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April 14, 20260 citationsOpen Access

Tumor Hydrodynamics: The Body's Deliberate Protective Barrier Against Toxins

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FAFOO SENG ANG

Key Points

  • This research aims to redefine tumors as protective structures rather than harmful lesions, using biomechanical principles.
  • Analyzed structural characteristics of tumors and bone marrow tissue
  • Compared stress distribution and functional logic between tumors and bone marrow
  • Utilized analogies to illustrate tumor formation rationale
  • Tumors optimize fluid dynamics to isolate toxins effectively
  • Demonstrated key differences in function between tumors and bone marrow
  • Provided a theoretical framework for understanding tumor formation in relation to systemic lupus erythematosus

Abstract

Traditional medicine regards tumors as abnormal proliferations of harmful cells that threaten bodily health. However, this study proposes a revolutionary perspective: tumors are not pathological lesions but deliberate, biomechanically optimized protective barriers constructed by the body through precise fluid dynamics calculations. When heavy metals, carcinogenic factors, and other intractable toxins cannot be metabolized or eliminated, the body activates a "local isolation strategy" to prevent systemic damage. By comparing the structural characteristics, stress distribution, and functional logic of tumors with bone marrow tissue, this paper clarifies the essential differences between tumor-mediated toxin isolation and bone marrow-related systemic crises, and further reveals the body's intelligent self-protection mechanism. The study uses analogies such as the "nuclear waste stone coffins" of Fukushima and Chernobyl to illustrate the rationality of tumor formation, and provides a new theoretical framework for reinterpreting tumors, systemic lupus erythematosus (SLE), and related disease mechanisms.

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Cite This Study

FOO SENG ANG (2026) studied this question.

synapsesocial.com/papers/69ddda0de195c95cdefd77f3https://doi.org/10.5281/zenodo.19528925
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