meta-analysis | Q815382 |
scholarly article | Q13442814 |
P2093 | author name string | Yu Chen | |
Yuxiao Wang | |||
Yongjun Luo | |||
Hongxiang Lu | |||
P2860 | cites work | DD angiotensin-converting enzyme gene polymorphism is associated with endothelial dysfunction in normal humans | Q77767164 |
Sequencing of 50 human exomes reveals adaptation to high altitude | Q24599025 | ||
Statistical aspects of the analysis of data from retrospective studies of disease | Q27860916 | ||
Historical perspectives of cellular oxygen sensing and responses to hypoxia | Q28140830 | ||
Genetic evidence for high-altitude adaptation in Tibet | Q28282435 | ||
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Association of angiotensin-converting enzyme gene insertion/deletion polymorphism with high-altitude pulmonary oedema: a meta-analysis | Q33883124 | ||
High-altitude haematology: Quechua-Aymara comparisons | Q34057317 | ||
An insertion/deletion polymorphism in the angiotensin I-converting enzyme gene accounting for half the variance of serum enzyme levels | Q34262228 | ||
Mitochondrial DNA variant associated with Leber hereditary optic neuropathy and high-altitude Tibetans. | Q34269615 | ||
Angiotensin-converting enzyme genotype and the ventilatory responseto exertional hypoxia | Q34277112 | ||
Angiotensin-converting enzyme and genetics at high altitude | Q34301971 | ||
Association of angiotensin-converting enzyme gene I/D polymorphism with change in left ventricular mass in response to physical training | Q34436197 | ||
Polymorphisms of angiotensin converting enzyme and nitric oxide synthase 3 genes as risk factors of high-altitude pulmonary edema: a case-control study and meta-analysis | Q34679269 | ||
Adrenergic contribution during acclimatization to high altitude: perspectives from Pikes Peak | Q35057980 | ||
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Unifying theory of hypoxia tolerance: molecular/metabolic defense and rescue mechanisms for surviving oxygen lack. | Q37354077 | ||
Maternal hemoglobin level and fetal outcome at low and high altitudes | Q37422101 | ||
Angiotensin-converting enzyme, renin-angiotensin system and human performance | Q37583360 | ||
Transforming growth factorβ1 L10P variant plays an active role on the breast cancer susceptibility in Caucasian: evidence from 10,392 cases and 11,697 controls. | Q37720445 | ||
Gene polymorphisms and high-altitude pulmonary edema susceptibility: a 2011 update | Q38003079 | ||
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Mitochondrial DNA response to high altitude: a new perspective on high-altitude adaptation | Q38076729 | ||
Angiotensin I-converting enzyme in human circulating mononuclear cells: genetic polymorphism of expression in T-lymphocytes | Q41573426 | ||
Angiotensin-converting enzyme (ACE) I/D genotype and renal ACE gene expression | Q44152987 | ||
Genetic associations with mountain sickness in Han and Tibetan residents at the Qinghai-Tibetan Plateau | Q44587937 | ||
New aspects of altitude adaptation in Tibetans: a proteomic approach | Q44735800 | ||
Renin angiotensin aldosterone system and ACE I/D gene polymorphism in high-altitude pulmonary edema | Q45159658 | ||
ACE genotype and risk of high altitude pulmonary hypertension in Kyrghyz highlanders. | Q47892169 | ||
The association of angiotensin-converting enzyme gene insertion/deletion polymorphisms with acute mountain sickness susceptibility: a meta-analysis | Q48204401 | ||
Vascular angiotensin-converting enzyme expression regulates local angiotensin II. | Q53003378 | ||
Mitochondrial nt3010G-nt3970C haplotype is implicated in high-altitude adaptation of Tibetans. | Q54337155 | ||
Adaptation to high altitude in Sherpas: association with the insertion/deletion polymorphism in the Angiotensin-converting enzyme gene. | Q54542666 | ||
[Association of polymorphisms of 1772 (C-->T) and 1790 (G-->A) in HIF1A gene with hypoxia adaptation in high altitude in Sherpas] | Q57105386 | ||
Predominance of interaction among wild-type alleles of CYP11B2 in Himalayan natives associates with high-altitude adaptation | Q57106077 | ||
Endothelin-1 gene variants and levels associate with adaptation to hypobaric hypoxia in high-altitude natives | Q57106667 | ||
Genetic polymorphisms in the Renin-Angiotensin system in high-altitude and low-altitude Native American populations | Q57109737 | ||
Angiotensin converting enzyme insertion allele in relation to high altitude adaptation | Q57111274 | ||
Human angiotensin I-converting enzyme gene and endurance performance | Q57113794 | ||
Angiotensin-converting enzyme (ACE) alleles in the Quechua, a high altitude South American native population | Q57114027 | ||
Effects of exposure to high altitude on plasma endothelin-1 levels in normal subjects | Q57117790 | ||
Respiratory adaptation in the highest inhabitants and highest Sherpa mountaineers | Q57122908 | ||
Angiotensin converting enzyme activity and hypoxia | Q70160886 | ||
Angiotensin-converting enzyme in the human heart. Effect of the deletion/insertion polymorphism | Q72034083 | ||
Enhanced pressor response to angiotensin I in normotensive men with the deletion genotype (DD) for angiotensin-converting enzyme | Q72282330 | ||
Angiotensin-converting enzyme gene polymorphism has no influence on the circulating renin-angiotensin-aldosterone system or blood pressure in normotensive subjects | Q72347776 | ||
ACE insertion/deletion genotype affects bradykinin metabolism | Q77227510 | ||
P433 | issue | 1 | |
P921 | main subject | high altitude | Q59775044 |
P304 | page(s) | 1470320315627410 | |
P577 | publication date | 2016-01-01 | |
P1433 | published in | Journal of the Renin-Angiotensin-Aldosterone System | Q6296180 |
P1476 | title | The association of angiotensin-converting enzyme gene insertion/deletion polymorphisms with adaptation to high altitude: A meta-analysis. | |
P478 | volume | 17 |
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