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For: Balcıoğlu AS, Müderrisoğlu H. Diabetes and cardiac autonomic neuropathy: Clinical manifestations, cardiovascular consequences, diagnosis and treatment. World J Diabetes 2015; 6(1): 80-91 [PMID: 25685280 DOI: 10.4239/wjd.v6.i1.80]
URL: https://www.wjgnet.com/1948-9358/full/v6/i1/80.htm
Number Citing Articles
1
Ying Liu, Yuan Sun, Osefame Ewaleifoh, Josh Wei, Ruifa Mi, Jing Zhu, Ahmet Hoke, Michael Polydefkis. Ethoxyquin is neuroprotective and partially prevents somatic and autonomic neuropathy in db/db mouse model of type 2 diabetesScientific Reports 2021; 11(1) doi: 10.1038/s41598-021-89781-5
2
P S Matusik, P T Matusik, P K Stein. Cardiovascular reflex tests in patients with systemic lupus erythematosus: clinical performance and utilityLupus 2018; 27(11) doi: 10.1177/0961203318783052
3
Bhagyalakshmi Balakrishnan, Raghu Chandrashekar Hariharapura, Veena Nayak, Divyashree M. Somashekara. Hyperglycaemia to heart failure: molecular pathophysiology, clinical manifestations, and novel therapeutic targets for diabetic cardiomyopathyArchives of Physiology and Biochemistry 2026; 132(3) doi: 10.1080/13813455.2025.2567336
4
Yang Yang, Aapo L. Aro, Sandeep G. Nair, Reshmy Jayaraman, Kyndaron Reinier, Carmen Rusinaru, Audrey Uy-Evanado, Hirad Yarmohammadi, Jonathan Jui, Sumeet S. Chugh. Novel measure of autonomic remodeling associated with sudden cardiac arrest in diabetesHeart Rhythm 2017; 14(10) doi: 10.1016/j.hrthm.2017.07.011
5
Abu Baker Sheikh, Paul A. Sobotka, Ishan Garg, Jessilyn P. Dunn, Abdul Mannan Khan Minhas, Md Mobashir Hasan Shandhi, Jeroen Molinger, Barry J. McDonnell, Marat Fudim. Blood Pressure Variability in Clinical Practice: Past, Present and the FutureJournal of the American Heart Association 2023; 12(9) doi: 10.1161/JAHA.122.029297
6
Victoria Serhiyenko, Alexandr Serhiyenko. The Diabetes Textbook2023;  doi: 10.1007/978-3-031-25519-9_57
7
Huimin Zhu, You-Fan Peng, Huiping Gu, Xingjing Liu, Daniele Romanello. Heart rate turbulence in type 2 diabetes mellitus with chronic kidney diseasePLOS One 2025; 20(7) doi: 10.1371/journal.pone.0319116
8
Adriana Robles-Cabrera, Bruno Estañol, Ruben Fossion, Ana Rivera, Alejandro Frank. Cardiac autonomic neuropathy in diabetic patients2019; 2099 doi: 10.1063/1.5095926
9
Yu-Chen Chen, Wei-Min Liu, Hsin-Ru Liu, Huai-Ren Chang, Po-Wei Chen, An-Bang Liu. Coherence Analysis of Cardiovascular Signals for Detecting Early Diabetic Cardiac Autonomic Neuropathy: Insights into Glycemic ControlDiagnostics 2025; 15(12) doi: 10.3390/diagnostics15121474
10
Shivani Sethi, Isaiah Cheong, Carol T. Bussey, Daryl O. Schwenke, Jeffrey R. Erickson, Colin H. Brown, Regis R. Lamberts. Central regulation of the heart in type 2 diabetes mellitusJournal of Molecular and Cellular Cardiology 2026; 211 doi: 10.1016/j.yjmcc.2025.11.012
11
Tianyi He, Chuan Wang, Anju Zuo, Pan Liu, Ruxing Zhao, Wenjuan Li, Li Chen, Xinguo Hou. Electrochemical Skin Conductance May Be Used to Screen for Diabetic Cardiac Autonomic Neuropathy in a Chinese Population with DiabetesJournal of Diabetes Research 2017; 2017 doi: 10.1155/2017/8289740
12
Anjly Jain, Raman Puri, Devaki R. Nair. South AsiansCurrent Opinion in Cardiology 2017; 32(4) doi: 10.1097/HCO.0000000000000411
13
Zhadyra Alimbayeva, Chingiz Alimbayev, Kassymbek Ozhikenov, Aiman Ozhikenova, Ussen Shylmyrza, Kymbat Khaidarova. A Structured Critical Review of Machine Learning Approaches for ECG-Based Detection of Dysglycemia and Their Translational ReadinessApplied Sciences 2026; 16(11) doi: 10.3390/app16115359
14
Victoria A. Serhiyenko, Ludmila M. Serhiyenko, Volodymyr B. Sehin, Alexandr A. Serhiyenko. Effect of alpha-lipoic acid on arterial stiffness parameters in type 2 diabetes mellitus patients with cardiac autonomic neuropathyEndocrine Regulations 2021; 55(4) doi: 10.2478/enr-2021-0024
15
Xiaolan Ouyang, Long Peng, Zhuoshan Huang, Tongtong Wang, Jiafu Wang, Hongxing Wu, Junlin Zhong, Bingyuan Wu, Lin Wu, Yue Li, Yan Lu, Suhua Li, Xixiang Tang. Effects of adipose tissues on the relationship between type 2 diabetes mellitus and reduced heart rate variability: mediation analysisCardiovascular Diabetology 2024; 23(1) doi: 10.1186/s12933-024-02438-1
16
Herbert F. Jelinek, Andrei V. Kelarev. A Survey of Data Mining Methods for Automated Diagnosis of Cardiac Autonomic Neuropathy ProgressionAIMS Medical Science 2016; 3(2) doi: 10.3934/medsci.2016.2.217
17
V.A. Serhiyenko, M.I. Dolynay, V.B. Sehin, Y.V. Lazur, A.A. Serhiyenko. Disorders of circadian rhythms of heart rate variability in diabetic cardiac autonomic neuropathy: mechanisms and consequencesINTERNATIONAL JOURNAL OF ENDOCRINOLOGY (Ukraine) 2025; 20(8) doi: 10.22141/2224-0721.20.8.2024.1461
18
Karishma Bhade, Niharika Srivastava, Vaman Khadilkar, Shital Bhor, Anuradha Khadilkar. Cardiac Autonomic Neuropathy in Children and Youth with Type 1 Diabetes: A Pilot StudyIndian Pediatrics 2026;  doi: 10.1007/s13312-026-00418-0
19
Viktoria Serhiyenko, Alexandr Serhiyenko. The Diabetes Textbook2019;  doi: 10.1007/978-3-030-11815-0_53
20
Alphonse Sushmitha, Mekala RanjithKumar, Stalin Vinayagam, Arumugam Vasudevan. Caval aorta index as a predictor of hypotension after spinal anesthesia in patients with diabetes mellitus – A cross-sectional comparative studyJournal of Anaesthesiology Clinical Pharmacology 2026; 42(1) doi: 10.4103/joacp.joacp_642_24
21
R.J. Leone, S. Lalande. Intermittent hypoxia as a means to improve aerobic capacity in type 2 diabetesMedical Hypotheses 2017; 100 doi: 10.1016/j.mehy.2017.01.010
22
A. A. Belyaev, O. V. Kotova, E. S. Akarachkova. Cardiac autonomic neuropathy in diabetic patientsMedical Council 2019; (1) doi: 10.21518/2079-701X-2019-1-52-56
23
Aleksandra Dziubak, Grażyna Wójcicka, Andrzej Wojtak, Jerzy Bełtowski. Metabolic Effects of Metformin in the Failing HeartInternational Journal of Molecular Sciences 2018; 19(10) doi: 10.3390/ijms19102869
24
Umesh B Mahajan, Sameer Goyal. Biochanin A Mitigates Oxidative Stress and Inflammation in Diabetic Myocardial Infarction: Insights From a Streptozotocin and Isoproterenol Rat ModelCureus 2025;  doi: 10.7759/cureus.81455
25
Sanjeev Kelkar. Diabetic Neuropathy and Clinical Practice2020;  doi: 10.1007/978-981-15-2417-2_14
26
Camille Maadjhou Mba, Chris-Nadège Nganou-Gnindjio, Marcel Azabji-Kenfack, Liliane Mfeukeu-Kuate, Mesmin Yefou Dehayem, Jean Claude Mbanya, Eugène Sobngwi. Short term optimization of glycaemic control using insulin improves sympatho-vagal tone activities in patients with type 2 diabetesDiabetes Research and Clinical Practice 2019; 157 doi: 10.1016/j.diabres.2019.107875
27
Xin Huang, Yun Bao, Jie Wang, Limin Tian. Prevalence and Risk Factors of Cardiovascular Autonomic Neuropathy in Individuals with Type 1 Diabetes Mellitus: A Systematic Review and Meta-AnalysisReviews in Cardiovascular Medicine 2024; 25(7) doi: 10.31083/j.rcm2507244
28
Germaine Herman, Sara Zehr, Raymond Butts, James Dunning. Cardiac autonomic neuropathy and physical therapy: A case reportJournal of Bodywork and Movement Therapies 2022; 32 doi: 10.1016/j.jbmt.2022.05.013
29
Marcio J. Concepcion-Zavaleta, Jenyfer M. Fuentes-Mendoza, Luis Concepción-Urteaga, Selina A. Castillo-Balderas, Juan Carlos Morón Siguas, José Paz-Ibarra, Juan Eduardo Quiroz Aldave. Early autonomic neuropathy in prediabetes: an overlooked driver of cardiometabolic riskExpert Review of Cardiovascular Therapy 2026; 24(7) doi: 10.1080/14779072.2026.2696292
30
Ahmet Z. Burakgazi, Soufian AlMahameed. Cardiac Involvement in Peripheral NeuropathiesJournal of Clinical Neuromuscular Disease 2016; 17(3) doi: 10.1097/CND.0000000000000106
31
Satomi Hamada, Ai Oono, Yuri Ishihara, Yuki Hasegawa, Miho Akaza, Yuki Sumi, Yoshinori Inoue, Hajime Izumiyama, Kenzo Hirao, Mitsuaki Isobe, Tetsuo Sasano. Assessment of vascular autonomic function using peripheral arterial tonometryHeart and Vessels 2017; 32(3) doi: 10.1007/s00380-016-0870-6
32
Mara Mather. The emotion paradox in the aging body and brainAnnals of the New York Academy of Sciences 2024; 1536(1) doi: 10.1111/nyas.15138
33
Abdelrhman Alshawadfy, EmadEldeen Ahmed Ibrahim, Amr Helmy, Mohamed A. Elsadany, Wesam F. Alyeddin. Attenuation of spinal anesthesia induced hypotension with granisetron in type I diabetic parturients: A randomized controlled clinical trialEgyptian Journal of Anaesthesia 2022; 38(1) doi: 10.1080/11101849.2022.2108063
34
Lin-Zhong Zhang, Meng-Li Xie, Jing Li, Yu-Zhang Liang, Si-Kun Chen, Yi Han. Perioperative changes of serum orphanin in diabetic patients and its relationship with sympathetic nervous systemNeuropeptides 2024; 104 doi: 10.1016/j.npep.2024.102414
35
Allampalli Sirisha, Girwar Singh Gaur, Pravati Pal, Suryanarayana B Shamanna, Zachariah Bobby, Gopal Krushna Pal. Effect of Three Months of Honey Supplementation on Heart Rate Variability and Baroreflex Sensitivity in Type 2 Diabetic Neuropathy PatientsCureus 2025;  doi: 10.7759/cureus.88434
36
Maria Bitsch Poulsen, Peter Julu, Johan Røikjer, Asbjørn Mohr Drewes, Christina Brock. The ProCVT smart-sheet as a new screening tool for cardiovascular autonomic neuropathy: a feasibility studyFrontiers in Endocrinology 2025; 16 doi: 10.3389/fendo.2025.1653881
37
David García-Vega, José Ramón González-Juanatey, Sonia Eiras. Diabesity in Elderly Cardiovascular Disease Patients: Mechanisms and RegulatorsInternational Journal of Molecular Sciences 2022; 23(14) doi: 10.3390/ijms23147886
38
Mojdeh Rafieian, Anje Christina Höper, Albin Stjernbrandt, Rebecca Tapper, Tiina Maria Ikäheimo. Lack of guidelines for cold exposure among vulnerable outdoor workersInternational Journal of Circumpolar Health 2026; 85(1) doi: 10.1080/22423982.2026.2619359
39
Yingshan Liu, Yu Peng, Jing Jin, Yanshan Chen, Chuna Chen, Zhenguo Chen, Haishan Huang, Lingling Xu. Insulin resistance is independently associated with cardiovascular autonomic neuropathy in type 2 diabetesJournal of Diabetes Investigation 2021; 12(9) doi: 10.1111/jdi.13507
40
Hannah Smati, Yusuf Kamran Qadeer, Mario Rodriguez, Errol Moras, Gregg C. Fonarow, Scott D. Isaacs, Thomas H. Marwick, Chayakrit Krittanawong. Diabetic Cardiomyopathy: What Clinicians Should KnowThe American Journal of Medicine 2025; 138(3) doi: 10.1016/j.amjmed.2024.10.026
41
Victoria A. Serhiyenko, Boris N. Mankovsky, Ludmila М. Serhiyenko, Aleksandr A. Serhiyenko. The effect of OMEGA-3 polyunsaturated fatty acids on ambulatory blood pressure monitoring parameters in patients with type 2 diabetes mellitus and cardiovascular autonomic neuropathyDiabetes mellitus 2019; 22(1) doi: 10.14341/DM9630
42
Ibrahim Abdulsada, Zain Alabdeen Obaid, Farah Almerza, Mays Alwaeli, Anmar Al-Elayawi, Taha Al-Dayyeni, Harir Al-Tuhafy. Determination of Diabetes-associated Cardiovascular Autonomic Neuropathy Risk Factors among Insulin and Non-insulin Dependent DiabeticsThe Journal of Medical Research 2023; 9(6) doi: 10.31254/jmr.2023.9603
43
Emmanuel Kokori, Samuel Osei, Nirajan Kandel, Zuhaib Khokar, Abdullah Ahmad, Muhammad Daniyal, Syed Hasham Ali. Predictors of Pacemaker Implantation Among Patients Hospitalized With Syncope: An Analysis of the National Inpatient Sample (2016-2020)Cureus 2026;  doi: 10.7759/cureus.107897
44
Autonomic viscero-visceral cardioneuropathy (literature review and own data)Experimental and Clinical Physiology and Biochemistry 2021; 92(1) doi: 10.25040/ecpb2021.01-02.005
45
E. N. Zaitseva, P. A. Lebedev, T. Yu. Savirova, N. O. Maslennikova, O. V. Sharova. Antiglycation Efficacy: Unknown Pleiotropicity of Known DrugsPharmaceutical Chemistry Journal 2024; 58(8) doi: 10.1007/s11094-024-03259-y
46
Mojdeh Rafieian, Erlend Hoftun Farbu, Anje Christina Höper, Rasmus Valtonen, Henna Hyrkäs-Palmu, Juha Perkiömäki, Craig Crandall, Jouni J. K. Jaakkola, Tiina Maria Ikäheimo. Blunted cardiovascular responses in individuals with type 2 diabetes and hypertension during cold and heat exposureFrontiers in Physiology 2025; 16 doi: 10.3389/fphys.2025.1558471
47
Scott M. Williams, Aikaterini Eleftheriadou, Uazman Alam, Daniel J. Cuthbertson, John P. H. Wilding. Cardiac Autonomic Neuropathy in Obesity, the Metabolic Syndrome and Prediabetes: A Narrative ReviewDiabetes Therapy 2019; 10(6) doi: 10.1007/s13300-019-00693-0
48
Anne M. Misher, Jennifer L. Rosselli, Christine A. Schumacher, Michael See. The Role of the Diabetes Care and Education Specialist in Caring for Diabetes Complications and Common Comorbid ConditionsADCES in Practice 2021; 9(3) doi: 10.1177/2633559X211002805
49
Martin-Yurii Markevich, Volodymyr Segin, Victoria Serhiyenko, Alexandr Serhiyenko. Diabetic cardiac autonomic neuropathy: insulin resistance, lipid profile, and omega-3 polyunsaturated fatty acidsInterConf 2023; (35(163)) doi: 10.51582/interconf.19-20.07.2023.021
50
Tae Yang Yu, Dae Ho Lee. Dizziness and Syncope Related with Diabetic Autonomic NeuropathyInternational Journal of Arrhythmia 2016; 17(2) doi: 10.18501/arrhythmia.2016.016
51
Tao Zhang, Zhe Gao, Kuihao Chen. Exosomal microRNAs: potential targets for the prevention and treatment of diabetic cardiomyopathyJournal of Cardiology 2022; 80(5) doi: 10.1016/j.jjcc.2021.12.013
52
Zhang Xiwen, Feng Qiyun, Li Chuqiao, Jiang Anqi, Wu Zhenzhen, Deng Qiong, Peng Yu, Wang Chunlin. The assessment of autonomic nervous function in patients with gastrointestinal malignancies and its relationship with clinical characteristicsFrontiers in Neuroscience 2025; 19 doi: 10.3389/fnins.2025.1542224
53
Lisel Hope, Judith Giunta, Nathaniel Winer, Ho Won Lee, Sara Choudhry, Samy I. McFarlane. Principles of Diabetes Mellitus2017;  doi: 10.1007/978-3-319-18741-9_31
54
Tejas Deshmukh, Peter Emerson, Patricia Anderson, Eddy Kizana, Philip J. O’Connell, D. Jane Holmes-Walker, James J.H. Chong. Cardiac Autonomic Neuropathy Is Not Reversed by Euglycemia Following Islet TransplantationTransplantation 2021; 105(5) doi: 10.1097/TP.0000000000003377
55
Akif Serhat Balcıoğlu, Ekrem Aksu, Ahmet Çağrı Aykan. Triglyceride glucose index is related with cardiac autonomic dysfunction in patients with metabolic syndromeKardiologiia 2022; 62(6) doi: 10.18087/cardio.2022.6.n2049
56
Chizobam Ani, David Shavlik, Synnove Knutsen, Islam Abudayyeh, Jimmie Banta, Emily O’Brien, Robert J. Mentz, Alain G. Bertoni, Gary Fraser. Glycemic status, non-traditional risk and left ventricular structure and function in the Jackson Heart StudyBMC Cardiovascular Disorders 2022; 22(1) doi: 10.1186/s12872-022-02605-w
57
Mohanad Alkhodari, Mamunur Rashid, Mohammad Abdul Mukit, Khawza I. Ahmed, Raqibul Mostafa, Sharmin Parveen, Ahsan H. Khandoker. Screening Cardiovascular Autonomic Neuropathy in Diabetic Patients With Microvascular Complications Using Machine Learning: A 24-Hour Heart Rate Variability StudyIEEE Access 2021; 9 doi: 10.1109/ACCESS.2021.3107687
58
Sinan Akıncı, Ali Çoner, Akif Serhat Balcıoğlu, Ertan Akbay, İbrahim Haldun Müderrisoğlu. Heart rate variability and heart rate turbulence in patients with vasovagal syncopeKardiologiia 2021; 61(8) doi: 10.18087/cardio.2021.8.n1523
59
Hassan Thabit Haji, Ramla Muhidin Ali, Ahmed Gharib Khamis, Ashabilan Ebrahim, Mwajuma Ramadhani Muya, Kaushik Ramaiya, Fredirick L. Mashili. Body mass index, sedentary lifestyle, and HbA1c predict cardiac autonomic neuropathy in type 2 diabetesCardiovascular Diabetology – Endocrinology Reports 2026; 12(1) doi: 10.1186/s40842-026-00308-1
60
G.B. John Mancini, William E. Boden, Maria M. Brooks, Helen Vlachos, Bernard R. Chaitman, Robert Frye, Vera Bittner, Pamela M. Hartigan, Gilles R. Dagenais. Impact of treatment strategies on outcomes in patients with stable coronary artery disease and type 2 diabetes mellitus according to presenting angina severity: A pooled analysis of three federally-funded randomized trialsAtherosclerosis 2018; 277 doi: 10.1016/j.atherosclerosis.2018.04.005
61
Muhanad M. Dhumad, Farqad B. Hamdan, Mahmood S. Khudhair, Hisham Y. Al-Matubsi. Correlation of staging and risk factors with cardiovascular autonomic neuropathy in patients with type II diabetes mellitusScientific Reports 2021; 11(1) doi: 10.1038/s41598-021-80962-w
62
Waqas Alauddin, Prajakta M Radke, Pooja Pardhi, Mohit Mishra, Shashwat Arora. Effects of Revascularization on Cardiac Autonomic Neuropathy in Type 2 Diabetes Mellitus Patients With Chronic Stable AnginaCureus 2024;  doi: 10.7759/cureus.72278
63
Jeffrey J. Goldberger, Rishi Arora, Una Buckley, Kalyanam Shivkumar. Autonomic Nervous System DysfunctionJournal of the American College of Cardiology 2019; 73(10) doi: 10.1016/j.jacc.2018.12.064
64
Jake Rajbhandari, Cornelius James Fernandez, Mayuri Agarwal, Beverly Xin Yi Yeap, Joseph M Pappachan. Diabetic heart disease: A clinical updateWorld Journal of Diabetes 2021; 12(4): 383-406 doi: 10.4239/wjd.v12.i4.383
65
Nazira Bekenova, Ainur Sibagatova, Alisher Aitkaliyev, Tamara Vochshenkova, Balzhan Kassiyeva, Valeriy Benberin. Genetic markers of cardiac autonomic neuropathy in the Kazakh populationBMC Cardiovascular Disorders 2024; 24(1) doi: 10.1186/s12872-024-03912-0
66
Akif Serhat Balcioğlu, Sinan Akinci, Davran Çiçek, Halil Olcay Eldem, Ali Çoner, Uğur Abbas Bal, Haldun Müderrisoğlu. Which is responsible for cardiac autonomic dysfunction in non-diabetic patients with metabolic syndrome: Prediabetes or the syndrome itself?Diabetes & Metabolic Syndrome: Clinical Research & Reviews 2016; 10(1) doi: 10.1016/j.dsx.2015.09.001
67
Josipa Radić, Ela Kolak, Marijana Vučković, Andrea Gelemanović, Hana Đogaš, Dora Bučan Nenadić, Mislav Radić. Assessment of Hydration, Nutritional Status and Arterial Stiffness in Hypertensive Chronic Kidney Disease PatientsNutrients 2023; 15(9) doi: 10.3390/nu15092045
68
Ovidiu Alin Stirban. Kardiale autonome diabetische NeuropathieDiabetes aktuell 2022; 20(05) doi: 10.1055/a-1876-1528
69
Bi-Tiao He, Yue Yun, Qian-Ru Lin, Xu-Han Liu, Yu-Dan Liu. Targeting ferroptosis with natural products: Investigating promising agents for treating diabetes and its complicationsBiomedicine & Pharmacotherapy 2025; 189 doi: 10.1016/j.biopha.2025.118304
70
Marijana Tadic, Vladan Vukomanovic, Cesare Cuspidi, Jelena Suzic-Lazic, Biljana Pencic-Popovic, Jana Radojkovic, Rade Babic, Vera Celic. The relationship between right ventricular deformation and heart rate variability in asymptomatic diabetic patientsJournal of Diabetes and its Complications 2017; 31(7) doi: 10.1016/j.jdiacomp.2017.04.007
71
R. Usharani, A. Shanthini. RETRACTED ARTICLE: Neuropathic complications: Type II diabetes mellitus and other risky parameters using machine learning algorithmsJournal of Ambient Intelligence and Humanized Computing 2024; 15(S1) doi: 10.1007/s12652-021-02972-w
72
Moustafa Abdelwanis, Karim Moawad, Shahmir Mohammed, Ammar Hummieda, Shayaan Syed, Maher Maalouf, Herbert F. Jelinek. Sequential classification approach for enhancing the assessment of cardiac autonomic neuropathyComputers in Biology and Medicine 2025; 190 doi: 10.1016/j.compbiomed.2025.109999
73
A.A. Serhiyenko, T.V. Tsaryk, Y.I. Pavlovskiy, V.A. Serhiyenko. Glycemic variability and diabetic cardiac autonomic neuropathyINTERNATIONAL JOURNAL OF ENDOCRINOLOGY (Ukraine) 2024; 20(4) doi: 10.22141/2224-0721.20.4.2024.1398
74
Kun Lin, Liling Wei, Zhihua Huang, Qiong Zeng. Combination of Ewing test, heart rate variability, and heart rate turbulence analysis for early diagnosis of diabetic cardiac autonomic neuropathyMedicine 2017; 96(45) doi: 10.1097/MD.0000000000008296
75
Ji Eun Jun, Seung-Eun Lee, Min Sun Choi, Sung Woon Park, You-Cheol Hwang, Jae Hyeon Kim. Clinical factors associated with the recovery of cardiovascular autonomic neuropathy in patients with type 2 diabetes mellitusCardiovascular Diabetology 2019; 18(1) doi: 10.1186/s12933-019-0830-4
76
C.N. Nganou-Gnindjio, M. Déhayem Yefou, G. Wafeu Sadeu, A.M. Nanseu, E. Sobngwi. Étude de la fréquence et des caractéristiques de la neuropathie autonome cardiaque chez un groupe d’adolescents et de jeunes adultes diabétiques de type 1 camerounaisAnnales de Cardiologie et d'Angéiologie 2022; 71(1) doi: 10.1016/j.ancard.2021.04.003
77
Sanjeev Kelkar. Diabetic Neuropathy and Clinical Practice2020;  doi: 10.1007/978-981-15-2417-2_4
78
Gan Tang, Lingzhi Pi, Hongmin Guo, Zihui Hu, Congfa Zhou, Qixing Hu, Hao Peng, Zehao Xiao, Zhihua Zhang, Miaomiao Wang, Taotao Peng, Jiaqi Huang, Shangdong Liang, Guilin Li. Naringin Relieves Diabetic Cardiac Autonomic Neuropathy Mediated by P2Y14 Receptor in Superior Cervical GanglionFrontiers in Pharmacology 2022; 13 doi: 10.3389/fphar.2022.873090
79
RVaishanavi Devi, Velkumary Subramaniam, PrashantS Adole, GandhipuramPeriyasamy Senthilkumar, Vadivelan Mehalingam. Cardiovascular autonomic neuropathy in patients with type 2 diabetes mellitus and its association with serum omentin and leptinJournal of Family Medicine and Primary Care 2020; 9(6) doi: 10.4103/jfmpc.jfmpc_461_20
80
Aikaterini Eleftheriadou, Vincenza Spallone, Abd A. Tahrani, Uazman Alam. Cardiovascular autonomic neuropathy in diabetes: an update with a focus on managementDiabetologia 2024; 67(12) doi: 10.1007/s00125-024-06242-0
81
Sandra Cossul, Felipe Rettore Andreis, Mateus Andre Favretto, Jefferson Luiz Brum Marques. The Use of Empirical Mode Decomposition on Heart Rate Variability Signals to Assess Autonomic Neuropathy Progression in Type 2 DiabetesApplied Sciences 2023; 13(13) doi: 10.3390/app13137824
82
Lucianne Righeti Monteiro Tannus, Hermelinda Cordeiro Pedrosa, Cejana Hamu Aguiar, Karla Guerra Drummond, André Pinheiro, Franz Schubert Leal, Carlos Antonio Negrato, Marilia Brito Gomes. Prevalence of cardiovascular autonomic neuropathy in an admixed population of patients with type 1 diabetes. Lessons from a pioneer multicentre study in BrazilPrimary Care Diabetes 2024; 18(5) doi: 10.1016/j.pcd.2024.08.001
83
Hassan Thabit Haji, Ramla Muhidin Ali, Ahmed Gharib Khamis, Marina Njelekela, Kaushik Ramaiya, Fredirick L. Mashili. Diagnostic accuracy of the COMPASS-31 orthostatic intolerance domain for detecting cardiovascular autonomic neuropathy in resource-limited settingsCardiovascular Diabetology – Endocrinology Reports 2026; 12(1) doi: 10.1186/s40842-026-00313-4
84
Alexandra Gogan, Ovidiu Potre, Vlad-Florian Avram, Minodora Andor, Florina Caruntu, Bogdan Timar. Cardiac Autonomic Neuropathy in Diabetes Mellitus: Pathogenesis, Epidemiology, Diagnosis and Clinical Implications: A Narrative ReviewJournal of Clinical Medicine 2025; 14(3) doi: 10.3390/jcm14030671
85
Victoria A Serhiyenko, Alexandr A Serhiyenko. Cardiac autonomic neuropathy: Risk factors, diagnosis and treatmentWorld Journal of Diabetes 2018; 9(1): 1-24 doi: 10.4239/wjd.v9.i1.1
86
Timothy M. Griffin, Kenneth M. Humphries, Michael Kinter, Hui-Ying Lim, Luke I. Szweda. Nutrient sensing and utilization: Getting to the heart of metabolic flexibilityBiochimie 2016; 124 doi: 10.1016/j.biochi.2015.10.013
87
Nazira Bekenova, Alisher Aitkaliyev, Tamara Vochshenkova, Balzhan Kassiyeva, Valeriy Benberin. Cardiac Autonomic Neuropathy Is Not Associated with Apolipoprotein E Gene Isoforms in the Kazakh Population: A Case–Control StudyDiagnostics 2024; 14(17) doi: 10.3390/diagnostics14171978
88
Mamta Shobhawat, Shival Srivastav, Ravindra Gayaprasad Shukla, Om Lata Bhagat. Assessing the Impact of BMI and Glycaemic Control on Cardiac Autonomic Neuropathy in Patients with Early and Long-standing Diabetes Mellitus: A Window of OpportunityAnnals of Neurosciences 2025;  doi: 10.1177/09727531251384548
89
Ashit Syngle, Inderjeet Verma, Pawan Krishan, Vijaita Syngle. Disease-modifying antirheumatic drugs improve cardiovascular autonomic neuropathy in psoriatic arthritisTherapeutic Advances in Musculoskeletal Disease 2016; 8(2) doi: 10.1177/1759720X16635887
90
Scott Williams, Siddig Abdel Raheim, Muhammad Ilyas Khan, Umme Rubab, Prathap Kanagala, Sizheng Steven Zhao, Anne Marshall, Emily Brown, Uazman Alam. Cardiac Autonomic Neuropathy in Type 1 and 2 Diabetes: Epidemiology, Pathophysiology, and ManagementClinical Therapeutics 2022; 44(10) doi: 10.1016/j.clinthera.2022.09.002
91
Jae Won Hong, Jung Hyun Noh, Dong-Jun Kim, Xianwu Cheng. The Association of Resting Heart Rate with the Presence of Diabetes in Korean Adults: The 2010-2013 Korea National Health and Nutrition Examination SurveyPLOS ONE 2016; 11(12) doi: 10.1371/journal.pone.0168527
92
Charushila Rukadikar, Atul Rukadikar, Surekha Kishore. A Review on Autonomic Functional Assessment in Diabetic PatientsCureus 2023;  doi: 10.7759/cureus.34598
93
Ji Eun Jun, Seung‐Eun Lee, You‐Bin Lee, Ji Yeon Ahn, Gyuri Kim, Kyu Yeon Hur, Moon‐Kyu Lee, Sang‐Man Jin, Jae Hyeon Kim. Continuous glucose monitoring defined glucose variability is associated with cardiovascular autonomic neuropathy in type 1 diabetesDiabetes/Metabolism Research and Reviews 2019; 35(2) doi: 10.1002/dmrr.3092
94
C. Brock, N. Jessen, B. Brock, P. E. Jakobsen, T. K. Hansen, J. M. Rantanen, S. Riahi, Y. K. Dimitrova, A. Dons‐Jensen, Q. Aziz, A. M. Drewes, A. D. Farmer. Cardiac vagal tone, a non‐invasive measure of parasympathetic tone, is a clinically relevant tool in Type 1 diabetes mellitusDiabetic Medicine 2017; 34(10) doi: 10.1111/dme.13421
95
Adrien Zanin, Guy Amah, Sahar Chakroun, Pauline Testard, Alice Faucher, Thi Yen Vy Le, Dorsaf Slama, Valérie Le Baut, Pierre Lozeron, Dominique Salmon, Nathalie Kubis. Parasympathetic autonomic dysfunction is more often evidenced than sympathetic autonomic dysfunction in fluctuating and polymorphic symptoms of "long-COVID" patientsScientific Reports 2023; 13(1) doi: 10.1038/s41598-023-35086-8
96
Mónica García-Domingo, José Ángel García-Pedraza, Juan Francisco Fernández-González, Cristina López, María Luisa Martín, Asunción Morán. Fluoxetine Treatment Decreases Cardiac Vagal Input and Alters the Serotonergic Modulation of the Parasympathetic Outflow in Diabetic RatsInternational Journal of Molecular Sciences 2022; 23(10) doi: 10.3390/ijms23105736
97
Mohamed D Dafaalla, Mohammed N Nimir, Mosab I Mohammed, Omer A Ali, Abbashar Hussein. Risk factors of diabetic cardiac autonomic neuropathy in patients with type 1 diabetes mellitus: a meta-analysisOpen Heart 2016; 3(2) doi: 10.1136/openhrt-2015-000336
98
Vera E. A. Kleinveld, Julia Wanschitz, Anna Hotter, Corinne G. C. Horlings, Fabian Leys, Maria Ungericht, Gerhard Pölzl, Roberta Granata, Alessandra Fanciulli, Wolfgang N. Löscher. Autonomic dysfunction in patients with wild-type transthyretin amyloidosisJournal of Neurology 2026; 273(2) doi: 10.1007/s00415-025-13604-0
99
Anniek F. Lubberding, Laetitia Pereira, Jianbin Xue, Lisa A. Gottlieb, Vladimir V. Matchkov, Ana M. Gomez, Morten B. Thomsen. Aberrant sinus node firing during β‐adrenergic stimulation leads to cardiac arrhythmias in diabetic miceActa Physiologica 2020; 229(1) doi: 10.1111/apha.13444
100
S. I Krayushkin, S. S Shalaeva, I. V Ivakhnenko, E. V. Sadykova. COMPARATIVE EVALUATION OF AUTONOMIC REACTIVITY IN PATIENTS WITH CHRONIC HEART FAILURE AND TYPE 2 DIABETES MELLITUS WITH DIABETIC AUTONOMIC CARDIAC NEUROPATHYJournal of Volgograd State Medical University 2020; 17(2) doi: 10.19163/1994-9480-2020-2(74)-130-134
101
Nágela Nunes, Paulo R. Benchimol-Barbosa. Identification of Preclinical Markers Related to Hereditary Diseases: Expanding the Horizons of the Study of Cardiac Autonomic ModulationInternational Journal of Cardiovascular Sciences 2020; 33(4) doi: 10.36660/ijcs.20200192
102
Talay Yar, Ayad M. Salem, Nazish Rafique, Rabia Latif, Intisar A. Siddiqui, Mohammad H. Shaikh, Mohammed A. Aleid, Husain H. Almahfoudh, Mohammed F. Alsaffar, Abdullah H. Al Ibrahim, Ali J. Almadan, Sana M. Alaidarous, Razan A. Almulhim. Composite Autonomic Symptom Score-31 for the diagnosis of cardiovascular autonomic dysfunction in long-term coronavirus disease 2019Journal of Family and Community Medicine 2024; 31(3) doi: 10.4103/jfcm.jfcm_20_24
103
Andrzej Bissinger. Cardiac Autonomic Neuropathy: Why Should Cardiologists Care about That?Journal of Diabetes Research 2017; 2017 doi: 10.1155/2017/5374176
104
Chung-Hung Wu, Jian-Jung Chen, Hsientsai Wu. Radial pulse harmonic analysis for cardiometabolic assessment: a computational and translational mini reviewFrontiers in Endocrinology 2026; 17 doi: 10.3389/fendo.2026.1867056
105
Irina Kurnikova, Shirin Gulova, Ramchandra Sargar, Nikolay Kisliy. Proceedings of Seventh International Congress on Information and Communication TechnologyLecture Notes in Networks and Systems 2023; 447 doi: 10.1007/978-981-19-1607-6_22
106
Li-Ting Shen, Rui Shi, Zhi-Gang Yang, Yue Gao, Yi-Ning Jiang, Han Fang, Chen-Yan Min, Yuan Li. Progress in Cardiac Magnetic Resonance Feature Tracking for Evaluating Myocardial Strain in Type-2 Diabetes MellitusCurrent Diabetes Reviews 2024; 20(8) doi: 10.2174/0115733998277127231211063107
107
Nuwani Wijesooriya, Senali Silva, Dulani Kottahachchi, Nadisha Badanasinghe, Dinu S. Chandran, Yugeesh R. Lankadeva, Tania Warnakulasuriya. Inflammation-autonomic cross talk contributes to left ventricular diastolic dysfunction in type 2 diabetes: a rationale for neuromodulationAmerican Journal of Physiology-Heart and Circulatory Physiology 2026; 330(6) doi: 10.1152/ajpheart.01006.2025
108
Wei-Min Liu, Hsin-Ru Liu, Po-Wei Chen, Huai-Ren Chang, Chen-Mao Liao, An-Bang Liu. Novel Application of Multiscale Cross-Approximate Entropy for Assessing Early Changes in the Complexity between Systolic Blood Pressure and ECG R-R Intervals in Diabetic RatsEntropy 2022; 24(4) doi: 10.3390/e24040473
109
Rebecca Baqiyyah Conway. Diabetes: A Subspecialty of Medicine and a Matter of Public HealthDiabetes, Metabolic Syndrome and Obesity 2025;  doi: 10.2147/DMSO.S580012
110
H. Ya. Loi, B. V. Pavliuk, S. B. Kramar, M. M. Korda, O. M. Oleshchuk. METFORMIN EXERTS CARDIOPROTECTION IN ISOPROTERENOL-INDUCED CARDIOMYOPATHY IN RATSMedical and Clinical Chemistry 2020; (4) doi: 10.11603/mcch.2410-681X.2019.v.i4.10855
111
Kathryn E Speer, Nenad Naumovski, Stuart Semple, Andrew J McKune. Lifestyle Modification for Enhancing Autonomic Cardiac Regulation in Children: The Role of ExerciseChildren 2019; 6(11) doi: 10.3390/children6110127
112
Xiaopu Lin, Chuna Chen, Yingshan Liu, Yu Peng, Zhenguo Chen, Haishan Huang, Lingling Xu. Peripheral Nerve Conduction And Sympathetic Skin Response Are Reliable Methods to Detect Diabetic Cardiac Autonomic NeuropathyFrontiers in Endocrinology 2021; 12 doi: 10.3389/fendo.2021.709114
113
Anca Motataianu, Laura Barcutean, Zoltan Bajko, Adina Stoian, Smaranda Maier, Septimiu Voidazan, Rodica Balasa. Autonomic and Somatic Nerve Functions in Type 2 Diabetes Mellitus Patients: Electrophysiological AspectsDiagnostics 2021; 11(11) doi: 10.3390/diagnostics11112005
114
A. B. Gopalamurugan, L. Srichandran. Management of Diabetic Complications2024;  doi: 10.1007/978-981-97-6406-8_4
115
Thais Roque Giacon, Franciele Marques Vanderlei, Diego Giulliano Destro Christofaro, Luiz Carlos Marques Vanderlei, Jacobus van Wouwe. Impact of Diabetes Type 1 in Children on Autonomic Modulation at Rest and in Response to the Active Orthostatic TestPLOS ONE 2016; 11(10) doi: 10.1371/journal.pone.0164375
116
Mahin Chowdhury, Sarah Nevitt, Aikaterini Eleftheriadou, Prathap Kanagala, Hani Esa, Daniel J Cuthbertson, Abd Tahrani, Uazman Alam. Cardiac autonomic neuropathy and risk of cardiovascular disease and mortality in type 1 and type 2 diabetes: a meta-analysisBMJ Open Diabetes Research & Care 2021; 9(2) doi: 10.1136/bmjdrc-2021-002480
117
Ji Eun Jun, Seung-Eun Lee, You-Bin Lee, Ji Yeon Ahn, Gyuri Kim, Sang-Man Jin, Kyu Yeon Hur, Moon-Kyu Lee, Jae Hyeon Kim. Glycated albumin and its variability as an indicator of cardiovascular autonomic neuropathy development in type 2 diabetic patientsCardiovascular Diabetology 2017; 16(1) doi: 10.1186/s12933-017-0619-2
118
Larissa Morete Caieiro da Costa, Tatiana Palotta Minari, Luciana Pellegrini Pisani, Tatiane de Azevedo Rubio, Louise Bounalume Tácito Yugar, Luis Gustavo Sedenho-Prado, Milene Ribeiro, Lúcia Helena Bonalume Tacito, Luciana Neves Cosenso-Martin, Antônio Carlos Pires, Heitor Moreno, José Fernando Vilela-Martin, Juan Carlos Yugar-Toledo. Autonomic function and hemodynamic changes in type 2 diabetes: insights into sympathetic activation and vascular stiffnessDiabetes Research and Clinical Practice 2025; 225 doi: 10.1016/j.diabres.2025.112266
119
Hye Jin Yoo, Soon Young Hwang, Kyung Mook Choi, Sei Hyun Baik, Eun Mi Lee, Eung Joo Kim, Seung-Woon Rha, Chang Gyu Park, Dong Joo Oh, Hong Seog Seo. Clinical implication of body size phenotype on heart rate variabilityMetabolism 2016; 65(11) doi: 10.1016/j.metabol.2016.08.002
120
P. R. Kamchatnov, E. R. Barantsevich, A. V. Chugunov, A. A. Kabanov, B. A. Abusueva. The efficacy of ipidacrine in patients with diabetic polyneuropathyNeurology, Neuropsychiatry, Psychosomatics 2022; 14(3) doi: 10.14412/2074-2711-2022-3-38-43
121
Mine Mujde Kus, Mehmet Kamil Mulayim, Celal Kus, Adem Doganer, Perihan Ozturk, Fatih Temiz, Hulya Nazik. Dermatoses in overweight and obese children and their relationship with insulin and skin colorJournal of Cosmetic Dermatology 2023; 22(10) doi: 10.1111/jocd.15773
122
Xuan Sheng, Yu Dan, Bo Dai, Jingjing Guo, Huihong Ji, Xinge Zhang, Zhi Xie, Siqi Song, Qiwen Pan, Jiayue Wang, Shangdong Liang, Guilin Li. Knockdown the P2X3 receptor in the stellate ganglia of rats relieved the diabetic cardiac autonomic neuropathyNeurochemistry International 2018; 120 doi: 10.1016/j.neuint.2018.09.002
123
Tasneem Adam, Abdullah I Al Sharif, Taghreed Saeed M Alamri, Rawan Ahmad O Al-Nashri, Alaa Ibrahim M Alluwimi, Amani Yosef Samkri, Mohammed Abdullah Alharthi, Ahmed Yahya Moafa, Nawaf A Alsaadi, Abdullah Mahdi S Alraimi, Reham Hassan M Alquzi. The State of Cardiac Rehabilitation in Saudi Arabia: Barriers, Facilitators, and Policy ImplicationsCureus 2023;  doi: 10.7759/cureus.48279
124
Annie S Jose, Shival Srivastav, Bharati Mehta. Investigating the Visit-to-visit Repeatability of Autonomic Neuropathy Assessment Measures in Healthy SubjectsAnnals of Neurosciences 2026; 33(2) doi: 10.1177/09727531241310034
125
Kamakshi Patel, Holli Horak, Ezgi Tiryaki. Diabetic neuropathiesMuscle & Nerve 2021; 63(1) doi: 10.1002/mus.27014
126
Haider Alsarhan. A scoring chart to evaluate cases of probable vestibular migraineHearing Balance and Communication 2023; 21(3) doi: 10.1080/21695717.2023.2169371
127
Hasan Fehmi Özel, Şüheda Alpay, Emre Asker, Elif Sıdal Gültekin, Hasan Kazdağlı. SGLT-2 inhibitors on cardiac autonomic function in individuals with and without type 2 diabetes mellitusJournal of Diabetes and its Complications 2025; 39(5) doi: 10.1016/j.jdiacomp.2025.109021
128
J. Snyder, R. Zhai, A. I. Lackey, P. Y. Sato. Changes in Myocardial Metabolism Preceding Sudden Cardiac DeathFrontiers in Physiology 2020; 11 doi: 10.3389/fphys.2020.00640
129
Yang Yang, Bing Zhao, Yuanzhe Wang, Hongli Lan, Xinyu Liu, Yue Hu, Peng Cao. Diabetic neuropathy: cutting-edge research and future directionsSignal Transduction and Targeted Therapy 2025; 10(1) doi: 10.1038/s41392-025-02175-1
130
CLINICAL AND PATHOPHYSIOLOGICAL SPECIFICITIES OF ATHEROSCLEROSIS IN PATIENTS WITH TYPE 2 DIABETESInternational Journal of Innovative Technologies in Social Science 2025; 4(3(47)) doi: 10.31435/ijitss.3(47).2025.3855
131
Gislaine Bonete, Bruna Alice L. Dias, Daniela A.M. Leandro, Ana Tereza N.S.F. Fernandes, Carlos Henrique Pereira, Cibele Teresinha Dias Ribeiro, André Gustavo Pires Sousa, Vanessa Resqueti, Guilherme A. Freitas Fregonezi, Fernando A. Lavezzo Dias. Impaired heart rate variability, Valsalva and 30:15 ratio indexes are associated with reduced submaximal exercise capacity in subjects with diabetes mellitusDiabetes Research and Clinical Practice 2019; 155 doi: 10.1016/j.diabres.2019.107813
132
Lisel Hope, Judith Giunta, Nathaniel Winer, Ho Won Lee, Sara Choudhry, Samy I. McFarlane. Principles of Diabetes Mellitus2017;  doi: 10.1007/978-3-319-20797-1_31-2
133
Victoria Serhiyenko, Ludmila Serhiyenko, Alexandr Serhiyenko. Omega-3 Polyunsaturated Fatty Acids Improved Arterial Stiffness Parameters in Type 2 Diabetic Patients with Cardiac Autonomic NeuropathyRomanian Journal of Diabetes Nutrition and Metabolic Diseases 2018; 25(4) doi: 10.2478/rjdnmd-2018-0043
134
Louise Buonalumi Tacito Yugar, Juan Carlos Yugar-Toledo, Nelson Dinamarco, Luis Gustavo Sedenho-Prado, Beatriz Vaz Domingues Moreno, Tatiane de Azevedo Rubio, Andre Fattori, Bruno Rodrigues, Jose Fernando Vilela-Martin, Heitor Moreno. The Role of Heart Rate Variability (HRV) in Different Hypertensive SyndromesDiagnostics 2023; 13(4) doi: 10.3390/diagnostics13040785
135
Pooja Bhati, M. Ejaz Hussain. Leisure-Time Physical Activity and Glycemic Control Independently Predicts Cardiac Autonomic Neuropathy in Type 2 Diabetes MellitusJournal of Physical Activity and Health 2021; 18(11) doi: 10.1123/jpah.2020-0194
136
Anastasios Tentolouris, Nikolaos Tentolouris. Autonomic Nervous System and Sleep2021;  doi: 10.1007/978-3-030-62263-3_27
137
Hoda Gad, Einas Elgassim, Ibrahim Mohammed, Ahmad Yaser Alhaddad, Hussein Ahmed Hussein Zaky Aly, John-John Cabibihan, Abdulaziz Al-Ali, Kishor Kumar Sadasivuni, Ioannis N. Petropoulos, Georgios Ponirakis, Wajeeha Abuhelaiqa, Amin Jayyousi, Dabia AlMohanadi, Khaled Baagar, Rayaz A. Malik. Cardiovascular autonomic neuropathy is associated with increased glycemic variability driven by hyperglycemia rather than hypoglycemia in patients with diabetesDiabetes Research and Clinical Practice 2023; 200 doi: 10.1016/j.diabres.2023.110670
138
Tao Yuan, Jiapei Li, Yong Fu, Tao Xu, Juan Li, Xiangqing Wang, Ying Zhou, Yingyue Dong, Weigang Zhao, Cheng Hu. A cardiac risk score based on sudomotor function to evaluate cardiovascular autonomic neuropathy in asymptomatic Chinese patients with diabetes mellitusPLOS ONE 2018; 13(10) doi: 10.1371/journal.pone.0204804
139
Nóra Sydó, Tibor Sydó, Béla Merkely, Karina Gonzales Carta, Joseph G. Murphy, Francisco Lopez-Jimenez, Thomas G. Allison. Impaired Heart Rate Response to Exercise in Diabetes and Its Long-term SignificanceMayo Clinic Proceedings 2016; 91(2) doi: 10.1016/j.mayocp.2015.10.028
140
Joshua D. Miller, Deborah C. Richman. Preoperative Evaluation of Patients with Diabetes MellitusAnesthesiology Clinics 2016; 34(1) doi: 10.1016/j.anclin.2015.10.008
141
P S Matusik, P T Matusik, P K Stein. Heart rate variability in patients with systemic lupus erythematosus: a systematic review and methodological considerationsLupus 2018; 27(8) doi: 10.1177/0961203318771502
142
Marjan Gusev, Lidija Poposka, Gjoko Spasevski, Magdalena Kostoska, Bojana Koteska, Monika Simjanoska, Nevena Ackovska, Aleksandar Stojmenski, Jurij Tasic, Janez Trontelj. Noninvasive Glucose Measurement Using Machine Learning and Neural Network Methods and Correlation with Heart Rate VariabilityJournal of Sensors 2020; 2020 doi: 10.1155/2020/9628281
143
Marcos Antonio Almeida-Santos, Jose Augusto Barreto-Filho, Joselina Luzia Menezes Oliveira, Francisco Prado Reis, Cristiane Costa da Cunha Oliveira, Antonio Carlos Sobral Sousa. Aging, heart rate variability and patterns of autonomic regulation of the heartArchives of Gerontology and Geriatrics 2016; 63 doi: 10.1016/j.archger.2015.11.011
144
Adriana Robles-Cabrera, José M. Torres-Arellano, Ruben Fossion, Claudia Lerma. Dependence of Heart Rate Variability Indices on the Mean Heart Rate in Women with Well-Controlled Type 2 DiabetesJournal of Clinical Medicine 2021; 10(19) doi: 10.3390/jcm10194386
145
Sen Zhang, Zhiyuan Sun, Xing Jiang, Zhimin Lu, Ling Ding, Chengzhi Li, Xuewen Tian, Qinglu Wang. Ferroptosis increases obesity: Crosstalk between adipocytes and the neuroimmune systemFrontiers in Immunology 2022; 13 doi: 10.3389/fimmu.2022.1049936
146
Wenquan Cheng, Hongsen Chen, Leirong Tian, Zhimin Ma, Xingran Cui. Heart rate variability in different sleep stages is associated with metabolic function and glycemic control in type 2 diabetes mellitusFrontiers in Physiology 2023; 14 doi: 10.3389/fphys.2023.1157270
147
Yu-Yu Kan, Ying-Shuang Chang, Tzu-Ning Chao, Yu-Lin Hsieh. B-cell lymphoma-extra large expression correlated with protein kinase RNA-like ER kinase and ubiquitination signals in the type 1 diabetes mouse modelPAIN Reports 2025; 10(6) doi: 10.1097/PR9.0000000000001356
148
Zh. D. Kobalava, B. B. Kvasnikov, Y. P. Burtsev. Effectiveness and Tolerability of Bisoprolol / Perindopril Single-Pill Combination in Patients With Arterial Hypertension, Stable Angina Pectoris and a History of Myocardial Infarction: the PRIDE Observational Study ResultsKardiologiia 2024; 64(6) doi: 10.18087/cardio.2024.6.n2662
149
Daniela Bassi-Dibai, Aldair Darlan Santos-de-Araújo, Daniel Santos Rocha, Lucivalda Viegas de Almeida, José Kléber Figueiredo, Louise Aline Romão Gondim, Marinete Rodrigues de Farias Diniz, Victória Pereira Frutuoso, Mariana Campos Maia, Patrícia Martins Santos, Audrey Borghi-Silva. Threshold-based artefact correction methods influence heart rate variability measurements in individuals with type 2 diabetes mellitusScientific Reports 2026; 16(1) doi: 10.1038/s41598-026-42255-y
150
Carmelo BUTTÀ, Antonino TUTTOLOMONDO, Alessandra CASUCCIO, Domenico DI RAIMONDO, Giuseppe MICELI, Francesco CUTTITTA, Valentina ZAPPULLA, Francesca CORPORA, Antonio PINTO. Autonomic dysfunction in a group of lower extremities arterial disease outpatientsMinerva Cardiology and Angiology 2021; 69(1) doi: 10.23736/S2724-5683.20.05094-X
151
María Argente-Pla, Antonia Pérez-Lázaro, Antonio Martinez-Millana, María Isabel Del Olmo-García, Jordi Espí-Reig, Isabel Beneyto-Castello, Rafael López-Andújar, Juan Francisco Merino-Torres. Simultaneous Pancreas Kidney Transplantation Improves Cardiovascular Autonomic Neuropathy with Improved Valsalva Ratio as the Most Precocious TestJournal of Diabetes Research 2020; 2020 doi: 10.1155/2020/7574628
152
Magda Shukry Mohammad, Mona Mohamad Abdelsalam, Nesma Ali Ibrahim, Mai Mohamed Salah Eldin. The Association between Diabetic Retinopathy and Cardiac Autonomic Neuropathy in Patients with Type 2 DiabetesJournal of Cardio-diabetes and Metabolic Disorders 2022; 2(1) doi: 10.4103/JCDM.JCDM_3_22
153
Victoria Serhiyenko, Marta Hotsko, Ludmila Serhiyenko, Alexandr Serhiyenko. Diabetic cardiac autonomic neuropathy: Omega-3 polyunsaturated fatty acids and heart rate variabilityInterConf 2023; (30(143)) doi: 10.51582/interconf.19-20.02.2023.037
154
Duc Huy Hoang Nguyen. Mechanosensory Silence During Cardiac StressComprehensive Physiology 2026; 16(2) doi: 10.1002/cph4.70122
155
Anne-Marie Wegeberg, Elin D Lunde, Sam Riahi, Niels Ejskjaer, Asbjørn M Drewes, Birgitte Brock, Rodica Pop-Busui, Christina Brock. Cardiac vagal tone as a novel screening tool to recognize asymptomatic cardiovascular autonomic neuropathy: Aspects of utility in type 1 diabetesDiabetes Research and Clinical Practice 2020; 170 doi: 10.1016/j.diabres.2020.108517
156
Gurmeet Singh, Taniya Das, Kirti Wasnik, Desh Deepak Yadav, Divya Pareek, Pradip Paik. Protective effects of cross-linked poly(N-acryloyl glycine) nanoparticles in type 2 diabetes-induced complications: in vivo studyJournal of Materials Chemistry B 2026; 14(30) doi: 10.1039/D6TB00902F
157
Suli Zheng, Min Pan, Pingping Wu, Wenqin Cai. Developing a nomogram to identify patients at risk of orthostatic hypotension in Chinese patientsBlood Pressure Monitoring 2025; 30(5) doi: 10.1097/MBP.0000000000000760
158
Zaid Qadri, Roshini Kadimcherla, Binuja A Sam, Eleanor Reffin, Tawhida Youshra, Tamer Mikhail. Coexistence of Orthostatic Hypotension and Refractory Hypertension in Diabetic Cardiovascular Autonomic Neuropathy: A Therapeutic DilemmaCureus 2026;  doi: 10.7759/cureus.110358
159
Mario Estévez-Báez, Calixto Machado, Julio Montes-Brown, Javier Jas-García, Gerry Leisman, Adam Schiavi, Andrés Machado-García, Claudia Carricarte-Naranjo, Eli Carmeli. Progress in Medical ResearchAdvances in Experimental Medicine and Biology 2018; 1070 doi: 10.1007/5584_2018_154
160
Vladan Vukomanovic, Marijana Tadic, Jelena Suzic-Lazic, Vesna Kocijancic, Vera Celic. The relationship between heart rate variability and left ventricular layer-specific deformation in uncomplicated diabetic patientsThe International Journal of Cardiovascular Imaging 2017; 33(4) doi: 10.1007/s10554-016-1023-9
161
Ying Hu, Jiancheng Wang, Sha Zeng, Mengxia Chen, Guilin Zou, Yuxia Li, Lingyan Zhu, Jixiong Xu. Association Between Serum Albumin Levels and Diabetic Peripheral Neuropathy Among Patients with Type 2 Diabetes: Effect Modification of Body Mass IndexDiabetes, Metabolic Syndrome and Obesity: Targets and Therapy 2022;  doi: 10.2147/DMSO.S347349
162
Maya D’Angelo, Angeliki Psycharis, Nicolo Piazza, Giuseppe De Luca, Elvin Kedhi. Myocardial Infarction as the First Clinical Manifestation of Coronary Artery Disease: A Scoping ReviewJournal of Clinical Medicine 2026; 15(7) doi: 10.3390/jcm15072603
163
V.A. Pavlova, D.A. Pavlov, V.V. Mashin. DYNAMICS OF CARDIAC AUTONOMIC NEUROPATHY IN PATIENTS WITH ISCHEMIC STROKE DURING VERTICALIZATIONUlyanovsk Medico-biological Journal 2021; (1) doi: 10.34014/2227-1848-2021-1-39-49
164
Deresse Sinamaw Asmare, Tadegew Adane Abebe, Baye Ashenef, Temesgen Baylie, Yeshimareg Shita, Kalyani Sen. QTc Interval and Its Associated Factors in Patient With Type 2 Diabetic MellitesJournal of Diabetes Research 2025; 2025(1) doi: 10.1155/jdr/8664620
165
Dihogo Gama de Matos, Jefferson Lima de Santana, Felipe J. Aidar, Stephen M. Cornish, Gordon G. Giesbrecht, Albena Nunes-Silva, Roman Romero-Ortuno, Todd A. Duhamel, Rodrigo Villar. Changes in Autonomic Balance, Cardiac Parasympathetic Modulation, and Cardiac Baroreflex Gain in Older Adults Under Different Orthostatic Stress ConditionsHealthcare 2025; 13(19) doi: 10.3390/healthcare13192404
166
Zhengwei Cui, Tianxin Sheng, Yuping Wang, Wenjing Zhou, Weijie Wang, Yan Jin, Yanhua Jin, Zibo Zhang, Xiongji Jin, Kangjuan Yang. Association between single nucleotide polymorphisms (SNPs) in the gene of ADP-ribosylation factor-like 15 (ARL15) and type 2 diabetes (T2D) in Korean Chinese population in Yanbian, ChinaInternational Journal of Diabetes in Developing Countries 2017; 37(2) doi: 10.1007/s13410-015-0391-3
167
Jasmine KaiLi Goh, Leroy Koh. Evaluating treatment options for cardiovascular autonomic neuropathy in patients with diabetes mellitus: a systematic reviewDiabetology International 2023; 14(3) doi: 10.1007/s13340-023-00629-x
168
Lisel Hope, Judith Giunta, Nathaniel Winer, Samy I. McFarlane. Principles of Diabetes Mellitus2015;  doi: 10.1007/978-3-319-20797-1_31-1
169
Nicola Tecce, Giorgio de Alteriis, Giulia de Alteriis, Ludovica Verde, Mario Felice Tecce, Annamaria Colao, Giovanna Muscogiuri. Harnessing the Synergy of SGLT2 Inhibitors and Continuous Ketone Monitoring (CKM) in Managing Heart Failure among Patients with Type 1 DiabetesHealthcare 2024; 12(7) doi: 10.3390/healthcare12070753