Limits on inferring genetic adaptation to high altitude in Himalayan and Andean populations.
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[1] F. Powell,et al. Functional genomics and the comparative physiology of hypoxia. , 2003, Annual review of physiology.
[2] T. Brutsaert,et al. Higher arterial oxygen saturation during submaximal exercise in Bolivian Aymara compared to European sojourners and Europeans born and raised at high altitude. , 2000, American journal of physical anthropology.
[3] L. Almasy,et al. Quantitative trait locus mapping using human pedigrees. , 2000, Human biology.
[4] T. Brutsaert,et al. Effect of developmental and ancestral high-altitude exposure on VO(2)peak of Andean and European/North American natives. , 1999, American journal of physical anthropology.
[5] D. Devine,et al. Beta-fibrinogen allele frequencies in Peruvian Quechua, a high-altitude native population. , 1999, American journal of physical anthropology.
[6] B. Ponder,et al. Accumulation of p53 protein is frequent in ovarian cancers associated with BRCA1 and BRCA2 germline mutations. , 1999, Journal of clinical pathology.
[7] B. Neyns,et al. High frequency of BRCA1/2 germline mutations in 42 Belgian families with a small number of symptomatic subjects , 1999, Journal of medical genetics.
[8] R. Martorell,et al. Role of intergenerational effects on linear growth. , 1999, The Journal of nutrition.
[9] D. Devine,et al. Angiotensin-converting enzyme (ACE) alleles in the Quechua, a high altitude South American native population. , 1999, Annals of human biology.
[10] J. Blangero,et al. Hemoglobin concentration of high-altitude Tibetans and Bolivian Aymara. , 1998, American journal of physical anthropology.
[11] P. W. Hochachka,et al. Mechanism and evolution of hypoxia-tolerance in humans. , 1998, The Journal of experimental biology.
[12] H. Gunga,et al. Our ancestral physiological phenotype: an adaptation for hypoxia tolerance and for endurance performance? , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[13] L. Almasy,et al. Ventilation and hypoxic ventilatory response of Tibetan and Aymara high altitude natives. , 1997, American journal of physical anthropology.
[14] B. Kaufman,et al. High frequency of BRCA1 and BRCA2 germline mutations in Ashkenazi Jewish ovarian cancer patients, regardless of family history. , 1997, Gynecologic oncology.
[15] J. Blangero,et al. Quantitative genetic analysis of arterial oxygen saturation in Tibetan highlanders. , 1997, Human biology.
[16] J. Steinacker,et al. After-effects of a high altitude expedition on blood. , 1997, International journal of sports medicine.
[17] M. de Onís,et al. Effectiveness of interventions to prevent or treat impaired fetal growth. , 1997, Obstetrical & gynecological survey.
[18] N Risch,et al. The Future of Genetic Studies of Complex Human Diseases , 1996, Science.
[19] J. Holden,et al. Sherpa brain glucose metabolism and defense adaptations against chronic hypoxia. , 1996, Journal of applied physiology.
[20] P. Cerretelli,et al. Muscle ultrastructure and biochemistry of lowland Tibetans. , 1996, Journal of applied physiology.
[21] J. Bernardo. MATERNAL EFFECTS IN ANIMAL ECOLOGY , 1996 .
[22] D. F. Roberts,et al. The History and Geography of Human Genes , 1996 .
[23] Ravi S. Menon,et al. 31P magnetic resonance spectroscopy of the Sherpa heart: a phosphocreatine/adenosine triphosphate signature of metabolic defense against hypobaric hypoxia. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[24] L. Greksa. Evidence for a genetic basis to the enhanced total lung capacity of Andean highlanders. , 1996, Human biology.
[25] L. Moore,et al. Arterial oxygen saturation in Tibetan and Han infants born in Lhasa, Tibet. , 1995, The New England journal of medicine.
[26] J. Holden,et al. Enhanced cardiac metabolism of plasma glucose in high-altitude natives: adaptation against chronic hypoxia. , 1995, Journal of applied physiology.
[27] M. Kerin,et al. Linkage analysis and the susceptibility gene (BRCA-1) in familial breast cancer. , 1995, European journal of surgical oncology : the journal of the European Society of Surgical Oncology and the British Association of Surgical Oncology.
[28] T. Brutsaert,et al. Developmental, genetic, and environmental components of aerobic capacity at high altitude. , 1995, American journal of physical anthropology.
[29] J. Blangero,et al. Major gene for percent of oxygen saturation of arterial hemoglobin in Tibetan highlanders. , 1994, American journal of physical anthropology.
[30] P. Cerretelli,et al. The metabolic and ventilatory response to exercise in Tibetans born at low altitude. , 1994, Respiration physiology.
[31] K. Kubo,et al. Higher exercise performance and lower VO2max in Tibetan than Han residents at 4,700 m altitude. , 1994, Journal of applied physiology.
[32] T. Garland,et al. Why Not to Do Two-Species Comparative Studies: Limitations on Inferring Adaptation , 1994, Physiological Zoology.
[33] J. Holden,et al. The Brain at High Altitude: Hypometabolism as a Defense against Chronic Hypoxia? , 1994 .
[34] M. D. De Latour,et al. Detection of allelic losses on 17q12-q21 chromosomal region in benign lesions and malignant tumors occurring in a familial context. , 1994, Oncogene.
[35] L. Moore,et al. Protection from intrauterine growth retardation in Tibetans at high altitude. , 1993, American journal of physical anthropology.
[36] P. W. Hochachka. Muscle enzymatic composition and metabolic regulation in high altitude adapted natives. , 1992, International journal of sports medicine.
[37] B. Groves,et al. Are Tibetans Better Adapted? , 1992, International journal of sports medicine.
[38] J. Weber,et al. Closing in on a breast cancer gene on chromosome 17q. , 1992, American journal of human genetics.
[39] L. Moore,et al. Increased vital and total lung capacities in Tibetan compared to Han residents of Lhasa (3,658 m). , 1991, American journal of physical anthropology.
[40] F. Léon-Velarde,et al. Physiological adaptation to high altitude: oxygen transport in mammals and birds. , 1991, Physiological reviews.
[41] A. Robins. Biological Perspectives on Human Pigmentation , 1991 .
[42] G. Matheson,et al. Skeletal muscle metabolism and work capacity: a 31P-NMR study of Andean natives and lowlanders. , 1991, Journal of applied physiology.
[43] G. Matheson,et al. Metabolic and work efficiencies during exercise in Andean natives. , 1991, Journal of applied physiology.
[44] L. Moore,et al. Greater maximal O2 uptakes and vital capacities in Tibetan than Han residents of Lhasa. , 1990, Respiration physiology.
[45] S. Stearns. The Evolutionary Significance of Phenotypic PlasticityPhenotypic sources of variation among organisms can be described by developmental switches and reaction norms , 1989 .
[46] Van Noordwijk,et al. Reaction Norms in EcologyStudies of the great tit exemplify the combination of ecophysiology and quantitative genetics , 1989 .
[47] S. Lahiri,et al. Respiratory adaptation in the highest inhabitants and highest Sherpa mountaineers. , 1989, Respiration physiology.
[48] P. C. Harris,et al. Chronic mountain sickness in Tibet. , 1989, The Quarterly journal of medicine.
[49] R. Chakraborty,et al. Ethnicity determination by names among the Aymara of Chile and Bolivia. , 1989, Human biology.
[50] M. Sherpa,et al. Different hematologic responses to hypoxia in Sherpas and Quechua Indians. , 1989, Journal of applied physiology.
[51] Greksa Lp,et al. Effect of altitude on the stature, chest depth and forced vital capacity of low-to-high altitude migrant children of European ancestry. , 1988 .
[52] S. Powers,et al. Hemoglobin desaturation in highly trained athletes during heavy exercise. , 1986, Medicine and science in sports and exercise.
[53] R. Johnson,et al. Functional capacities of lungs and thorax in beagles after prolonged residence at 3,100 m. , 1985, Journal of applied physiology.
[54] W. Téllez,et al. Haematology and erythrocyte metabolism in man at high altitude: an Aymara-Quechua comparison. , 1985, American journal of physical anthropology.
[55] L. Moore,et al. Migration of the elderly from high altitudes in Colorado. , 1985, JAMA.
[56] M. Chappell,et al. Biochemical and physiological correlates of deer mouse alpha-chain hemoglobin polymorphisms. , 1984, Proceedings of the National Academy of Sciences of the United States of America.
[57] J. Regensteiner,et al. Adaptation to High Altitude , 1983 .
[58] J. West. Respiratory and circulatory control at high altitudes. , 1982, The Journal of experimental biology.
[59] L. Snyder. Deer Mouse Hemoglobins: Is There Genetic Adaptation to High Altitude? , 1981 .
[60] E. Frongillo,et al. Altitude, ethnic and sex differences in birth weight and length in Bolivia. , 1980, Human biology.
[61] F. Rothhammer,et al. Part IV: Genes and epidemiology in anthropological adaptation studies: Familial correlations in lung function in populations residing at different altitudes in Chile , 1980 .
[62] S. Tenney,et al. Oxygen transport during progressive hypoxia in high-altitude and sea-level waterfowl. , 1980, Respiration physiology.
[63] S. Gould,et al. The spandrels of San Marco and the Panglossian paradigm: a critique of the adaptationist programme , 1979, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[64] F. Rothhammer,et al. A multinational Andean genetic and health program: VI. Physiological measurements of lung function in an hypoxic environment. , 1978, Human biology.
[65] R. Ferrell,et al. The Aymara of Western Bolivia. IV. Gene frequencies for eight blood groups and 19 protein and erythrocyte enzyme systems. , 1978, American journal of human genetics.
[66] A. R. Frisancho. Developmental adaptation to high altitude hypoxia , 1977, International journal of biometeorology.
[67] A. Mourant,et al. Genetical studies at high and low altitudes in Ethiopia , 1976, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[68] Way Ab. Exercise capacity of high altitude peruvian Quechua Indians migrant to low altitude. , 1976 .
[69] R. Elston,et al. A general model for the genetic analysis of pedigree data. , 1971, Human heredity.
[70] A. R. Frisancho. Developmental responses to high altitude hypoxia. , 1970, American journal of physical anthropology.
[71] Mazess Rb. Exercise performance of Indian and white high altitude residents. , 1969 .
[72] M. A. Moore,et al. The Effects of Altitudinal Variation in Ethiopian Populations , 1969 .
[73] P. Baker. Human adaptation to high altitude. , 1969, Science.
[74] R. Akers,et al. Work capacity of long-time residents and newcomers to altitude. , 1968, Journal of applied physiology.
[75] J. Weiner,et al. The biology of human adaptability , 1967 .
[76] Cotes Je,et al. Ventilatory capacity in normal Bhutanese. , 1966 .
[77] Cedric A. B. Smith,et al. Introduction to Quantitative Genetics , 1960 .
[78] A. Allison. The distribution of the sickle-cell trait in East Africa and elsewhere, and its apparent relationship to the incidence of subtertian malaria. , 1954, Transactions of the Royal Society of Tropical Medicine and Hygiene.
[79] E. Mayr,et al. Climatic Races in Plants and Animals@@@Experimental Studies on the Nature of Species. III. Environmental Responses of Climatic Races of Achillea. , 1948 .
[80] A. Hurtado. Respiratory adaptation in the Indian natives of the peruvian andes. Studies at high altitude , 1932 .
[81] A. Hurtado. Studies at high altitude. Blood observations on the Indian Natives of the Peruvian Andes. , 1932 .
[82] L. Moore,et al. Comparative aspects of high-altitude adaptation in human populations. , 2000, Advances in experimental medicine and biology.
[83] C. Beall. Tibetan and Andean contrasts in adaptation to high-altitude hypoxia. , 2000, Advances in experimental medicine and biology.
[84] T. Brutsaert,et al. Effect of developmental and ancestral high altitude exposure on chest morphology and pulmonary function in Andean and European/North American natives , 1999, American journal of human biology : the official journal of the Human Biology Council.
[85] H. Rabb,et al. High altitude living: genetic and environmental adaptation. , 1999, Aviation Space and Environmental Medicine.
[86] J Blangero,et al. Percent of oxygen saturation of arterial hemoglobin among Bolivian Aymara at 3,900-4,000 m. , 1999, American journal of physical anthropology.
[87] L. Almasy,et al. Quantitative trait linkage mapping in anthropology. , 1999, American journal of physical anthropology.
[88] L. Moore,et al. Human adaptation to high altitude: regional and life-cycle perspectives. , 1998, American journal of physical anthropology.
[89] C. Fox,et al. Maternal effects as adaptations , 1998 .
[90] A. R. Frisancho,et al. Developmental, genetic, and environmental components of lung volumes at high altitude , 1997, American journal of human biology : the official journal of the Human Biology Council.
[91] L. Jorde,et al. Genetic adaptation to high altitude , 1994 .
[92] L. Moore,et al. Hypoxic ventilatory responsiveness in Tibetan compared with Han residents of 3,658 m. , 1993, Journal of applied physiology.
[93] L. S. Greene. G6PD deficiency as protection against falciparum malaria: An epidemiologic critique of population and experimental studies , 1993 .
[94] B. Groves,et al. Minimal hypoxic pulmonary hypertension in normal Tibetans at 3,658 m. , 1993, Journal of applied physiology.
[95] G. Matheson,et al. Overall and regional lung function in Andean natives after descent to low altitude. , 1992, Respiration physiology.
[96] Theodore Garland,et al. Physiological Differentiation of Vertebrate Populations , 1991 .
[97] J. Blangero,et al. Multivariate segregation analysis using the mixed model , 1991, Genetic epidemiology.
[98] C. Beall,et al. Variation in hemoglobin concentration among samples of high‐altitude natives in the Andes and the Himalayas , 1990, American journal of human biology : the official journal of the Human Biology Council.
[99] L. Greksa,et al. Effect of altitude on the lung function of high altitude residents of European ancestry. , 1988, American journal of physical anthropology.
[100] Harrison Ga,et al. Human biology: an introduction to human evolution variation growth and adaptability 3rd edition. , 1988 .
[101] B. Saltin,et al. Skeletal Muscle Adaptability: Significance for Metabolism and Performance , 1985 .
[102] J. Coudert,et al. Respiratory and Cardiocirculatory Responses of Acclimatization of High Altitude Natives (La Paz, 3500 m) to Tropical Lowland (Santa Cruz, 420 m) , 1982 .
[103] J. Sengupta,et al. A study of physical work capacity of sea level residents on prolonged stay at high altitude and comparison with high altitude native residents. , 1980 .
[104] F. Rothhammer,et al. The Multinational Andean Genetic and Health Program. IX. Gene frequencies and rare variants of 20 serum proteins and erythrocyte enzymes in the Aymara of Chile. , 1980, American journal of human genetics.
[105] R. Weinstein,et al. Part two: Early stress and later reproductive performance under conditions of malnutrition and high altitude hypoxia , 1977 .
[106] G. A. Harrison,et al. Respiratory function in Peruvian Quechua Indians. , 1974, Annals of human biology.
[107] A. Robinson,et al. Distribution of hereditary blood groups among Indians in South America. I. In Ecuador. , 1966, American journal of physical anthropology.
[108] M. Monge. Acclimatization in the Andes , 1948 .
[109] J. Clausen,et al. Environmental responses of climatic races of Achillea , 1948 .
[110] R. Fisher. XV.—The Correlation between Relatives on the Supposition of Mendelian Inheritance. , 1919, Transactions of the Royal Society of Edinburgh.