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So many definitions of heart failure: are they all universally valid? A critical appraisal
Lip-Bun Tan1, Simon G Williams, David K H Tan
1Cardiology Department, Leeds General Infirmary, Leeds LS1 3EX, UK.
Insights
This study proposes a new, universal definition for heart failure (HF) to address current ambiguities and misdiagnoses. By applying physics principles, it aims to improve the scientific understanding and treatment of heart failure.
Area of Science:
- Cardiology
- Medical Definitions
- Biophysics
Background:
- Current heart failure (HF) definitions lack universality and contain ambiguities.
- Existing definitions can lead to misclassification of non-HF conditions as HF.
- There's a need for a more precise and universally applicable definition of HF.
Purpose of the Study:
- To critically appraise existing heart failure definitions.
- To develop a more universal and less ambiguous definition of heart failure.
- To advance the scientific understanding and treatment of heart failure.
Main Methods:
- Applied principles of definition formulation to appraise existing HF definitions.
- Utilized Newtonian physics and the Law of Conservation of Energy.
- Rephrased William Harvey's description of cardiac function.
Main Results:
- Identified significant deficiencies in current heart failure definitions, including lack of universality and failure to quantify cardiac functional impairment.
- Proposed a revised definition of heart failure based on physical principles.
- Addressed traditional misconceptions in heart failure definitions.
Conclusions:
- A universally applicable and unambiguous definition of heart failure is achievable.
- The proposed definition, grounded in physics, offers a more accurate framework for understanding heart failure.
- Advancing the science of heart failure requires refining its fundamental definition.
Abstract:
Defining heart failure (HF) is a matter of finding the most appropriate words to formulate the definiens for HF that will be universally applicable in all specific circumstances pertaining to the nature of HF. Currently available definitions of HF contain ambiguities and notable deficiencies such that non-heart failure medical conditions can become mislabelled as heart failure. Principles of how best to formulate definitions have been employed to provide a guide on how to appraise published definitions of HF. A fundamental requirement of a good definition is that it should be universal, and by this criterion, we need to question the validity of a conventional dogma that a collection of clinical diagnostic features are equivalent to HF definitions. A long-standing deficiency in HF definitions is the inability to take into account the quantifiable extent of functional impairment of the heart. Other traditional misconceptions surrounding HF definitions have also been addressed. In line with Derek Gibson's proposal, we have rephrased William Harvey's description of the cardiac role in maintaining the circulation in terms of Newtonian physics and of the Law of Conservation of Energy to reach a more universal and less ambiguous definition of HF, with the objective of advancing the science of HF and the treatment of this distressing condition.
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