharin
male –0.76 p = 0.0025 –0.54 13 Plot  
kidney – function
Harrill2D   urine_KIM1_fold  
fold change across cohorts for urine kidney injury molecule 1 (KIM-1) (DB289 )
female –0.56 p = 0.0095 –0.49 20 Plot  
metabolism – food intake
Evsikova1   food_Dk  
food intake, dark cycle (age 6mo)
female 0.82 p = 0.0038 0.86 10 Plot 0.87
muscle – skeletal
Seburn2   grip_strength_M12  
grip strength mean peak tension over 3 trials (age 12mo)
male 0.54 p = 0.0071 0.48 24 Plot  
respiratory – airway resistance
Berndt1   pct_res_mch3  
airway resistance (as % of baseline, H2O pressure) (methacholine 3mg/mL)
female 0.52 p = 0.0100 0.30 24 Plot  
respiratory – breathing pattern
Berndt2   inspiratory_mch10  
inspiratory time (Ti) (methacholine 10mg/mL)
male 0.59 p = 0.0093 0.52 18 Plot  
Berndt2   expiratory_mch20  
expiratory time (Te) (methacholine 20mg/mL)
male 0.59 p = 0.0094 0.60 18 Plot  
 

43 rows

Reciprocals are included in the above list.

Correlations where Pearson r < 0.5 are not retained and will not appear in the above list.

All correlations available through MPD are mathematical correlations provided for exploratory use, and are not necessarily biologically significant. Additional forms of validation are required. Most correlations are based on strain mean data points which have varying degrees of quality, preciseness, and normality of distribution, and this is generally not taken into account in correlation strength metrics.




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