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Comparison of Conventional Statistical Methods with Machine Learning in Medicine: Diagnosis, Drug Development, and Treatment

Hema Sekhar Reddy Rajula, Giuseppe Verlato, Mirko Manchia, Nadia Antonucci, Vassilios Fanos

2020Medicina598 citationsDOIOpen Access PDF

Abstract

Futurists have anticipated that novel autonomous technologies, embedded with machine learning (ML), will substantially influence healthcare. ML is focused on making predictions as accurate as possible, while traditional statistical models are aimed at inferring relationships between variables. The benefits of ML comprise flexibility and scalability compared with conventional statistical approaches, which makes it deployable for several tasks, such as diagnosis and classification, and survival predictions. However, much of ML-based analysis remains scattered, lacking a cohesive structure. There is a need to evaluate and compare the performance of well-developed conventional statistical methods and ML on patient outcomes, such as survival, response to treatment, and patient-reported outcomes (PROs). In this article, we compare the usefulness and limitations of traditional statistical methods and ML, when applied to the medical field. Traditional statistical methods seem to be more useful when the number of cases largely exceeds the number of variables under study and a priori knowledge on the topic under study is substantial such as in public health. ML could be more suited in highly innovative fields with a huge bulk of data, such as omics, radiodiagnostics, drug development, and personalized treatment. Integration of the two approaches should be preferred over a unidirectional choice of either approach.

Topics & Concepts

Flexibility (engineering)Machine learningComputer scienceField (mathematics)Artificial intelligenceScalabilityA priori and a posterioriStatistical learningStatistical analysisData scienceStatistical modelHealth carePersonalized medicineData miningStatisticsBioinformaticsMathematicsDatabasePhilosophyBiologyPure mathematicsEpistemologyEconomic growthEconomicsArtificial Intelligence in Healthcare and EducationAI in cancer detectionArtificial Intelligence in Healthcare