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Pheno measurements correlated to your selected measurements

Pearson correlation p value
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Your selected measurement:
respiratory — airway resistance         ventilator  
Berndt1
pct_res_mch1   airway resistance (as % of baseline, H2O pressure)   [%]   methacholine 1mg/mL 36 strains   age 9-12wks
  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 – balance and coordination
Crabbe2   fall_DZ20_b1  
latency to fall from 5rpm rotarod, 0 min post-injection (trial block 1) (diazepam 20 mg/kg)
male 0.91 p = 0.0019 0.76 8 Plot  
Crowley1   latency_d60  
latency to move four paws, day 60 (haloperidol 60d)
male 0.66 p = 0.0031 0.25 18 Plot  
Brown2   fall_ave_d6  
latency to fall from accelerating (8rpm/min) rotarod, day 6
female –0.78 p = 0.0047 –0.87 11 Plot -0.83
Brown2   fall_ave_d7  
latency to fall from accelerating (8rpm/min) rotarod, day 7
female –0.78 p = 0.0048 –0.87 11 Plot -0.83
Brown2   fall_ave_d5  
latency to fall from accelerating (8rpm/min) rotarod, day 5
female –0.78 p = 0.0050 –0.91 11 Plot -0.84
Brown2   fall_ave_d3  
latency to fall from accelerating (8rpm/min) rotarod, day 3
female –0.76 p = 0.0062 –0.91 11 Plot -0.83
Brown2   fall_ave_d2  
latency to fall from accelerating (8rpm/min) rotarod, day 2
female –0.75 p = 0.0082 –0.79 11 Plot -0.82
Crabbe1   grid_ataxia_doseE  
grid test, missteps per cm (ethanol 2.0g/kg i.p.)
male 0.84 p = 0.0085 0.43 8 Plot  
behavior – learning and memory
Schalkwyk1   laten_goal_PBtrain  
latency to reach goal during training
male 0.90 p = 0.0025 0.38 8 Plot  
Schalkwyk1   laten_hidplat_MWM1  
latency to reach hidden platform, trial1
male 0.87 p = 0.0047 0.43 8 Plot  
Brown2   odorR_dig_pct  
percent digging odor pot, conditioned stimulus rose
female –0.74 p = 0.0095 –0.70 11 Plot  
behavior – visuospatial learning
Brown2   probe_corr_pct  
probe trial percent correct quadrant
male –0.81 p = 0.0027 –0.48 11 Plot  
Brown2   vis_detec_ave_d8  
visual detection mean latency to reach cued platform, day 8
female 0.81 p = 0.0044 0.78 10 Plot  
Brown2   probe_corr_dur  
probe trial correct quadrant duration
male –0.78 p = 0.0046 –0.48 11 Plot  
Brown2   vis_acuit_ave_d8  
visual acuity mean latency to reach cued platform, incremental grating, day 8
female 0.80 p = 0.0058 0.71 10 Plot  
Brown2   pat_disc_ave_d8  
pattern discrimination mean latency to reach cued platform, day 8
female 0.80 p = 0.0059 0.70 10 Plot  
blood – clinical chemistry – bilirubin
Yuan3   TBIL_M06  
total bilirubin (serum TBIL) (age 6mo)
male 0.58 p = 0.0077 0.46 20 Plot  
blood – clinical chemistry – urea nitrogen
Shockley1D   BUN_diff  
fold change across cohorts for blood urea nitrogen (serum BUN, 5h fast) (high-fat diet 4wks)
male 0.96 p = 0.0002 0.81 8 Plot  
blood – hematology – cell counts – WBC – eosinophils
Peters4   pctEOS_M24  
eosinophil differential (percent of total WBC) (age 24mo)
male 0.79 p = 0.0062 0.25 10 Plot  
blood – lipids – cholesterol – LDL or non-HDL
Paigen2   nonHDL_fat17  
non-HDL cholesterol (high-fat diet 17wks)
male 0.62 p = 0.0012 0.22 24 Plot  
Paigen2   nonHDL_chg  
fold change in non-HDL cholesterol (high-fat diet 17wks)
male 0.57 p = 0.0042 0.35 23 Plot  
blood – lipids – cholesterol – total
Paigen2   CHOL_chg  
fold change in total cholesterol (high-fat diet 17wks)
male 0.73 p < 0.0001 0.27 23 Plot  
Paigen2   CHOL_fat17  
total cholesterol (high-fat diet 17wks)
male 0.56 p = 0.0048 0.18 24 Plot  
blood – lipids – triglycerides
Jaxpheno3   TG8  
triglycerides (plasma TG)
male –0.93 p = 0.0009 –0.83 8 Plot  
body composition – fat
Ackert1   pctfat_M06  
percent fat of body mass, head excluded (age 6mo)
male 0.51 p = 0.0083 0.61 26 Plot  
body weight size and growth – body weight
Maurer1   bwchg_iso10  
fold change in body weight over testing period (isoproterenol 10mg/kg)
male –0.68 p = 0.0007 –0.62 21 Plot  
body weight size and growth – body weight growth curve
Jax1   bw9  
body weight
female 0.77 p = 0.0051 0.83 11 Plot  
cardiovascular – heart weight
Deschepper1   heart_LA_adj  
atrium (left) weight, per gram of body weight
female 0.76 p = 0.0065 0.74 11 Plot  
endocrine – adrenal
Deschepper1   adrenal_R_adj  
adrenal (right) weight, per gram of body weight
female 0.74 p = 0.0095 0.79 11 Plot  
immune system – cell counts – peripheral blood
Petkova1   CD4_effector_M24  
effector CD4 T cells (as percent of total CD4 T cells) (age 24mo)
female 0.78 p = 0.0083 0.73 10 Plot  
Petkova1   CD8_all_M24  
CD8 T cells (as percent of total lymphocytes) (age 24mo)
female 0.77 p = 0.0086 0.32 10 Plot  
kidney – function
Korstanje1   MA_M12  
microalbumin (urine MA) (age 12mo)
male 0.66 p = 0.0003 0.08 25 Plot  
Korstanje1   CREA_M24  
creatinine (urine CREA) (age 24mo)
female 0.63 p = 0.0017 0.52 22 Plot  
Korstanje1   MA_M18  
microalbumin (urine MA) (age 18mo)
male 0.59 p = 0.0019 0.21 25 Plot  
metabolism – energy
Seburn1   cal  
daily caloric intake
male –0.72 p = 0.0079 –0.43 12 Plot -0.77
metabolism – food intake
Evsikova1   food_Dk  
food intake, dark cycle (age 6mo)
female 0.95 p < 0.0001 0.77 11 Plot  
Seburn1   food  
daily food intake
male –0.72 p = 0.0081 –0.43 12 Plot -0.76
Evsikova1   food_daily  
food intake, daily (age 6mo)
female 0.74 p = 0.0088 0.82 11 Plot  
nervous system – neuromuscular function
Xing2   gait_score_M06  
gait score (1-3) (age 6mo)
male –0.63 p = 0.0008 0.07 25 Plot  
reproduction – development
Taft1   pct_implant_frozen  
implant sites (early resorption), percent of frozen/thawed ET
female 0.86 p = 0.0027 0.72 9 Plot  
respiratory – airway resistance
Berndt1   pct_res_mch3  
airway resistance (as % of baseline, H2O pressure) (methacholine 3mg/mL)
female 0.61 p < 0.0001 0.65 36 Plot  
Berndt1   airway_res_mch1  
airway resistance (H2O pressure) (methacholine 1mg/mL)
female 0.61 p < 0.0001 0.68 36 Plot  
Berndt1   airway_res_mch3  
airway resistance (H2O pressure) (methacholine 3mg/mL)
female 0.60 p = 0.0001 0.66 36 Plot  
Berndt2   airway_res_mch3  
airway resistance (Rn) (H20 pressure) (methacholine 3mg/mL)
male 0.65 p = 0.0001 0.53 29 Plot  
Berndt2   airway_res_mch1  
airway resistance (Rn) (H20 pressure) (methacholine 1mg/mL)
male 0.61 p = 0.0005 0.46 29 Plot  
Berndt1   airway_res_mch3  
airway resistance (H2O pressure) (methacholine 3mg/mL)
male 0.57 p = 0.0005 0.47 33 Plot  
Berndt1   pct_res_mch3  
airway resistance (as % of baseline, H2O pressure) (methacholine 3mg/mL)
male 0.57 p = 0.0005 0.54 33 Plot  
Berndt2   airway_res_mch3  
airway resistance (Rn) (H20 pressure) (methacholine 3mg/mL)
female 0.59 p = 0.0007 0.64 29 Plot  
Berndt2   airway_res_mch1  
airway resistance (Rn) (H20 pressure) (methacholine 1mg/mL)
female 0.59 p = 0.0008 0.65 29 Plot  
Berndt1   airway_res_mch30  
airway resistance (H2O pressure) (methacholine 30mg/mL)
female 0.54 p = 0.0008 0.63 35 Plot  
Berndt2   airway_res_mch30  
airway resistance (Rn) (H20 pressure) (methacholine 30mg/mL)
female 0.59 p = 0.0010 0.67 28 Plot  
Berndt1   airway_res_mch1  
airway resistance (H2O pressure) (methacholine 1mg/mL)
male 0.54 p = 0.0011 0.41 33 Plot  
Berndt1   airway_res_mch10  
airway resistance (H2O pressure) (methacholine 10mg/mL)
female 0.52 p = 0.0011 0.60 36 Plot  
Berndt2   airway_res_mch10  
airway resistance (Rn) (H20 pressure) (methacholine 10mg/mL)
female 0.56 p = 0.0016 0.67 29 Plot  
Berndt2   airway_res_mch10  
airway resistance (Rn) (H20 pressure) (methacholine 10mg/mL)
male 0.51 p = 0.0044 0.36 29 Plot  
respiratory – lung compliance
Berndt2   airway_elas_slope  
lung tissue dynamic elastance (H) (H20 pressure), MCh response index (methacholine )
female 0.61 p = 0.0004 0.69 29 Plot  
Berndt2   airway_elas_mch30  
lung tissue elastance (H) (H20 pressure) (methacholine 30mg/mL)
female 0.60 p = 0.0007 0.61 28 Plot  
Berndt2   airway_elas_mch10  
lung tissue elastance (H) (H20 pressure) (methacholine 10mg/mL)
female 0.53 p = 0.0033 0.48 29 Plot  
 

58 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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