ELMAS thermodynamic theory and FM-modulated biorobotic resonance approach for the early diagnosis and treatment of pancreatic cancer
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Keywords

ELMAS thermodynamic theory
pancreatic cancer
medical thermodynamics
energy transfer
biorobotic resonance

How to Cite

Elmas, E. T. (2026). ELMAS thermodynamic theory and FM-modulated biorobotic resonance approach for the early diagnosis and treatment of pancreatic cancer. Frontiers in Research, 6(3), 186–203. https://doi.org/10.71350/30624533144

Abstract

ELMAS Thermodynamic Theory is a theoretical framework that explains pancreatic cancer at the cellular level through increased entropy, disrupted energy flows, exergy–anergy imbalance, and abnormal heat distribution, and proposes using these thermodynamic signatures for early diagnosis and treatment. Within this approach, in line with the Fifth Law of Thermodynamics, restoration of system balance is targeted through increasing negentropy, while the high-entropy and chaotic nature of cancerous tissues is considered the primary distinguishing feature. The developed ELMAS Medi-Bio-Energy Tronic device aims to analyze thermodynamic, electromagnetic, and bioenergetic changes in the pancreas and surrounding tissues to detect cancer at an early stage before clinically visible masses form, and to reveal cellular metabolic anomalies through detailed thermal mapping. On the treatment side, FM-modulated smart drug algorithms and biorobotic systems are proposed to intervene in the specific resonance/frequency characteristics of cancer cells, achieving selective destruction while preserving healthy tissues. The model is further defined as an interdisciplinary structure combining signal processing, biomedical engineering, and medical thermodynamics, and is currently a mathematically modeled but not clinically validated theoretical approach.

https://doi.org/10.71350/30624533144
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References

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