国际糖尿病有氧运动研究主题动态演化分析——基于SciMAT的文献计量学研究
Analysis of the Dynamic Theme Evolution of International Aerobic Exercise Research in Diabetes in the Last 20 Years—Literature Metrology Research Based on SciMAT
DOI: 10.12677/acm.2024.1472104, PDF,   
作者: 付祥昊:安徽医科大学第二临床医学院,安徽 合肥;胡子木, 袁文蓉, 李 键*:安徽医科大学第一附属医院康复医学科,安徽 合肥
关键词: 糖尿病有氧运动主题演化文献计量学SciMatDiabetes Aerobic Exercise Theme Evolution Bibliometrics SciMat
摘要: 目的:探究有氧运动在糖尿病管理中相关研究的发展趋势。方法:检索Web of Science核心合集,时间范围是从2004年到2023年12月31日期间发表的有氧运动与糖尿病管理主题相关的文献,运用SciMAT绘制关键词覆盖图、聚类战略图和主题演化路径图,并对各时间区间的聚类战略图和主题演化路径图进行分析。结果:近20年间,国际糖尿病有氧运动研究呈现出显著的活跃态势与持续增长,主要研究方向为“DIET”“GLYCEMIC-CONTROL”“RISK-FACTORS”等,研究主题呈现为3个研究方向的4条演化路径。结论:有氧运动在糖尿病管理中得到了广泛的应用,并呈上升趋势。有氧运动与饮食干预和/或抗阻运动的结合在血糖控制以及心血管疾病风险管理等方面属于当下该领域的研究热点。
Abstract: Objective: This investigation seeks to elucidate the evolving landscape of research on the role of aerobic exercise in the management of diabetes. Methods: An exhaustive analysis was conducted on publications from the Web of Science Core Collection, dated between 2004 and December 31, 2023, related to aerobic exercise in diabetes management, employing SciMAT for sophisticated keyword co-occurrence, strategic clustering, and thematic evolution mapping. Results: Over the course of twenty years, the realm of aerobic exercise research pertaining to diabetes has experienced a dynamic surge, concentrating on “DIET”, “GLYCEMIC-CONTROL”, and “RISK-FACTORS”, while discerning four distinct evolutionary trajectories within these thematic pillars. Conclusion: The application of aerobic exercise in diabetes management has not only broadened but also intensified, showcasing a significant upward trajectory. The symbiotic incorporation of dietary interventions and resistance training alongside aerobic exercise, particularly in the regulation of glycemia and the mitigation of cardiovascular disease risk, emerges as the pinnacle of contemporary research endeavors.
文章引用:付祥昊, 胡子木, 袁文蓉, 李键. 国际糖尿病有氧运动研究主题动态演化分析——基于SciMAT的文献计量学研究[J]. 临床医学进展, 2024, 14(7): 980-989. https://doi.org/10.12677/acm.2024.1472104

参考文献

[1] Ong, K.L., Stafford, L.K., McLaughlin, S.A., Boyko, E.J., Vollset, S.E., Smith, A.E., et al. (2023) Global, Regional, and National Burden of Diabetes from 1990 to 2021, with Projections of Prevalence to 2050: A Systematic Analysis for the Global Burden of Disease Study 2021. The Lancet, 402, 203-234. [Google Scholar] [CrossRef] [PubMed]
[2] Rooney, M.R., Fang, M., Ogurtsova, K., Ozkan, B., Echouffo-Tcheugui, J.B., Boyko, E.J., et al. (2023) Global Prevalence of Prediabetes. Diabetes Care, 46, 1388-1394. [Google Scholar] [CrossRef] [PubMed]
[3] Colberg, S.R., Sigal, R.J., Yardley, J.E., Riddell, M.C., Dunstan, D.W., Dempsey, P.C., et al. (2016) Physical Activity/Exercise and Diabetes: A Position Statement of the American Diabetes Association. Diabetes Care, 39, 2065-2079. [Google Scholar] [CrossRef] [PubMed]
[4] Kanaley, J.A., Colberg, S.R., Corcoran, M.H., Malin, S.K., Rodriguez, N.R., Crespo, C.J., et al. (2022) Exercise/Physical Activity in Individuals with Type 2 Diabetes: A Consensus Statement from the American College of Sports Medicine. Medicine & Science in Sports & Exercise, 54, 353-368. [Google Scholar] [CrossRef] [PubMed]
[5] Chen, Y., Qin, J., Tao, L., Liu, Z., Huang, J., Liu, W., et al. (2023) Effects of Tai Chi Chuan on Cognitive Function in Adults 60 Years or Older with Type 2 Diabetes and Mild Cognitive Impairment in China: A Randomized Clinical Trial. JAMA Network Open, 6, e237004. [Google Scholar] [CrossRef] [PubMed]
[6] Cai, Y., Wang, S., Wang, S., Gu, Q., Huang, Y., Li, J., et al. (2023) Effects of Yijinjing Combined with Resistance Training on Body Fat Distribution and Hepatic Lipids in Middle-Aged and Older People with Prediabetes Mellitus: A Randomized Controlled Trial. Experimental Gerontology, 179, Article ID: 112250. [Google Scholar] [CrossRef] [PubMed]
[7] Cobo, M.J., López‐Herrera, A.G., Herrera‐Viedma, E. and Herrera, F. (2012) SciMAT: A New Science Mapping Analysis Software Tool. Journal of the American Society for Information Science and Technology, 63, 1609-1630. [Google Scholar] [CrossRef
[8] Gan, Y., Li, D., Robinson, N. and Liu, J. (2022) Practical Guidance on Bibliometric Analysis and Mapping Knowledge Domains Methodology—A Summary. European Journal of Integrative Medicine, 56, Article ID: 102203. [Google Scholar] [CrossRef
[9] Shen, Z., Ji, W., Yu, S., Cheng, G., Yuan, Q., Han, Z., et al. (2023) Mapping the Knowledge of Traffic Collision Reconstruction: A Scientometric Analysis in CiteSpace, VOSviewer, and SciMAT. Science & Justice, 63, 19-37. [Google Scholar] [CrossRef] [PubMed]
[10] 夏洋, 李文梅. 近20年国际学业情绪研究主题动态演化路径分析[J]. 当代外语研究, 2023(5): 94-102+134.
[11] 卢锐敏, 沈泽方, 初丽媛, 等. 国际外科医疗纠纷研究主题演化分析——基于SciMat的研究[J]. 中国卫生法制, 2024, 32(2): 15-23.
[12] Cadore, E.L. and Izquierdo, M. (2015) Exercise Interventions in Polypathological Aging Patients That Coexist with Diabetes Mellitus: Improving Functional Status and Quality of Life. Age, 37, Article No. 64. [Google Scholar] [CrossRef] [PubMed]
[13] Huang, C., Hsu, C., Chiu, C., Lin, H., Wang, J. and Weng, S. (2020) Association between Exercise and Health-Related Quality of Life and Medical Resource Use in Elderly People with Diabetes: A Cross-Sectional Population-Based Study. BMC Geriatrics, 20, Article No. 331. [Google Scholar] [CrossRef] [PubMed]
[14] Bassi, D., Mendes, R.G., Arakelian, V.M., Caruso, F.C.R., Cabiddu, R., Júnior, J.C.B., et al. (2016) Potential Effects on Cardiorespiratory and Metabolic Status after a Concurrent Strength and Endurance Training Program in Diabetes Patients—A Randomized Controlled Trial. Sports MedicineOpen, 2, Article No. 31. [Google Scholar] [CrossRef] [PubMed]
[15] 邢煜, 王培花, 杨兴华. 北京市某城区糖尿病患者共病现状及健康行为调查[J]. 中国医师杂志, 2020, 22(3): 379-384, 389.
[16] Zhang, Q., Xu, L., Xia, J., Wang, D., Qian, M. and Ding, S. (2018) Treatment of Diabetic Mice with a Combination of Ketogenic Diet and Aerobic Exercise via Modulations of PPARs Gene Programs. PPAR Research, 2018, Article ID: 4827643. [Google Scholar] [CrossRef] [PubMed]
[17] Long, Y., Ye, H., Yang, J., Tao, X., Xie, H., Zhang, J., et al. (2023) Effects of a Vegetarian Diet Combined with Aerobic Exercise on Glycemic Control, Insulin Resistance, and Body Composition: A Systematic Review and Meta-Analysis. Eating and Weight DisordersStudies on Anorexia, Bulimia and Obesity, 28, Article No. 9. [Google Scholar] [CrossRef] [PubMed]
[18] Al-Mhanna, S.B., Rocha-Rodriguesc, S., Mohamed, M., Batrakoulis, A., Aldhahi, M.I., Afolabi, H.A., et al. (2023) Effects of Combined Aerobic Exercise and Diet on Cardiometabolic Health in Patients with Obesity and Type 2 Diabetes: A Systematic Review and Meta-Analysis. BMC Sports Science, Medicine and Rehabilitation, 15, Article No. 165. [Google Scholar] [CrossRef] [PubMed]
[19] Otten, J., Stomby, A., Waling, M., Isaksson, A., Tellström, A., Lundin-Olsson, L., et al. (2016) Benefits of a Paleolithic Diet with and without Supervised Exercise on Fat Mass, Insulin Sensitivity, and Glycemic Control: A Randomized Controlled Trial in Individuals with Type 2 Diabetes. Diabetes/Metabolism Research and Reviews, 33, e2828. [Google Scholar] [CrossRef] [PubMed]
[20] Fujiwara, Y., Eguchi, S., Murayama, H., Takahashi, Y., Toda, M., Imai, K., et al. (2019) Relationship between Diet/Exercise and Pharmacotherapy to Enhance the GLP-1 Levels in Type 2 Diabetes. Endocrinology, Diabetes & Metabolism, 2, e00068. [Google Scholar] [CrossRef] [PubMed]
[21] Antonio-Villa, N.E., Bello-Chavolla, O.Y., Vargas-Vázquez, A., Mehta, R., Fermín-Martínez, C.A., Martagón-Rosado, A.J., et al. (2021) Increased Visceral Fat Accumulation Modifies the Effect of Insulin Resistance on Arterial Stiffness and Hypertension Risk. Nutrition, Metabolism and Cardiovascular Diseases, 31, 506-517. [Google Scholar] [CrossRef] [PubMed]
[22] Parry, S.A. and Hodson, L. (2020) Managing NAFLD in Type 2 Diabetes: The Effect of Lifestyle Interventions, a Narrative Review. Advances in Therapy, 37, 1381-1406. [Google Scholar] [CrossRef] [PubMed]
[23] Stomby, A., Otten, J., Ryberg, M., Andrew, R., Walker, B.R. and Olsson, T. (2020) Diet-Induced Weight Loss Alters Hepatic Glucocorticoid Metabolism in Type 2 Diabetes Mellitus. European Journal of Endocrinology, 182, 447-457. [Google Scholar] [CrossRef] [PubMed]
[24] Kaptoge, S., Seshasai, S., Sun, L., Walker, M., Bolton, T., Spackman, S., et al. (2023) Life Expectancy Associated with Different Ages at Diagnosis of Type 2 Diabetes in High-Income Countries: 23 Million Person-Years of Observation. The Lancet Diabetes & Endocrinology, 11, 731-742. [Google Scholar] [CrossRef] [PubMed]
[25] Miele, E.M. and Headley, S.A.E. (2017) The Effects of Chronic Aerobic Exercise on Cardiovascular Risk Factors in Persons with Diabetes Mellitus. Current Diabetes Reports, 17, Article No. 97. [Google Scholar] [CrossRef] [PubMed]
[26] Papagianni, G., Panayiotou, C., Vardas, M., Balaskas, N., Antonopoulos, C., Tachmatzidis, D., et al. (2023) The Anti-Inflammatory Effects of Aerobic Exercise Training in Patients with Type 2 Diabetes: A Systematic Review and Meta-Analysis. Cytokine, 164, Article ID: 156157. [Google Scholar] [CrossRef] [PubMed]
[27] Chen, H., Huang, X., Dong, M., Wen, S., Zhou, L. and Yuan, X. (2023) The Association between Sarcopenia and Diabetes: From Pathophysiology Mechanism to Therapeutic Strategy. Diabetes, Metabolic Syndrome and Obesity, 16, 1541-1554. [Google Scholar] [CrossRef] [PubMed]
[28] Izzo, A., Massimino, E., Riccardi, G. and Della Pepa, G. (2021) A Narrative Review on Sarcopenia in Type 2 Diabetes Mellitus: Prevalence and Associated Factors. Nutrients, 13, Article No. 183. [Google Scholar] [CrossRef] [PubMed]
[29] Hashimoto, Y., Takahashi, F., Okamura, T., Hamaguchi, M. and Fukui, M. (2023) Diet, Exercise, and Pharmacotherapy for Sarcopenia in People with Diabetes. Metabolism, 144, Article ID: 155585. [Google Scholar] [CrossRef] [PubMed]