Influence of high affinity haemoglobin on the response to normoxic and hypoxic exercise is a research paper published in The Journal of Physiology (2020). On theSindex it has a DataRank of 0. It has been cited 58 times.
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Natural Sciences and Engineering Research Council of Canada
Grant: NIH‐T32‐DK‐007352‐39
Natural Sciences and Engineering Research Council of Canada
Grant: NIH‐F32‐HL131151
National Institutes of Health
Grant: R‐35‐HL139854
NIDDK NIH HHS
Grant: T32 DK007352
Natural Sciences and Engineering Research Council of Canada
Grant: NIH-F32-HL131151
Natural Sciences and Engineering Research Council of Canada
Grant: NIH-T32-DK-007352-39
NIH HHS
Grant: R-35-HL139854
NHLBI NIH HHS
Grant: R35 HL139854
NHLBI NIH HHS
Grant: F32 HL131151
Natural Sciences and Engineering Research Council of Canada
Grant: unidentified
unidentified
Honeywell Hometown Solutions
FWCI
8.65
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 1 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 2 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 2 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 3 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 3 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 4 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 4 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 5 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 5 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 6 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 6 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 7 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 7 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 8 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice
Additional file 8 of The adaptive benefit of evolved increases in hemoglobin-O2 affinity is contingent on tissue O2 diffusing capacity in high-altitude deer mice