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Applying systems and complexity science to real patient care

机译:将系统和复杂性科学应用于真实的患者护理

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Aims and objectives: To describe the application of systems and complexity science principles to real patient care. Rationale: Our current global health care system is not sustainable. It is structured based on the principles of reductionist science, which was discovered and developed over the past 400 to 600 years. Because of increasing pace of change and increasing complexity in our world, we have increased fragmentation in our health care system leading to more harm and waste. Over 100 years ago, the principles of systems, or complexity, science were discovered, first in the discipline of physics. These principles accommodate the constant change and biologic variability in our world. While reductionist principles would be applicable in a static, mechanical world where parts of the system could be isolated, this does not exist in the real biologic world. Methods: For the past decade, our abdominal wall hernia team has been applying the principles of systems science to real patient care. Some of the tools we have applied include continuous quality improvement for whole hernia patient processes and nonlinear analytical tools to gain insight to improve value-based outcomes. Until we learn to apply and scale these principles across our whole global health care system, we will continue to suffer the consequences of our current unsustainable system. Results: We have learned that the application of systems and complexity science to real patient care can lead to lower costs and better outcomes in the context of patients with complex hernia problems. However, these concepts have not yet been adopted in our global health care system. Conclusion: Applying the principles of systems and complexity science to our global health care system has the potential to lower costs and improve patient outcomes for any patient care process to which it is applied.
机译:目的和目标:描述系统和复杂性科学原理在实际患者护理中的应用。理由:我们目前的全球医疗体系是不可持续的。它的结构基于还原论科学的原理,还原论科学是在过去400到600年中发现和发展起来的。由于我们世界的变化速度越来越快,复杂性越来越高,我们的医疗体系越来越支离破碎,导致更多的伤害和浪费。100多年前,系统原理或复杂性科学被发现,首先是在物理学领域。这些原则适应了我们世界的不断变化和生物多样性。虽然还原论原理适用于静态的机械世界,系统的某些部分可以被隔离,但这在真实的生物世界中并不存在。方法:在过去的十年里,我们的腹壁疝气团队一直在将系统科学的原理应用于实际的患者护理。我们应用的一些工具包括对整个疝气患者过程的持续质量改进,以及获得洞察力以改善基于价值的结果的非线性分析工具。在我们学会在整个全球医疗体系中应用和推广这些原则之前,我们将继续承受当前不可持续体系的后果。结果:我们了解到,将系统和复杂性科学应用于真正的患者护理,可以降低成本,改善复杂疝气患者的预后。然而,这些概念尚未被我们的全球医疗体系采纳。结论:将系统和复杂性科学的原理应用到我们的全球医疗体系中,有可能降低成本,改善任何应用该原理的患者护理流程的患者结果。

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