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V.1 - Diseases in the Pre-Roman World

from Part V - The History of Human Disease in the World Outside Asia

Published online by Cambridge University Press:  28 March 2008

Kenneth F. Kiple
Affiliation:
Bowling Green State University, Ohio
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Summary

In the past 15,000 years, epochal social and cultural changes have created fundamentally different relationships between humankind and the environment. One of the most important innovations has been the domestication of plants and animals, a major factor in the gradual establishment of agriculture as the world’s predominant economic base. The development of agriculture brought an increase in sedentism, in which human groups lived in more or less permanent communities.

Associated with farming was the domestication of animals and, in some societies, nomadic pastoralism. By about 6000 B.C., animal husbandry provided a relatively widespread and stable source of high-quality protein in the Near East. Moreover, the protein was typically produced in ways that did not compete directly for agricultural land resources. Domestic herds grazed on agricultural land after the harvest (Bentley 1987) or on land that was fallow, marginal, or inadequate for farming.

The greater control that agriculture and the domestication of animals gave people over food production resulted in food surpluses. Surplus food created the potential for the emergence of specialists such as craftsmen, merchants, and a ruler class, which are essential components of urban society, another major social change. Urbanism began in the Near East during the Chalcolithic Age (c. 4000–3200 B.C.) but had its major efflorescence during the Early Bronze Age (c. 3200–2000 B.C.)

The advent of agriculture, the domestication of animals, and the development of urbanism had a significant impact on human health. Although agriculture dramatically increased the calories that could be produced by a given individual, the emphasis on a few cultigens increased the vulnerability of agricultural societies to famine and malnutrition (Cohen 1984a).

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Publisher: Cambridge University Press
Print publication year: 1993

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References

Angel, J. L. 1957. Human biological changes in ancient Greece, with special reference to Lerna. In Year Book of the American Philosophical Society. Philadelphia.Google Scholar
Angel, J. L. 1966. Porotic hyperostosis, anemias, malarias and marshes in the prehistoric eastern Mediterranean. Science 153.CrossRefGoogle ScholarPubMed
Angel, J. L. 1971a. Disease and culture in the ancient East Mediterranean. In Proceedings of the 10th Congress of the Czechoslovak Anthropological Society at Humpolec, 1969. Prague.Google Scholar
Angel, J. L. 1971b. The people of Lerna. Washington, D.C..Google Scholar
Angel, J. L. 1972. Biological relations of Egyptian and eastern Mediterranean populations during pre-Dynastic and Dynastic times. Journal of Human Evolution 1.CrossRefGoogle Scholar
Angel, J. L. 1973. Early Neolithic people of Nea Nikomedeia. In Die Anfänge des Neolithikums vom Orient bis Nordeuropa, ed. Schwidetzky, I.. Cologne.Google Scholar
Angel, J. L. 1974. Patterns of fractures from Neolithic to modern times. Anthropologiai Közlemenyek 18.Google Scholar
Angel, J. L. 1977. Anemias of antiquity in the eastern Mediterranean. In Paleopathology Association Monograph No. 2.Google Scholar
Angel, J. L. 1984. Health as a crucial factor in the changes from hunting to developed farming in the eastern Mediterranean. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Angel, J. L., and Bisel, S. C.. 1986. Health and stress in an Early Bronze Age population. In Ancient Anatolia: Aspects of change and cultural development, ed. Canby, J. V. et al.. Madison, Wis..Google Scholar
Aspöck, H., Flamm, H., and Picher, O.. 1973. Intestinal parasites in human excrements from prehistoric saltmines of the Hallstatt period (800–350 B.C.). Zentralblatt fur Bakteriologie, Parasitenkunde, Infektionskrankheiten und Hygiene 223.Google Scholar
Aufherheide, A. C. 1985. Review of Die Anthropologische Untersuchung der C-Gruppen- und Pan-Gräber- Skelette aus Sayala, Ägyptisch-Nubien, by Strouhal, E. and Jungwirth, J.. Paleopathology Newsletter 52.Google Scholar
Bartels, P. 1907. Tuberkulose (wirbelkaries) in der jüngeren Steinzeit. Archiv für Anthropologie 6.Google Scholar
Bennike, P. 1985. Palaeopathology of Danish skeletons. Copenhagen.Google Scholar
Bisel, S. C, and Angel, J. L.. 1985. Health and nutrition in Mycenaean Greece: A study in human skeletal remains. In Contributions to Aegean archaeology: Studies in honor of William A. McDonald, ed. Wilkie, N. C. and Coulson, W. D. E.. Dubuque, Iowa.Google Scholar
Brothwell, D. R. 1960. The Bronze Age people of Yorkshire: A general survey. Advancement of Science 16.Google Scholar
Brothwell, D. R. 1961. The palaeopathology of early British man: An essay on the problems of diagnosis and analysis. Journal of the Royal Anthropological Institute 91.Google Scholar
Brothwell, D. R. 1967. The bio-cultural background to disease. In Diseases in antiquity, ed. Brothwell, D. and Sandison, A. T.. Springfield, Ill..Google Scholar
Brothwell, D. R. 1973. The human biology of the Neolithic population in Britain. In Die Anfänge des Neolithikums vom Orient bis Nordeuropa, ed. Schwidetzky, I.. Cologne.Google Scholar
Buikstra, J. E. 1976. The Caribou Eskimo: General and specific disease. American Journal of Physical Anthropology 45.CrossRefGoogle ScholarPubMed
Cockburn, A. 1963. The evolution and eradication of infectious diseases. Baltimore.Google Scholar
Cohen, M. N. 1984a. An introduction to t he symposium. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Cohen, M. N. 1984b. Paleopathology at the origins of agriculture: Editor’s summation. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Dastugue, J. 1974. Les ossements humains pathologiques. Bulletin de la Correspondance Hellenique 98.CrossRefGoogle Scholar
Dastugue, J., and Lumley, M.-A.. 1976. Les maladies des hommes pre-historiques. In La Pré–historie française, Vol. 2., ed Guilaine, J.. Paris.Google Scholar
Dawson, W. R., and Gray, P. H. K. 1968. Catalogue of Egyptian antiquities in the British Museum. Vol. 1: Mummies and human remains. London.Google Scholar
Derums, V. J. 1987. Paleopathology of Bronze Age population in Latvia. Anthropologie 25.Google Scholar
Derums, V. Y. 1964. Some paleopathologic data on Baltic Coast inhabitants. Arkhiv Anatomii, Gistologii i Embriologii 46.Google Scholar
El-Najjar, M. Y., et al. 1980. Autopsies on two native American mummies. American Journal of Physical Anthropology 53.CrossRefGoogle ScholarPubMed
Elliot-Smith, G., and Dawson, W. R.. 1924. Egyptian mummies. New York.Google Scholar
Elliot-Smith, G., and Wood-Jones, F.. 1910. The archaeological survey of Nubia report for 1907–1908. Vol. 2: Report on the human remains. Cairo.Google Scholar
Fiennes, R. N. 1978. Zoonoses and the origins and ecology of human disease. New York.Google Scholar
Fleming, S., et al. 1980. The Egyptian mummy: Secrets and science. Philadelphia.Google Scholar
Formicola, V. 1986. Anthropologie dentaire des restes de l’Epi gravettien final retrouvés dans la grotte des Arene Candide (Ligurie). Bulletin et Mémoires de la Société d’Anthropologie de Paris 3.Google Scholar
Formicola, V. 1986–7. The dentition of the Neolithic sample from Western Liguria (Italy). Ossa 13.Google Scholar
Formicola, V., Milanesi, Q., and Scarsini, C.. 1987. Evidence of spinal tuberculosis at the beginning of the 4th millennium B.C. from Arene Candide Cave (Liguria, Italy). American Journal of Physical Anthropology 72.CrossRefGoogle Scholar
Gejvall, N.-G. 1974. Description of the human skeletons from the graves and some associated animal bones. In Gotlands Mellanneolitiska Gravar (The Middle Neolithic graves of Gotland), ed. Janzon, O.. Stockholm.Google Scholar
Gladykowska-Rzeczycka, J. 1981. A short review of paleopathological research in Poland. Homo 32.Google Scholar
Gladykowska-Rzeczycka, J. 1991. Tumors in antiquity in East and Middle Europe. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Goodman, A. H. 1991. Stress, adaptation and enamel developmental defects. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Goodman, A. H., Martin, D. L., and Armelagos, G. J.. 1984. Indications of stress from bone and teeth. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Gray, P. H. K. 1967. Radiography of ancient Egyptian mummies. Medical Radiography and Photography 43.Google ScholarPubMed
Grmek, M. D. 1989. Diseases in the ancient Greek world. Baltimore.Google Scholar
Jones, A. K. G., and Nicholson, C. 1988. Recent finds of Trichuris and Ascaris ova from Britain. Paleopathology Newsletter 63.Google Scholar
Jurmain, R. D. 1977. Stress and the etiology of osteoarthritis. American Journal of Physical Anthropology 45.Google Scholar
Kilgore, L. 1989. Possible case of rheumatoid arthritis from Sudanese Nubia. American Journal of Physical Anthropology 79.CrossRefGoogle ScholarPubMed
Klepinger, L. L. 1979. Paleopathologic evidence for the evolution of rheumatoid arthritis. American Journal of Physical Anthropology 50.CrossRefGoogle Scholar
Krogman, W. M. 1940. The skeletal and dental pathology of an early Iranian site. Bulletin of the History of Medicine 8.Google Scholar
Kunter, M. 1977. Kâmid el-Lôz. Bonn.Google Scholar
Kurth, G., and Röhrer-Ertl, O.. 1981. On the anthropology of the Mesolithic to the Chalcolithic: Human remains from the Tell es-Sultan in Jericho, Jordan. In Excavations at Jericho, Vol. 3, ed. Kenyon, K. M.. London.Google Scholar
Leden, O., Persson, E., and Persson, O.. 1985–6. Peripheral polyarthritis in two Neolithic skeletons. Ossa 12.Google Scholar
Lisowski, F. P. 1967. Prehistoric and early historic trepanation. In Diseases in antiquity, ed. Brothwell, D. and Sandison, A. T.. Springfield, Ill..Google Scholar
Mallegni, F., Fornaciari, G., and Tarabella, N.. 1979. Studio antropologico dei resti scheletrici della necropoli dei Monterozzi (Torquina). Atti della Società Toscana di Scienze Naturali, SerieB. 86.Google Scholar
Manchester, K. 1983. The archaeology of disease. Bradford.Google Scholar
Manchester, K. 1984. Tuberculosis and leprosy in antiquity: An interpretation. Medical History 28.CrossRefGoogle Scholar
Manchester, K. 1991. Tuberculosis and leprosy: Evidence for the interaction of disease. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Martin, D. L., et al. 1984. The effects of socioeconomic change in prehistoric Africa: Sudanese Nubia as a case study. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
May, W. P. 1897. Rheumatoid arthritis (osteitis deformans) affecting bones 5,500 years old. British Medical Journal 2.CrossRefGoogle Scholar
Meiklejohn, C., et al. 1984. Socioeconomic change and patterns of pathology and variation in the Mesolithic and Neolithic of western Europe: Some suggestions. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Mitchell, J. K. 1900. Study of a mummy affected with anterior poliomyelitis. Transactions of the Association of American Physicians 15.Google Scholar
Molnar, S., and Molnar, I.. 1985. Observations of dental diseases among prehistoric populations in Hungary. American Journal of Physical Anthropology 67:.CrossRefGoogle ScholarPubMed
Morlock, G. 1986. Paleopathological identification of the hyperostosic disease. In VI European Meeting of the Paleopathology Association, Proceedings, ed. Bellard, F. G. and Sanchez, J. A.. Madrid.Google Scholar
Morse, D. 1967. Tuberculosis. In Diseases in antiquity, ed. Brothwell, D. and Sandison, A. T.. Springfield, Ill..Google Scholar
Ortner, D. J. 1968. Description and classification of degenerative bone changes in the distal joint surfaces of the humerus. American Journal of Physical Anthropology 28.CrossRefGoogle ScholarPubMed
Ortner, D. J. 1979. Disease and mortality in the Early Bronze Age people of Bab edh-Dhra, Jordan. American Journal of Physical Anthropology 51.CrossRefGoogle ScholarPubMed
Ortner, D. J. 1984. Bone lesions in a probable case of scurvy from Metlatavik, Alaska. Journal of the Museum of Applied Science, Center for Archaeology [MASCA Journal] 3.Google Scholar
Ortner, D. J. 1986. Metabolic and endocrine disorders in human skeletal paleopathology. In VI European Meeting of the Paleopathology Association, Proceedings, ed. Bellard, F. G. and Sanchez, J. A.. Madrid.Google Scholar
Ortner, D. J. 1991. Theoretical and methodological issues in paleopathology. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Ortner, D. J., and Putschar, W. G. J.. 1981. Identification of pathological conditions in human skeletal remains. Smithsonian Contributions to Anthropology No. 28. Washington, D.C..Google Scholar
Pales, L. 1930. Paleopathologie et pathologie comparative. Paris.Google Scholar
Patte, E. 1971. Les restes humains de la grotte sépulcrale du Laris Goguet à Feigneux (Oise). Bulletins et Mémoirés de la Société d’Anthropologie de Paris 7.Google Scholar
Rathbun, T. A. 1984. Skeletal pathology from the Paleolithic through the Metal Ages in Iran and Iraq. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Resnick, D., and Niwayama, G.. 1988. Diagnosis of bone and joint disorders, 2d edition. Philadelphia.Google Scholar
Rose, J. C, Condon, K. W., and Goodman, A. H.. 1984. Diet and dentition: Developmental disturbances. In The analysis of prehistoric diets, ed. Gilbert, R. I. Jr., and Mielke, J. H.. New York.Google Scholar
Rothschild, B. M., Turner, K. R., and DeLuca, M. A.. 1988. Symmetrical erosive peripheral polyarthritis in the Late Archaic period of Alabama. Science 241.CrossRefGoogle ScholarPubMed
Rowling, J. T. 1961. Pathological changes in mummies. Proceedings of the Royal Society of Medicine 54.Google ScholarPubMed
Ruffer, M. A. 1918. Studies in palaeopathology: Arthritis deformans and spondylitis in ancient Egypt. Journal of Pathology and Bacteriology 22.Google Scholar
Ruffer, M. A., and Rietti, A.. 1912. On osseous lesions in ancient Egyptians. Journal of Pathology and Bacteriology 16.Google Scholar
Sager, P., Schalimtzek, M., and Møller-Christensen, V.. 1972. A case of spondylitis tuberculosa in the Danish Neolithic Age. Danish Medical Bulletin 19.Google ScholarPubMed
Sandison, A. T. 1973. Evidence of infective disease. In Population biology of the ancient Egyptians, ed. Brothwell, D. R. and Chiarelli, B. A.. New York.Google Scholar
Sandison, A. T. 1980. Diseases in ancient Egypt. In Mummies, disease and ancient cultures, ed. Cockburn, A. and Cockburn, E.. New York.Google Scholar
Schaefer, U. 1978. Menschliche Skelettfunde aus dem Neolithikum im Gebiet der Länder Schleswig-Holstein, Niedersachsen, Nordrhein-Westfalen und Hessen (BRD). In Die Anfänge des Neolithikums vom Orient bis Nordeuropa, ed. Schwidetzky, I.. Cologne.Google Scholar
Short, C. L. 1974. The antiquity of rheumatoid arthritis. Arthritis and Rheumatism 17.CrossRefGoogle ScholarPubMed
Smith, P., Bar-Yosef, O., and Sillen, A.. 1984. Archaeological and skeletal evidence for dietary change during the Late Pleistocene/Early Holocene in the Levant. In Paleopathology at the origins of agriculture, ed. Cohen, M. N. and Armelagos, G. J.. Orlando, Fla..Google Scholar
Steinbock, R. T. 1976. Paleopathological diagnosis and interpretation. Springfield, Ill..Google Scholar
Strouhal, E. 1986. Anthropology of the Late Period cemetery in the tomb of King Horemheb ad Saqqara (Egypt) (preliminary report). International Journal of Anthropology 1.CrossRefGoogle Scholar
Strouhal, E. 1991. Vertebral tuberculosis in ancient Egypt and Nubia. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Strouhal, E., and Jungwirth, J.. 1984. Die Anthropologische Untersuchung der C-Gruppen- und Pan-Gräber- Skelette aus Sayala, Agyptische-Nubien. Vienna.Google Scholar
Tapp, E. 1986. Histology and histopathology of the Manchester mummies. In Science in Egyptology, ed. David, R. A.. Manchester.Google Scholar
Tapp, E., and Wildsmith, K.. 1986. Endoscopy of Egyptian mummies. In Science in Egyptology, ed. David, R. A.. Manchester.Google Scholar
Torre, S., and Dastugue, J., 1976. Néolithiques de Basse Normandie: Le Deuxième tumulus de Fontenay-le- Marmion (Pathologie). l’Anthropologie 80.Google Scholar
Tuross, N. 1991. Recovery of bone and serum proteins from human skeletal tissue: IgG, osteonectin and albumin. In Human paleopathology: Current syntheses and future options, ed. Ortner, D. J. and Aufderheide, A. C.. Washington, D.C..Google Scholar
Vagn Nielsen, O. 1970. The Nubian skeleton through 4000 years. Denmark.Google Scholar
Wells, C. 1964a. Bones, bodies and disease. New York..Google Scholar
Wells, C. 1964b. Two Mediaeval cases of malignant disease. British Medical Journal 1.CrossRefGoogle Scholar
Wells, C. 1973. A paleopathological rarity in a skeleton of Roman date. Medical History 17.CrossRefGoogle Scholar
Wells, C. 1977. Disease of the maxillary sinus in antiquity. Medical and Biological Illustration 27.Google ScholarPubMed
Wells, C. 1978. Disease and evolution. Biology and Human Affairs 43.Google Scholar
Whitehouse, W. M. 1980. Radiologic findings in the Royal mummies. In An x-ray atlas of the royal mummies, ed. Harris, J. E. and Wente, E. F.. Chicago.Google Scholar
Wood-Jones, F. 1910a. Fractured bones and dislocations. In The archaeological survey of Nubia report for 1907–1908. Vol. 2: Report on the human remains, ed. Elliot-Smith, G. and Wood-Jones, F.. Cairo.Google Scholar
Wood-Jones, F. 1910b. General pathology (including diseases of the teeth). In The archaeological survey of Nubia report for 1907–1908. Vol. 2: Report on the human remains, ed. Elliot-Smith, G. and Wood-Jones, F.. Cairo.Google Scholar
Y’Edynak, G., and Fleisch, S.. 1983. Microevolution and biological adaptability in the transition from food-collecting to food-producing in the Iron Gates of Yugoslavia. Journal of Human Evolution 12.Google Scholar
Zorab, P. A. 1961. The historical and prehistorical background of ankylosing spondylitis. Proceedings of the Royal Society of Medicine 54.Google ScholarPubMed

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