Yashbir Singh ME, PhD , Quincy A. Hathaway MD, PhD , Colleen Farrelly MS , Matthew J. Budoff MD , Bradley Erickson MD, PhD , Jeremy D. Collins MD , Michael J. Blaha MD , Tim Leiner MD, PhD , Francisco Lopez-Jimenez MD, MBA , Jennifer Rozenblit PhD , Deepa Sarkar PhD , Gunnar Carlsson PhD
{"title":"冠状动脉粥样硬化评价的拓扑数据分析:一个全面的叙述综述","authors":"Yashbir Singh ME, PhD , Quincy A. Hathaway MD, PhD , Colleen Farrelly MS , Matthew J. Budoff MD , Bradley Erickson MD, PhD , Jeremy D. Collins MD , Michael J. Blaha MD , Tim Leiner MD, PhD , Francisco Lopez-Jimenez MD, MBA , Jennifer Rozenblit PhD , Deepa Sarkar PhD , Gunnar Carlsson PhD","doi":"10.1016/j.mcpdig.2025.100199","DOIUrl":null,"url":null,"abstract":"<div><div>Plaque build-up in the coronary arteries can restrict blood flow or become unstable and contribute to cardiovascular events. Evaluating these plaques is essential for cardiovascular risk stratification and determining the most appropriate treatment strategies. This review aimed to investigate the potential of topological data analysis (TDA), a novel technique, in assessing coronary atherosclerosis. We perform a narrative review of the emerging TDA field, discussing its basic principles and advantages over traditional methods, which often struggle to capture the intricate patterns and relationships within coronary plaques. Topological data analysis can evaluate coronary atherosclerosis in novel ways using variations in the cover and filtration functions of the algorithm, highlighting new ways to characterize calcified and noncalcified plaques. It also highlights the potential of TDA in enhancing the understanding and management of this complex disease. Despite the challenges and future directions, which need to be addressed, TDA shows potential as a valuable tool in assessing coronary atherosclerosis, specifically in noncalcified plaque detection, possibly surpassing traditional techniques in capturing the disease’s intricate patterns. A Pubmed, Google Scholar, Scopus - based literature review was undertaken using the following search terms: <em>Topological data analysis in Coronary atherosclerosis, Topological data analysis in Cardiovascular</em>.</div></div>","PeriodicalId":74127,"journal":{"name":"Mayo Clinic Proceedings. Digital health","volume":"3 2","pages":"Article 100199"},"PeriodicalIF":0.0000,"publicationDate":"2025-02-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Topological Data Analysis in the Assessment of Coronary Atherosclerosis: A Comprehensive Narrative Review\",\"authors\":\"Yashbir Singh ME, PhD , Quincy A. Hathaway MD, PhD , Colleen Farrelly MS , Matthew J. Budoff MD , Bradley Erickson MD, PhD , Jeremy D. Collins MD , Michael J. Blaha MD , Tim Leiner MD, PhD , Francisco Lopez-Jimenez MD, MBA , Jennifer Rozenblit PhD , Deepa Sarkar PhD , Gunnar Carlsson PhD\",\"doi\":\"10.1016/j.mcpdig.2025.100199\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><div>Plaque build-up in the coronary arteries can restrict blood flow or become unstable and contribute to cardiovascular events. Evaluating these plaques is essential for cardiovascular risk stratification and determining the most appropriate treatment strategies. This review aimed to investigate the potential of topological data analysis (TDA), a novel technique, in assessing coronary atherosclerosis. We perform a narrative review of the emerging TDA field, discussing its basic principles and advantages over traditional methods, which often struggle to capture the intricate patterns and relationships within coronary plaques. Topological data analysis can evaluate coronary atherosclerosis in novel ways using variations in the cover and filtration functions of the algorithm, highlighting new ways to characterize calcified and noncalcified plaques. It also highlights the potential of TDA in enhancing the understanding and management of this complex disease. Despite the challenges and future directions, which need to be addressed, TDA shows potential as a valuable tool in assessing coronary atherosclerosis, specifically in noncalcified plaque detection, possibly surpassing traditional techniques in capturing the disease’s intricate patterns. A Pubmed, Google Scholar, Scopus - based literature review was undertaken using the following search terms: <em>Topological data analysis in Coronary atherosclerosis, Topological data analysis in Cardiovascular</em>.</div></div>\",\"PeriodicalId\":74127,\"journal\":{\"name\":\"Mayo Clinic Proceedings. 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Topological Data Analysis in the Assessment of Coronary Atherosclerosis: A Comprehensive Narrative Review
Plaque build-up in the coronary arteries can restrict blood flow or become unstable and contribute to cardiovascular events. Evaluating these plaques is essential for cardiovascular risk stratification and determining the most appropriate treatment strategies. This review aimed to investigate the potential of topological data analysis (TDA), a novel technique, in assessing coronary atherosclerosis. We perform a narrative review of the emerging TDA field, discussing its basic principles and advantages over traditional methods, which often struggle to capture the intricate patterns and relationships within coronary plaques. Topological data analysis can evaluate coronary atherosclerosis in novel ways using variations in the cover and filtration functions of the algorithm, highlighting new ways to characterize calcified and noncalcified plaques. It also highlights the potential of TDA in enhancing the understanding and management of this complex disease. Despite the challenges and future directions, which need to be addressed, TDA shows potential as a valuable tool in assessing coronary atherosclerosis, specifically in noncalcified plaque detection, possibly surpassing traditional techniques in capturing the disease’s intricate patterns. A Pubmed, Google Scholar, Scopus - based literature review was undertaken using the following search terms: Topological data analysis in Coronary atherosclerosis, Topological data analysis in Cardiovascular.