From Mechanistic Biomedicine to Organismal Systems Medicine

Author:

Marcum James

Abstract

Biomedicine, the predominant medical model that emerged during the twentieth century, is founded conceptually on mechanism and reductionism, especially in terms of portraying the patient as a machine reducible to its component parts. Systems medicine, in contrast, has emerged during the early part of the twenty-first century to address problems arising from biomedicine’s failure to cure diseases such as cancer. In this paper, a conceptual framework is provided for shifting from mechanistic biomedicine to organismal systems medicine. Specifically, organicism and holism provide the necessary foundation for viewing the patient not simply as a diseased or dysfunctional body part but as a whole person embedded within a biological, psychological, social, and environmental framework. Although biomedicine’s approach has identified many of the physiological and pathological components of health and disease, a shift to organismal systems medicine promises to deliver the principles and rules by which these components relate and interact with one another in a holistic rather than simply in a reductive mechanistic fashion.

Publisher

Ediciones Universidad de Salamanca

Subject

General Medicine

Reference145 articles.

1. Andersen, H. K. (2017). Reductionism in the biomedical sciences. En Miriam Solomon, Jeremy R. Simon y Harold Kincaid (eds.), The Routledge Companion to Philosophy of Medicine (pp. 81-88). New York: Routledge.

2. Ayala, F. J. (1974). Introduction. En F. J. Ayala y T. Dobzhansky (eds.), Studies in the Philosophy of Biology: Reductionism and Related Problems (pp. vii-xvi). Berkeley, CA: University of California Press.

3. Bechtel, W. (2006). Discovering Cell Mechanisms: The Creation of Modern Cell Biology. New York: Cambridge University Press.

4. Beckner, M. (1974). Reductionism, hierarchies and organicism. En F. J. Ayala y T. Dobzhansky (eds.), Studies in the Philosophy of Biology: Reductionism and Related Problems (pp. 163-177). Berkeley, CA: University of California Press.

5. Beckner, M. (2006). Organismic biology. En D. M. Borchert (ed.), Encyclopedia of Philosophy, 2nd edition, volume 7, (pp. 36-39). Detroit, MI: Thomson Gale.

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