[1]Wang ZM,Heshka S,Wang J,et al.Body cell mass:validation of total body potassium prediction model in health children and adolesscent[J]. J Nutr, 2006, 136(4):1032-1036.
[2]Wang ZM,Heshka S,Wang J,et al. Metabolically-active portion of fat-free mass: a cellar body conposition level modeling analysis[J].Am J Physiol,2007,292(1):E49-E53.
[3]Wang ZM,Pierson RN Jr,Heymstield SB.The five-level model: a new approach to organizing body-composition research[J].Am J Clin Nutr,1992,56(1):19-28.
[4]Heymstield SB,Wang ZM,Whithess RT. Multicomponent molecular level models of body composition analysis. In: Heymsfield SB, Lohman TG, Wang ZM, et al.Human Body Composition[M]. Champaign:Human Kinetics,1996:129-148.
[5]Wang ZM. Human body composition studies: the past,present and future[J].Progress in Physiological Sciences,2000,3l(2):185-192.(in chinese)
王自勉.人体组成学:历史、现状和未来[J].生理科学进展,2000,3l(2):185-192.
[6]Xi HJ.Anthropological Study on Tibetan in Tibet[M].Beijing:Beijing Science and Technology Press,2009: 1-2.
席焕久. 西藏藏族人类学研究[M]. 北京: 北京科学技术出版社,2009: 1-2.
[7]Xi HJ, Zhang LP, Guo ZY, et al. Serum leptin concentration and its effection on puberty in Naqu Tibetan adolescents[J].Jap Physic Anthropol, 2011,30(3):111-117.
[8]Guo JP, Xi HJ, Ren F, et al. Analysis of polymorphism at sites-597 and-572 of interleukin-6 promoterin Tibetan population from Tibet autonomous region[J].Journal of Clinical Rehabilitative Tissue Engineering Research, 2007,11(34): 6912-6914.
[9]Ren F, Li C, Xi H, et al. Estimation of human age according to telomere shortening in peripheral blood leukocytes of Tibetan[J]. Am J Forensic Med Pathol, 2009,30(3):252-255.
[10]Xi HJ, Li Ch. The analysis of 757 adult’s visceral fat in Liaoning province[J]. Int J Obes, 2011,35(Suppl 2):11.
[11]Xi HJ, Du X, Li WH. Adult fat distribution and bone mineral density of Han nationality in Liaoning province[J]. Int J Obes,2011,35(Suppl 2):24.
[12]Xi HJ, Li WH, Ren F, et al. Analysis of bone mineral density of adults in Liaoning China[J]. Int J Obes,2011,35(sup2):89.
[13]Xi HJ, Li WH, Wen YF, et al. Investigation into the body composition of adults in Liaoning province[J]. Int J Obes, 2011,35(Suppl 2):90.
[14]Xi HJ, Li WH,Liu FF,et al. The asymmetric distribution of body composition in bilateral upper limbs of the Han Chinese in Liaoning[J]. Int J Obes,2011,35(Suppl 2):91.
[15]Xi HJ, Wen YF,Liu XF, et al. The influence of age and gender on fat mass in Liaoning Han Chinese[J]. Int J Obes,2011,35(Suppl 2):92.
[16]Xi HJ, Zhang MZh, Li WH. Effect of body composition diversity on bone mineral density in different ages of normal adults[J]. Int J Obes,2011,35(Suppl 2):97.
[17]Zhang HL,Xi HJ,Wen YF. Estimating the body composition of adults of Han in Liaoning province by bioelectrical impedance analysis[J]. Int J Obes,2011,35(Suppl 2):78.
[18]Zhong H,Fu Q, Baima DJ, et al. Using skinfold measurement to assess percentage body fat of adolescents in Tibetan nationality in Lhasa[J]. Chinese Journal of Anatomy, 2012,35(6):817-820.(in Chinese)
钟铧,付强,白玛多吉,等. 利用皮褶厚度推算拉萨市藏族青少年的体脂含量[J].解剖学杂志, 2012,35(6):817-820.
[19]Zhang HL, Xi HJ,Li WH, et al. Analysing the fat distribution characteristics of Han adults in Liaoning by bioelectrical impedance method[J]. Acta Anatomica Sinica, 2012,43(6):850-854. (in Chinese)
张海龙,席焕久,李文慧,等.利用生物电阻抗法分析辽宁汉族成人脂肪分布特点[J].解剖学报,2012,43(6):850-854.
[20]Zhang HL,Xi HJ,Fu Q,et al.Fat distribution characteristics of Tibetan teenagers in Tibet by bioelectrical impedance method[J]. Acta Anatomica Sinica, 2013,44(1): 120-123. (in Chinese)
张海龙,席焕久,付强,等. 利用生物电阻抗分析西藏藏族青少年脂肪分布特点[J]. 解剖学报, 2013,44(1): 120-123.
[21]Zhang HL,Xi HJ,Fu Q,et al.Analysing the muscle development characteristics of Tibetan teenagers in Tibet by using bioelectrical impedance method[J]. Acta Anatomica Sinica,2013,44(2): 292-296. (in Chinese)
张海龙,席焕久,付强,等.利用生物电阻抗法分析西藏藏族青少年肌肉发育特点[J]. 解剖学报, 2013,44(2): 292-296.
[22]Liu K,Ren F,Xi HJ.Comparative study of bone age among Tibetan adolescents at different altitude[J]. Chinese Journal of School Health, 2013,34(1):59-60. (in Chinese)
刘堃,任甫,席焕久.不同海拔地区藏族青少年骨龄发育水平分析[J].生长发育与健康, 2013,34(1):59-60.
[23]Lü P,Fan J,Xi HJ.Association of polymorphisms of rs479200 and rs480902 in EGLN1 gene with hypoxia adaptation in high altitude in Tibetans[J]. Acta Anatomica Sinica,2013,44(3):419-422. (in Chinese)
吕坡,范杰,席焕久.EGLN1基因两个位点多态性与藏族人群高原低氧适应的关系[J].解剖学报,2013,44(3):419-422.
[24]Zhang HL, Fu Q, Li WH, et al. Gender differences and age-related changes in body fat mass in Tibetan children and teenagers: an analysis by the bioelectrical impedance method[J].J Pediatr Endocrinol Metab, 2015,28(1-2):87-92.
[25]Lippl FJ, Neubauer S, Schipfer S, et al. Hypobaric hypoxia causes body weight reduction in obese subjects[J].Obesity (Silver Spring), 2010, 18(4): 675-681
[26]Tsch?p M, Strasburger CJ, Hartmann G, et al. Raised leptin concentrations at high altitude associated with loss of appetite[J]. Lancet,1998, 352(9134):1119-1120.
[27]Benso A, Broglio F, Aimaretti G, et al. Endocrine and metabolic responses to extreme altitude and physical exercise in climbers[J]. Eur J Endocrinol, 2007, 157(6):733-740.[28]Westerterp KR. Energy and water balance at high altitude[J]. News Physiol Sci, 2001, 16:134-137.
[29]Shukla V, Singh SN, Vats P,et al. Ghrelin and leptin levels of sojourners and acclimatized lowlanders at high altitude[J]. Nutr Neurosci, 2005, 8(3):161-165.
[30]Varlet-Marie E, Gaudard A, Mercier J, et al. Is whole body impedance a predictor of blood viscosity[J]? Clin Hemorheol Miciocirc, 2003, 28(3): 129-137.
[31]Siri W. Body composition from fluid spaces and density analysis of methods. In:Brozek J, Henschel A. Techniques for Measuring Body Composition[M]. Washington DC: National Academy Press, 196l:223-244. |