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Fumihiko Matsuda

Publications and source records attributed to Fumihiko Matsuda.

2 recordsLinked to original sources

Machine learning-based clinical tool for identifying factors associated with symptomatic knee osteoarthritis: the Nagahama study.

BACKGROUND: A clinical tool that evaluates factors associated with symptomatic knee osteoarthritis (OA) based on modifiable factors is lacking. This study aimed to develop a machine learning-based clinical assessment tool using modifiable factors to identify factors associated with symptomatic knee OA and to determine its accuracy. METHODS: This study included 429 participants (81.8% women; age, 69.0&#xa0;&#xb1;&#xa0;5.3 years) from the Nagahama Study who were &#x2265;60&#xa0;years old and had radiographically confirmed knee OA. A Knee Society Knee Scoring System 2011 symptom score of <23 points defined symptomatic knee OA. Participants were randomly assigned to training (70%) and test (30%) datasets. A machine learning model was developed using Extreme Gradient Boosting with 27 variables, and the SHapley Additive exPlanation (SHAP) values were used to assess feature importance. The top 8 features were translated into a 100-point clinical scoring tool weighted by their SHAP contributions. The cutoff value indicating symptomatic knee OA in the clinical assessment tool was determined using receiver operating characteristic analysis, and model performance was evaluated in both datasets. RESULTS: The clinical assessment tool consisted of low back pain, OA severity, depressive tendencies, knee flexion/extension range of motion, knee extension and hip abduction strength, and lower limb muscle quality. The model showed moderate discriminative performance (AUC 0.771 and 0.773 in the training and test datasets, respectively), with a cutoff point of 47. CONCLUSION: The proposed clinical assessment tool may provide a structured framework for assessing modifiable factors associated with symptomatic knee OA, reflecting their contribution to current symptom status.

Humans

Association between orthostatic blood pressure change and masked and white coat hypertension: the Nagahama study.

BACKGROUND: Exaggerated blood pressure (BP) response to orthostatic stimuli is indicative of cardiovascular frailty and may be associated with masked and white coat hypertension, which are BP abnormalities associated with cardiovascular outcomes. We aimed to clarify this possible association in a cross-sectional analysis of a large general population. METHODS: We enrolled 7618 community residents (mean age: 57.7&#x200a;years). Orthostatic BP change was calculated as the difference between systolic BP measured in a seated position and at 3&#x200a;min after standing. Orthostatic hypertension and hypotension were defined as >20&#x200a;mmHg increase or decrease in systolic BP, respectively. Masked and white coat hypertension were defined based on office and home morning BP measurements. RESULTS: The frequency of orthostatic hypotension and hypertension was 1.8% and 1.6%, respectively. A significant association was observed between orthostatic BP change and office-to-home BP differences, that is, the greater the increase in orthostatic BP, the higher the home BP than the office BP. The association between orthostatic hypertension and masked hypertension (crude odds ratio: 3.15; P &#x200a;<&#x200a;0.001) remained significant even after adjusting for potential covariates, including office seated BP. In addition, orthostatic hypotension was independently associated with white coat hypertension (crude odds ratio: 2.14; P &#x200a;=&#x200a;0.002). Orthostatic BP change measured at 3&#x200a;min showed a clearer association with masked and white coat hypertension than that measured at 1&#x200a;min. CONCLUSION: We identified a physiological association between exaggerated postural BP variability and office-to-home BP differences, which were previously considered unrelated.

Humans