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通过整合利用人工智能的先进振兴技术加强环境与人类健康管理。

Enhancing Environmental and Human Health Management Through the Integration of Advanced Revitalization Technologies Utilizing Artificial Intelligence.

作者信息

Volf Mirela, Vučemilović Ante, Dobrović Željko

机构信息

The Department of Branch Tactics, Croatian Military Academy "Dr. Franjo Tuđman", 10000 Zagreb, Croatia.

The Dean's Office, Defense and Security University "Dr. Franjo Tuđman", 10000 Zagreb, Croatia.

出版信息

Toxics. 2024 Nov 25;12(12):847. doi: 10.3390/toxics12120847.

Abstract

Pollution can be broadly defined as the presence of contaminants or energy sources detrimental to ecosystems and human health. The human organism serves as a valuable indicator of ecosystem contamination. However, understanding physiological disorders and correlating specific contaminants with disease development is a complex and arduous task, necessitating extensive scientific research spanning years or even decades. To facilitate a more rapid and precise understanding of the physiological impairments induced by various contaminants, a comprehensive approach is indispensable. This review proposes a model for such an approach, which involves the systematic collection and analysis of data from ecosystem contamination monitoring, integrated with biomedical data on compromised physiological conditions in humans across different temporal and spatial scales. Given the complexity and sheer volume of data, alongside the imperative for strategic decision-making, this model leverages the capabilities of artificial intelligence (AI) tools. Although this paper exemplifies the model by investigating the effects of contaminants on the human organism, the model is adaptable to all ecosystem components, thereby supporting the conservation of plant and animal species.

摘要

污染可广义定义为存在对生态系统和人类健康有害的污染物或能源。人体是生态系统污染的重要指标。然而,了解生理紊乱并将特定污染物与疾病发展联系起来是一项复杂而艰巨的任务,需要数年甚至数十年的广泛科学研究。为了更快速、准确地了解各种污染物引起的生理损伤,综合方法必不可少。本综述提出了一种这样的方法模型,该模型涉及系统收集和分析生态系统污染监测数据,并与不同时空尺度上人类生理状况受损的生物医学数据相结合。鉴于数据的复杂性和庞大数量,以及战略决策的必要性,该模型利用了人工智能(AI)工具的能力。尽管本文通过研究污染物对人体的影响来举例说明该模型,但该模型适用于所有生态系统成分,从而有助于保护动植物物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fb2/11679720/ed519fee598b/toxics-12-00847-g001.jpg

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