解剖学报 ›› 2020, Vol. 51 ›› Issue (1): 139-149.doi: 10.16098/j.issn.0529-1356.2020.01.025
杨尚冰 陈慧敏 段琬琪 李海军* 陈峰 戴成萍
收稿日期:
2019-07-05
修回日期:
2019-11-13
出版日期:
2020-02-06
发布日期:
2020-04-21
通讯作者:
李海军
E-mail:lihaijunchina@hotmail.com
YANG Shang-bing CHEN Hui-min DUAN Wan-qi LI Hai-jun* CHEN Feng DAI Cheng-ping
Received:
2019-07-05
Revised:
2019-11-13
Online:
2020-02-06
Published:
2020-04-21
Contact:
LI Hai-jun
E-mail:lihaijunchina@hotmail.com
摘要:
中图分类号:
杨尚冰 陈慧敏 段琬琪 李海军 陈峰 戴成萍. 近年来新方法在国内古代人类遗骸研究中的应用[J]. 解剖学报, 2020, 51(1): 139-149.
YANG Shang-bing CHEN Hui-min DUAN Wan-qi LI Hai-jun CHEN Feng DAI Cheng-ping. Application of new methods on the study of ancient human remains in China in recent years[J]. Acta Anatomica Sinica, 2020, 51(1): 139-149.
[1] Xing S, Liu W. Morphometric analysis of Chinese teeth: molar crown and cusp areas of a recent north Chinese population[J]. Acta Anthropologica Sinica, 2009, 28(2): 179-191. (in Chinese)
邢松, 刘武. 中国人牙齿形态测量分析——华北近代人群臼齿齿冠及齿尖面积[J]. 人类学学报, 2009, 28(2): 179-191.
[2] Zhou YW, Li HJ, Zhu H. Measurement analysis of the crown base area and cusp base area of the M1 of Northern Chinese in the Holocene[J]. Acta Anthropologica Sinica, 2013, 32(3): 319-329. (in Chinese)
周亚威, 李海军, 朱泓. 全新世中国北方人群第一臼齿齿冠面积和齿尖相对面积的测量分析[J].人类学学报, 2013, 32(3): 319-329.
[3]Chen LW, Gao GZh. Measurement of the projection area of Anhui adult’s palm side and the correlation[J]. Acta Anatomica Sinica, 2017, 48(2): 204-208. (in Chinese)
陈立武, 高国柱. 安徽成人手掌侧投影面积测定及相关性[J]. 解剖学报, 2017, 48(2): 204-208.
[4] Wu XJ, Liu W, Dong W, et al. The brain morphology of Homo Liujiang cranium fossil by three-dimensional computed tomography [J]. Chinese Science Bulletin, 2008, 53(13): 1570-1575.
吴秀杰, 刘武, 董为, 等. 柳江人头骨化石的CT扫描与脑形态特征[J]. 科学通报, 2008, 53(13): 1570-1575.
[5] Li ZhY, Wu XJ, Zhou LP, et al. Late Pleistocene archaic human crania from Xuchang, China[J]. Science, 2017, 355(6328): 969-972.
[6] Wu XJ, Zhang YM. The temporal bony labyrinthine morphology of Lantian Homo erectus from gongwangling, Shaanxi Province[J]. Acta Anthropologica Sinica, 2016, 35(1): 14-23. (in Chinese)
吴秀杰, 张亚盟. 陕西公王岭蓝田直立人内耳迷路的复原及形态特点[J]. 人类学学报, 2016, 35(1): 14-23.
[7] Zhang LZh, Zhao LX. Enamel thickness of gigantopithecus blacki and its significance for dietary adaptation ad phylogeny[J]. Acta Anthropologica Sinica, 2013, 32(3): 365-376. (in Chinese)
张立召, 赵凌霞. 巨猿牙齿釉质厚度及对食性适应与系统演化的意义[J]. 人类学学报, 2013, 32(3): 365-376.
[8] Xing S, Martinóntorres M, Bermúdez de Castro JM, et al. Middle Pleistocene hominin teeth from Longtan Cave, Hexian, China[J]. PLoS One, 2014, 9(12): e114265.
[9] Liu Ch, Tang YCh, Ge HT, et al. Increasing breadth of the frontal lobe but decreasing height of the human brain between two Chinese samples from a Neolithic site and from living humans[J]. Am J Phys Anthropol, 2014,154(1):94-103.
[10]Xing S, Carlson KJ, Wei PP, et al. Morphology and structure of Homo erectus humeri from Zhoukoudian, Locality 1[J]. Peer J, 2018, 6(1): e4279
[11]Zhang Q, Wang Q, Kong BY, et al. A scientific analysis of cranial trepanation from an Early Iron Age cemetery on the ancient Silk Road in Xinjiang, China[J]. Archaeol Anthropol Sci, 2018, 10(6): 1319-1327.
[12]Wu XJ, Pei ShW, Cai YJ, et al. Archaic human remains from Hualongdong, China, and Middle Pleistocene human continuity and variation[J]. Proc Natl Acad Sci USA, 2019, 116(20):9820-9824.
[13]Pan L, Dumoncel J, Mazurier A, et al. Structural analysis of premolar roots in Middle Pleistocene hominins from China[J]. J Hum Evol, 2019, 136: 1-13.
[14]Zhang Q, Liu P, Yeh HY, et al. Intentional cranial modification from the Houtaomuga Site in Jilin, China: Earliest evidence and longest in situ practice during the Neolithic Age[J]. Am J Phys Anthropol, 2019, 169(2): 1-10.
[15]Zhang QCh, Zhang Q, Han T, et al. An Iron Age skull with a bone neoplasm from Nilka County, Xinjiang, China[J]. Int J Osteoarchaeol, 2019, 1: 8.
[16]Chen D, Yao J. The progress of three-dimensional occlusion model measurement[J]. Medical Recapitulate, 2011,17(6): 935-937. (in Chinese)
陈栋, 姚军. 牙颌模型测量的三维进展[J]. 医学综述, 2011, 17(6): 935-937.
[17]Pan L, Wei D, Wu XJ. Latitudinal and climatic distributions of 3D craniofacial features among Holocene populations[J]. Scientia Sinica(Terrae), 2014, 44(8): 1844-1853. (in Chinese)
潘雷, 魏东, 吴秀杰. 现代人颅骨头面部表面积的纬度分布特点及其与温度的关系[J]. 中国科学: 地球科学, 2014, 44(8):1844-1853.
[18]Wu XJ, Pan L. Identification of Zhoukoudian Homo erectus brain asymmetry using 3D laser scanning[J]. Chinese Science Bulletin, 2011, 56(16):1282-1287. (in Chinese)
吴秀杰, 潘雷. 利用3D激光扫描技术分析周口店直立人脑的不对称性[J]. 科学通报, 2011, 56(16): 1282-1287.
[19]Xing S, Zhang YY, Liu W. Morphological comparison of the ZKD 3 and 5 skulls and the probable population isolation as reflected by evolutionary rates[J]. Acta Anthropologica Sinica, 2012, 31(3):250-258. (in Chinese)
邢松, 张银运, 刘武. 周口店直立人3号与5号头骨形态特征对比及其演化速率所反映的群体隔离[J]. 人类学学报, 2012, 31(3): 250-258.
[20]Liu W, Jin ChZh, Zhang YQ, et al. Human remains from Zhirendong, South China, and modern human emergence in East Asia[J]. Proc Natl Acad Sci USA, 2010, 107(45):19201-19206.
[21]Zhang L. An examination of three dimensional reconstruction of animal skeleton [J]. Sichuan Cultural Relics, 2014, (6): 81-83. (in Chinese)
张蕾. 动物骨骼三维重建的探索[J]. 四川文物, 2014, (6): 81-83.
[22]Wang CB, Zhao LX. New observations of linear enamel hypoplasia from late miocene Lufengpithecus lufengensis of Yunnan, South China[J]. Acta Anthropologica Sinica, 2015, 34(4): 544-552. (in Chinese)
王翠斌, 赵凌霞. 禄丰古猿带状牙釉质发育不全的再观察[J]. 人类学学报, 2015, 34(4): 544-552.
[23]Wang CB, Zhao LX. Perikymata counts and crown formation time of anterior teeth of Lufengpithecus lufengensis[J]. Acta Anthropologica Sinica, 2016, 35(1): 101-108. (in Chinese)
王翠斌, 赵凌霞. 禄丰古猿前部牙齿的釉面横纹与牙冠形成时间[J]. 人类学学报, 2016, 35(1): 101-108.
[24]Sun ChK, Xing S, Martín-Francés L, et al. Interproximal grooves on the Middle Pleistocene hominin teeth from Yiyuan, Shandong Province: New evidence for tooth-picking behavior from eastern China[J]. Quaternary International, 2014, 354: 162-168.
[25]Hu R, Zhao LX, Wu XZh. Periodicity of Retzius lines in fossil Pongo from South China[J]. Chinese Science Bulletin, 2012, 57(6): 448-452. (in Chinese)
胡荣, 赵凌霞, 吴新智. 华南化石猩猩牙齿的芮氏线生长周期[J]. 科学通报, 2012, 57(6): 448-452.
[26]Hu R, Zhao LX. Daily cuspal enamel secretion rates of fossil orangutans from Guangxi, China[J]. Acta Anthropologica Sinica, 2018,37(3): 442-451. (in Chinese)
胡荣, 赵凌霞. 广西化石猩猩牙尖釉质的日分泌率[J]. 人类学学报, 2018, 37(3): 442-451.
[27]Zhang QCh, Han T, Zhang Q. Micro marks analysis on the dental wear of human bone unearthed in Shanshan, Xinjiang[J]. The Western Regions Studies, 2018(3): 83-88. (in Chinese)
张全超, 韩涛, 张群. 新疆鄯善洋海墓地出土人骨的牙齿微磨耗痕迹研究[J]. 西域研究, 2018(3): 83-88.
[28]Xing S, Tafforeau P,O’Hara M, et al. First systematic assessment of dental growth and development in an archaic hominin (genus, Homo) from East Asia[J]. Sci Adv, 2019, 5(1):10.
[29]Shui WY, Zhou MQ, Wu ZhK, et al. An approach of craniofacial reconstruction based on registration[J]. Journal of Computer-Aided Design and Computer Graphies, 2011, 23(4): 607-614. (in Chinese)
税午阳, 周明全, 武仲科, 等. 数据配准的颅骨面貌复原方法[J]. 计算机辅助设计与图形学学报, 2011, 23(4): 607-614.
[30]Wu RK, Wu XZh, Wang CY. New reconstruction of physiognomy of sinanthropus woman[J]. Vertebrate Paleontology and Paleoanthropology, 1959, 1(3):147-150. (in Chinese)
吴汝康, 吴新智, 王存义. 中国猿人女性头象的复原[J]. 古脊椎动物与古人类, 1959, 1(3): 147-150.
[31]Zhao ZhY. New reconstruction of Lufengpithecus [J]. Fossils, 1990, (4): 32. (in Chinese)
赵中义. 禄丰古猿的复原[J]. 化石, 1990, (4): 32.
[32]Zhu H, Zhu H, Lin XCh. The racial anthropological type, DNA analysis and facial reconstruction of human skull from the Han Dynastical tomb of Laoshan Site in Beijing[J]. Jilin University Journal Social Sciences Edition, 2004, (2): 21-27. (in Chinese)
朱泓, 周慧, 林雪川. 老山汉墓女性墓主人的种族类型、DNA分析和颅像复原[J]. 吉林大学社会科学学报, 2004, (2): 21-27.
[33]Shui WY, Wu XJ. Three-dimensional craniofacial reconstruction of an ancient Qihe human skull[J]. Chinese Science Bulletin, 2018, 63(8): 745-754. (in Chinese)
税午阳, 吴秀杰. 奇和洞古人类头骨面貌的三维虚拟复原[J]. 科学通报, 2018, 63(8): 745-754.
[34]Wu XJ, Schepartz LA, Liu W, et al. Antemortem trauma and survival in the late Middle Pleistocene human cranium from Maba, South China[J]. Proc Natl Acad Sci USA, 2011, 108(49): 19558-19562.
[35]Wu XJ, Xing S, Trinkaus E. An enlarged parietal foramen in the late archaic Xujiayao 11 neurocranium from Northern China, and rare anomalies among pleistocene Homo[J]. PLoS One, 2013, 8(3): e59587.
[36]Wu XJ, Jin ChZh, Cai YJ, et al. Dental caries and mandibular anomalies of Earlier Modern Humans from the Zhirendong Site, Chongzuo, Guangxi[J]. Acta Anthropologica Sinica, 2013, 32(3): 293-301. (in Chinese)
吴秀杰, 金昌柱, 蔡演军, 等. 广西崇左智人洞早期现代人龋病及牙槽骨异常研究[J]. 人类学学报, 2013, 32(3): 293-301.
[37]Zhang H, Merrett DC, Jing ZhCh, et al. Osteoarchaeological studies of human systemic stress of early urbanization in Late Shang at Anyang, China[J]. PLoS One, 2016,11(4): e0151854.
[38]Zhang H, Merrett DC, Jing ZhCh, et al. Osteoarthritis, labour division, and occupational specialization of the Late Shang China-insights from Yinxu (ca.1250-1046 B.C.)[J]. PLoS One, 2017, 12(5): e0176329.
[39]Sun L, Pechenkina K, Cao YP. Cases of endocranial lesions on juvenile skeletons from Longshan cultural sites in Henan Province, China[J]. Int J Paleopathol, 2019, 26:61-74.
[40]Zelditch ML, Swiderski DL, Sheets HD. Geometric Morphometrics for Biologists: A Primer [M]. Academic Press, 2012, (2): 1-488.
[41]Bookstein FL. Landmark methods for forms without landmarks: morphometrics of group differences in outline shape[J]. Med Image Anal, 1997, 1(3): 225-243.
[42]Liu W, Schepartz LA, Xing S, et al. Late Middle Pleistocene hominin teeth from Panxian Dadong, South China[J]. J Hum Evol, 2013, 64(5): 337-355.
[43]Zhou M, Cui YM, Xing S. Analyzing enamel-dentine junction (EDJ) shape in recent Chinese upper premolars using 3D geometric morphometrics[J]. Acta Anthropologica Sinica, 2016, 35(4): 585-597. (in Chinese)
周蜜, 崔娅铭, 邢松. 中国近代人群上颌前臼齿釉质——齿质连接面形状的三维几何形态测量[J]. 人类学学报, 2016, 35(04): 585-597.
[44]Cui YM. Comparison of frontal morphology among modern major populations: a 3D geometric morphometric study[J]. Acta Anthropologica Sinica, 2018, 37(2): 228-240. (in Chinese)
崔娅铭. 现代各主要人群额骨3D几何形态的对比[J]. 人类学学报, 2018, 37(2): 228-240.
[45]Liu W, Zheng L, Walker A. Three-dimensional morphometric analyses of hominoid lower molars from YuanMou of Yunnan province[J]. Acta Anthropologica Sinica, 2001, 20(3): 163-177. (in Chinese)
刘武, 郑良, Alan Walker. 元谋古猿下颌臼齿三维立体特征[J]. 人类学学报, 2001, 20(3): 163-177.
[46]He JN, Fang YS, He HSh, et al. Biochemical analysis and morphological variation of Gaozi human fossil femurs[J]. Chinese Science Bulletin, 2012, 57 (10): 830-838. (in Chinese)
何嘉宁, 房迎三, 何汉生, 等. “高资人”化石与股骨形态变异的生物力学分析[J]. 科学通报, 2012, 57(10): 830-838.
[47]Li FJ, Chen WJ. The activity model of prehistoric people in the Liyudun site: a biomechanical analysis of bone[J]. Acta Anthropologica Sinica, 2017, 36(2): 193-215. (in Chinese)
李法军, 陈伟驹. 鲤鱼墩遗址史前人类行为模式的骨骼生物力学分析[J]. 人类学学报, 2017, 36(2): 193-215.
[48]He JN. Temporal change of mobility and subsistence strategies in Jundushan Bronze Age pastoralists[J]. Acta Anthropologica Sinica, 2016, 35(2): 238-245. (in Chinese)
何嘉宁. 军都山古代人群运动模式及生活方式的时序性变化[J]. 人类学学报, 2016, 35(2): 238-245.
[49]Li HJ, Zhang QCh, Zhu H. The size variation and related implications of mandibles in Northern China in the past 7000 years[J]. Chinese Science Bulletin, 2012, 57(4): 258-266. (in Chinese)
李海军, 张全超, 朱泓. 近7000年来中国北方人群下颌骨尺寸变化及意义[J]. 科学通报, 2012, 57(4): 258-266. [50]Zhao YSh, Guo L, Hao DH, et al. A study of the foot-binding phenomenon of Qing Dynasty females in Shandong Province[J]. Acta Anthropologica Sinica, 2017, 36(3): 344-358. (in Chinese)
赵永生, 郭林, 郝导华, 等.山东地区清墓中女性居民的缠足现象[J]. 人类学学报, 2017, 36(3): 344-358.
[51]Du BP, Zhang LZh, Zhao LX. Comparison of femoral neck cross-sectional morphology between gorilla and human[J]. Acta Anatomica Sinica, 2018, 49 (5): 666-670. (in Chinese)
杜抱朴, 张立召, 赵凌霞. 大猩猩和现代人股骨颈截面形态对比分析[J]. 解剖学报, 2018, 49(5): 666-670.
[52]Ruff CB. Body size, body shape, and long bone strength in modern humans[J]. J Hum Evol, 2000, 38(2): 269-290.
[53]Lieverse AR. Diet and the aetiology of dental calculus[J]. Int J Osteoarcheol, 1999, 9(4): 219-232.
[54]Li MQ, Yang XY, Wang H, et al. Starch grains from dental calculus reveal ancient plant foodstuffs at Chenqimogou site, Gansu Province[J]. Scientia Sinica Terrae, 2010, 53(5): 694-699. [55]Tao DW. Investigation of plant food sources at Peiligang Site based on starch grain analysis of human dental calculus[J]. Sciences of Conservation and Archaeology, 2018, 30 (2): 1-9. (in Chinese)
陶大卫. 基于人牙结石的淀粉粒证据探讨裴李岗遗址先民植物性食物来源[J]. 文物保护与考古科学, 2018, 30(2): 1-9.
[56]Hu YW, Richards MP, Liu W, et al. Application of bone chemistry analysis to the studies of hominin dietary evolution[J]. Advances In Earth Science, 2008, 23(3): 228-235. (in Chinese)
胡耀武, Michael P. Richard, 刘武, 等. 骨化学分析在古人类食物结构演化研究中的应用[J].地球科学进展, 2008, 23(3): 228-235.
[57]Hu YW, Shang H, Tong HW, et al. Stable isotope dietary analysis of the Tianyuan 1 early modern human[J]. Proc Natl Acad Sci USA, 2009, 106(27): 10971-10974.
[58]Xia Y, Zhang JL, Yu F, et al. Breastfeeding, weaning, and dietary practices during the Western Zhou Dynasty (1122-771 BC) at Boyangcheng, Anhui Province, China[J]. Am J Phys Anthropol, 2018, 165(2), 343-352.
[59]Guo Y, Xia Y, Dong YF, et al. Stable isotopic analysis of human remains from the Beiliu site [J]. Archaeology and Cultural Relics, 2016, (1):115-120. (in Chinese)
郭怡, 夏阳, 董艳芳, 等. 北刘遗址人骨的稳定同位素分析[J]. 考古与文物, 2016, (1): 115-120.
[60]Dong Y, Morgan C, Chinenov Y, et al. Shifting diets and the rise of male-biased inequality on the Central Plains of China during Eastern Zhou[J]. Proc Natl Acad Sci USA, 2017, 114(5): 932-937.
[61]Yi B, Zhang JL, Cai BT, et al. Osteobiography of a seventh-century potter at the Oupan kiln, China by osteological and multi-isotope approach[J]. Sci Rep, 2019, (9):12475.
[62]Fu QM, Gao X, Stenzel U, et al. DNA analysis of an early modern human from Tianyuan Cave, China[J]. Proc Natl Acad Sci USA, 2013, 110(6): 2223-2227.
[63]Wen ShQ, Wang ChCh, Ao X, et al. Ancient DNA supports Emperor Cao’s paternal genetic lineage belonging to haplogroup O2[J]. Acta Anthropologica Sinica, 2016, 35(4): 617-625. (in Chinese)
文少卿, 王传超, 敖雪, 等. 古DNA证据支持曹操的父系遗传类型属于单倍群O2[J]. 人类学学报, 2016, 35(4): 617-625.
[64]Wang ChCh, Reinhold S, Kalmykov A, et al. Ancient human genome-wide data from a 3000-year interval in the Caucasus corresponds with eco-geographic regions[J]. Nat Commun, 2019,10(1): 590.
[65]Chen FH, Welker F, Shen ChCh, et al. A late Middle Pleistocene Denisovan mandible from the Tibetan Plateau[J]. Nature, 2019, 569: 409-412.
[66]Fu QM, Li H, Moorjani P, et al. Genome sequence of a 45000-year-old modern human from western Siberia[J]. Nature, 2014, 514:445-449.
[67]Wei PP, Xing S. Bilateral asymmetry in human femoral cross-sectional surface areas and shapes: morphometric analysis using 3D laser scanning[J]. Acta Anthropologica Sinica, 2013, 32 (3): 354-364. (in Chinese)
魏偏偏, 邢松.人类股骨断面面积与形状的不对称性——基于三维激光扫描的形态测量分析[J]. 人类学学报, 2013, 32(3): 354-364.
[68]Hou HD, Liu M, Gong KR, et al. Growth of the skull in young children in Baotou, China [J]. Child’s Nervous System, 2014, 30(9):1511-1515.
[69]Tan JZ, Peng QQ, Li JX, et al. Characteristics of dental morphology in Xinjiang Uyghurs and the correlation with the EDARV370A variant[J]. Scientia Sinica Vitae, 2014, 57(5): 510-518.
|
[1] | 李海军 黄玉清 方璐瑜 陈峰 戴成萍. 几何形态测量方法在古代人类遗骸研究中的应用[J]. 解剖学报, 2020, 51(2): 306-312. |
[2] | 王娜;李伟. 中国近代与青铜铁器时代人群下颌磨牙磨耗的分析与比较[J]. , 2012, 43(2): 273-277. |
[3] | 李海军;戴成萍. 青铜铁器时代新疆、内蒙古人群下颌磨牙的磨耗[J]. , 2011, 42(4): 558-561. |
[4] | 李海军;. 新石器时代至近代成年男性下颌骨颏孔、下颌孔大小的变化[J]. , 2011, 42(3): 403-405. |
[5] | 周蜜;邢松;. 华中地区近代人群上、下颌第一臼齿齿冠及齿尖面积[J]. , 2010, 41(5): 737-744. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||