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Pheno measurements correlated to your selected measurements

Pearson correlation p value
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blood — hematology — cell counts — WBC — basophils — count         CBC  
Peters4
BASO_M12   basophil count (BASO; units per volume x 103)   [n/µL]
31 strains   age 12mo
  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
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for
scatterplot
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improved
Pearson
behavior – balance and coordination
Crabbe3   ARR1_post_30rpm  
accelerating rotarod (ARR1) day 2 latency to fall at 30 min post ethanol (30 rpm/min) (ethanol various i.p.)
male 0.89 p = 0.0033 0.83 8 Plot  
behavior – impulsivity
Mitchell1   precue_rate  
number of responses made during pre-cue period
male –0.90 p = 0.0022 –0.88 8 Plot  
behavior – wildness
Wahlsten2   nsqueak  
number of tests with squeaks
female 0.75 p = 0.0018 0.43 14 Plot  
Wahlsten2   nbite  
number of tests with bites
female 0.71 p = 0.0041 0.54 14 Plot  
Wahlsten2   hold  
hold rating, overall mean
female 0.71 p = 0.0043 0.33 14 Plot  
blood – clinical chemistry – electrolytes
Yuan3   Na_M06  
sodium (serum Na) (age 6mo)
male –0.53 p = 0.0080 –0.46 24 Plot  
blood – hematology – cell counts – WBC
Peters4   WBC_M12  
white blood cell count (WBC; per volume x 103) (age 12mo)
female 0.73 p < 0.0001 0.66 30 Plot  
Peters4   WBC_M06  
white blood cell count (WBC; per volume x 103) (age 6mo)
female 0.69 p < 0.0001 0.67 30 Plot  
Peters4   WBC_M12  
white blood cell count (WBC; per volume x 103) (age 12mo)
male 0.66 p < 0.0001 0.58 30 Plot  
Petkova1   WBC_M18  
white blood cell count (WBC; per volume x 103) (age 18mo)
female 0.65 p = 0.0002 0.57 28 Plot 0.69
Peters4   WBC_M24  
white blood cell count (WBC; per volume x 103) (age 24mo)
male 0.86 p = 0.0003 0.70 12 Plot  
CGDpheno1   WBC  
white blood cell count (WBC; per volume x 103)
female 0.61 p = 0.0009 0.54 26 Plot  
Petkova1   WBC_M24  
white blood cell count (WBC; per volume x 103) (age 24mo)
male 0.84 p = 0.0013 0.66 11 Plot  
Peters4   WBC_M18  
white blood cell count (WBC; per volume x 103) (age 18mo)
female 0.52 p = 0.0045 0.55 28 Plot  
Petkova1   WBC_M12  
white blood cell count (WBC; per volume x 103) (age 12mo)
male 0.51 p = 0.0060 0.34 28 Plot  
blood – hematology – cell counts – WBC – basophils
Peters4   pctBASO_M12  
basophil differential (percent of total WBC) (age 12mo)
male 0.71 p < 0.0001 0.77 30 Plot  
Peters4   BASO_M06  
basophil count (BASO; units per volume x 103) (age 6mo)
female 0.61 p = 0.0003 0.58 30 Plot  
Peters4   BASO_M18  
basophil count (BASO; units per volume x 103) (age 18mo)
female 0.63 p = 0.0004 0.70 28 Plot  
Peters4   BASO_M18  
basophil count (BASO; units per volume x 103) (age 18mo)
male 0.61 p = 0.0004 0.63 29 Plot  
Peters4   pctBASO_M12  
basophil differential (percent of total WBC) (age 12mo)
female 0.59 p = 0.0007 0.69 30 Plot  
Peters4   BASO_M24  
basophil count (BASO; units per volume x 103) (age 24mo)
male 0.80 p = 0.0019 0.59 12 Plot  
Peters4   pctBASO_M18  
basophil differential (percent of total WBC) (age 18mo)
male 0.50 p = 0.0055 0.59 29 Plot  
Peters4   BASO_M06  
basophil count (BASO; units per volume x 103) (age 6mo)
male 0.47 p = 0.0085 0.52 30 Plot  
blood – hematology – cell counts – WBC – lymphocytes
Peters4   LYMPH_M06  
lymphocyte count (LYMP; units per volume x 103) (age 6mo)
female 0.66 p < 0.0001 0.67 30 Plot  
Peters4   LYMPH_M12  
lymphocyte count (LYMP; units per volume x 103) (age 12mo)
female 0.65 p < 0.0001 0.63 30 Plot  
Peters4   LYMPH_M12  
lymphocyte count (LYMP; units per volume x 103) (age 12mo)
male 0.62 p = 0.0002 0.57 30 Plot  
Peters4   LYMPH_M24  
lymphocyte count (LYMP; units per volume x 103) (age 24mo)
male 0.78 p = 0.0026 0.69 12 Plot  
Peters4   LYMPH_M18  
lymphocyte count (LYMP; units per volume x 103) (age 18mo)
male 0.53 p = 0.0033 0.48 29 Plot  
blood – hematology – cell counts – WBC – misc
Peters4   LUC_M06  
large unstained cells count (LUC; units per volume x 103) (age 6mo)
female 0.71 p < 0.0001 0.72 30 Plot  
Peters4   pctLUC_M06  
large unstained cell differential (percent of total WBC) (age 6mo)
female 0.62 p = 0.0002 0.63 30 Plot  
Peters4   LUC_M12  
large unstained cells count (LUC; units per volume x 103) (age 12mo)
female 0.54 p = 0.0022 0.63 30 Plot  
blood – hematology – cell counts – WBC – monocytes
Petkova1   MONO_M06  
monocytes (percent of viable WBC) (age 6mo)
female 0.60 p = 0.0005 0.61 30 Plot  
blood – hematology – cell counts – WBC – neutrophils
Petkova1   NEUT_M12  
neutrophils (percent of viable WBC) (age 12mo)
male –0.52 p = 0.0043 –0.57 28 Plot  
Petkova1   NEUT_M18  
neutrophils (percent of viable WBC) (age 18mo)
male –0.54 p = 0.0061 –0.55 24 Plot -0.58
body weight size and growth – body weight
Rhodes1   BW_chg_wheel  
fold-change in body weight, with exercise wheel (6wks) (exercise )
male –0.88 p = 0.0043 –0.67 8 Plot  
cancer – tumor growth
Graubert1   myeloid_tumor_enu  
myeloid tumor frequency rate (score 0-1) (ENU 100mg/kg) (age 3-16mo)
female 0.79 p = 0.0013 0.62 13 Plot  
cardiovascular – ECG parameters
Maurer1   QRS_iso10  
interval between beginning and end of QRS complex (isoproterenol 10mg/kg 2wks)
male 0.63 p = 0.0083 0.67 16 Plot  
cardiovascular – heart weight
Deschepper1   heart_RV_adj  
ventricle (right) weight, per gram of body weight
female 0.83 p = 0.0016 0.86 11 Plot  
endocrine – adrenal
Deschepper1   adrenal_bi_adj  
adrenal weight (both), per gram of body weight
male 0.74 p = 0.0095 0.77 11 Plot  
immune system – cell counts – peripheral blood
Petkova1   CD4_mem_effector_M06  
effector memory CD4 T cells (as percent of total CD4 T cells) (age 6mo)
female 0.57 p = 0.0010 0.56 30 Plot  
kidney – function
Harrill2D   urine_KIM1_fold  
fold change across cohorts for urine kidney injury molecule 1 (KIM-1) (DB289 )
female –0.54 p = 0.0079 –0.51 23 Plot  
neurosensory – sensory gating
Willott1   ASR_latency  
mean latency of acoustic startle response (ASR) evoked by 100 dB sound pressure level
female –0.59 p = 0.0022 –0.59 24 Plot  
reproduction – development
Taft1   pct_dead_IVF  
dead embryos, percent of IVF dish cells
female 0.86 p = 0.0066 0.92 8 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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