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Keywords = ocular blood flow regulation

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12 pages, 1532 KB  
Article
Association Between Autonomic Symptoms and the Choroidal Vascularity Index in Fibromyalgia Patients
by Dilara Ekici Zincirci, İrem Nur Yılmaz, Sevgi Atar, Esma Demirhan, İmran Arkan Emre, Gamze Karataş, Mehmet Zincirci, Demet Ferahman and Ömer Kuru
Medicina 2026, 62(4), 748; https://doi.org/10.3390/medicina62040748 - 13 Apr 2026
Viewed by 814
Abstract
Background and Objectives: Fibromyalgia syndrome (FMS) is frequently accompanied by autonomic symptoms and autonomic dysregulation, which may influence ocular blood flow regulation. The choroid is a densely vascular, autonomically innervated tissue, and optical coherence tomography (OCT)-derived markers have been used to explore [...] Read more.
Background and Objectives: Fibromyalgia syndrome (FMS) is frequently accompanied by autonomic symptoms and autonomic dysregulation, which may influence ocular blood flow regulation. The choroid is a densely vascular, autonomically innervated tissue, and optical coherence tomography (OCT)-derived markers have been used to explore potential ocular microvascular changes in FMS, with inconsistent findings. The choroidal vascularity index (CVI), defined as the proportion of luminal area within the total choroidal area, has been proposed as a potentially more robust marker of choroidal vascular status than thickness alone. We aimed to compare CVI and choroidal thickness between patients with FMS and healthy controls and examine the association between autonomic symptom burden and CVI in FMS. Materials and Methods: This single-centre observational cross-sectional case–control study enrolled adults aged 18–65 years. Swept-source OCT was performed; low-quality scans were excluded, and only right eyes were analysed. CVI, subfoveal maximum and mean choroidal thickness were obtained using an artificial intelligence-assisted analysis platform. Autonomic symptom burden, fibromyalgia impact, and central sensitization-related symptoms were assessed using the Composite Autonomic Symptom Score-31 (COMPASS-31), the Revised Fibromyalgia Impact Questionnaire (FIQ-R), and the Central Sensitization Inventory (CSI), respectively. Group comparisons, Spearman correlations, and multivariable linear regression were performed. Results: COMPASS-31, FIQ-R, and CSI scores were higher in the FMS group (all p < 0.001). CVI and choroidal thickness did not differ significantly between groups (CVI p = 0.124; maximum thickness p = 0.136; mean thickness p = 0.097). CVI was not correlated with COMPASS-31, FIQ-R, or CSI within either group. In adjusted models, age was independently associated with CVI (p < 0.001), whereas FMS status and COMPASS-31 total score were not. Conclusions: CVI and choroidal thickness were similar in FMS and controls, and CVI was not associated with self-reported autonomic symptom burden in FMS. Studies incorporating objective autonomic testing and dynamic vascular imaging paradigms are warranted. Full article
(This article belongs to the Topic New Advances in Musculoskeletal Disorders, 2nd Edition)
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20 pages, 339 KB  
Review
Pericytes as Key Players in Retinal Diseases: A Comprehensive Narrative Review
by Fabiana D’Esposito, Francesco Cappellani, Federico Visalli, Matteo Capobianco, Lorenzo Rapisarda, Alessandro Avitabile, Ludovica Cannizzaro, Roberta Malaguarnera, Giuseppe Gagliano, Antonino Maniaci, Mario Lentini, Giuseppe Montalbano, Mohamed Amine Zaouali, Dorra H’mida, Giovanni Giurdanella and Caterina Gagliano
Biology 2025, 14(7), 736; https://doi.org/10.3390/biology14070736 - 20 Jun 2025
Cited by 13 | Viewed by 4408
Abstract
Pericytes, specialized mural cells surrounding microvessels, play a crucial role in maintaining vascular homeostasis and function across various organs, including the eye. These versatile cells regulate blood flow, support the integrity of the blood–retinal barrier, and contribute to angiogenesis. Recent advancements in molecular [...] Read more.
Pericytes, specialized mural cells surrounding microvessels, play a crucial role in maintaining vascular homeostasis and function across various organs, including the eye. These versatile cells regulate blood flow, support the integrity of the blood–retinal barrier, and contribute to angiogenesis. Recent advancements in molecular and cellular biology have revealed the heterogeneity of pericytes and their critical involvement in ocular physiology and pathology. This review provides a comprehensive analysis of pericyte functions in ocular health and their implications in diseases such as diabetic retinopathy, age-related macular degeneration, glaucoma, and retinal vein occlusion. Pericyte dysfunction is implicated in vascular instability, neurovascular coupling failure, inflammation, and pathological neovascularization, contributing to vision-threatening disorders. The review further explores recent findings on pericyte-targeted therapies, including pharmacological agents, gene therapy, and cell-based approaches, aiming to restore pericyte function and preserve ocular health. Full article
9 pages, 1057 KB  
Article
Optical Coherence Tomography Study of Choroidal Response to Exercise-Induced Hypertension in Chronic Central Serous Chorioretinopathy
by Anindya Samanta, Giulia Gregori, Alessio Muzi, Ramkailash Gujar, Cesare Mariotti, Daniela Fruttini, Kiran K. Vupparaboina, Jay Chhablani, Massimo Nicolò, Chiara M. Eandi, Felice Cardillo Piccolino and Marco Lupidi
J. Clin. Med. 2024, 13(21), 6580; https://doi.org/10.3390/jcm13216580 - 1 Nov 2024
Cited by 1 | Viewed by 2506
Abstract
Background/Objectives: The aim of this study was to evaluate the choroidal vascular response using optical coherence tomography (OCT) in patients with chronic central serous chorioretinopathy (CSCR) during transient increases in blood pressure. Methods: This observational, case–control study enrolled chronic CSCR patients [...] Read more.
Background/Objectives: The aim of this study was to evaluate the choroidal vascular response using optical coherence tomography (OCT) in patients with chronic central serous chorioretinopathy (CSCR) during transient increases in blood pressure. Methods: This observational, case–control study enrolled chronic CSCR patients and age-matched healthy controls. OCT scans of the macula were performed at rest and during hand-grip (HG) isometric exercise. Mean ocular perfusion pressure (MOPP) and subfoveal choroidal thickness (SCT) were measured at baseline and during stress. Quantitative OCT assessment included the bright area (BA, stroma), dark area (DA, vascular lumen), and total choroidal area (CA). The choroidal vascularity index (CVI) was calculated as DA/CA to assess vascular response to stress. A comparative analysis between CSCR patients and controls was conducted. Conclusions: MOPP was significantly higher (p = 0.008) at baseline in CSCR patients and further increased under stress compared to controls. SCT and CA were both significantly higher in CSCR patients than in healthy subjects at rest and under stress (p < 0.001), but no change occurred after HG. A significant decrease in CVI (p = 0.005) was noted in controls under stress, but not in CSCR patients. Additionally, a negative correlation between CVI and MOPP was found in healthy subjects (−0.648; p = 0.043). The study demonstrated a choroidal vasoconstrictive response to stress in healthy subjects, as evidenced by a decrease in CVI, but not in CSCR patients. This suggests that CSCR patients may experience impaired choroidal blood flow regulation, resulting in potentially higher perfusion pressures during stress without compensatory vasoconstriction, potentially affecting the choriocapillaris. Full article
(This article belongs to the Section Ophthalmology)
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12 pages, 555 KB  
Review
Nicotinamide: Bright Potential in Glaucoma Management
by Silvia Babighian, Irene Gattazzo, Maria Sole Zanella, Alessandro Galan, Fabiana D’Esposito, Mutali Musa, Caterina Gagliano, Lucia Lapenna and Marco Zeppieri
Biomedicines 2024, 12(8), 1655; https://doi.org/10.3390/biomedicines12081655 - 25 Jul 2024
Cited by 16 | Viewed by 11004
Abstract
Background: Glaucoma is a major cause of incurable ocular morbidity and poses significant challenges in its management due to the limited treatment options and potential adverse effects. Nicotinamide, a naturally occurring diet-rich nutrient, has emerged as a promising therapeutic agent for glaucoma, offering [...] Read more.
Background: Glaucoma is a major cause of incurable ocular morbidity and poses significant challenges in its management due to the limited treatment options and potential adverse effects. Nicotinamide, a naturally occurring diet-rich nutrient, has emerged as a promising therapeutic agent for glaucoma, offering neuroprotective effects and the potential modulation of intraocular pressure (IOP) regulation pathways. This comprehensive review sought to analyze the current literature on nicotinamide in glaucoma management, exploring its mechanisms of action, efficacy, and safety profile. Methods: A systematic search of the PubMed database was conducted to identify relevant records on the therapeutic actions of nicotinamide in ocular hypertension and glaucoma. Publications evaluating nicotinamide’s effects on retinal ganglion cells (RGCs), optic nerve function, IOP regulation, and neuroinflammatory pathways were included. Results: The literature review revealed the preclinical evidence supporting nicotinamide’s neuroprotective effects on RGCs, the preservation of optic nerve integrity, and the modulation of glaucoma-associated neuroinflammation. Additionally, nicotinamide may exert IOP-lowering effects through its influence on ocular blood flow and aqueous humor dynamics. Conclusions: Nicotinamide holds promise as a novel therapeutic approach in glaucoma management, offering potential neuroprotective and IOP-lowering effects. The authors recommend more research to determine the nicotinamide efficacy, safe dosing parameters, and any long-term safety concerns in glaucoma patients. Full article
(This article belongs to the Special Issue Glaucoma: New Diagnostic and Therapeutic Approaches)
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18 pages, 5395 KB  
Article
Platelet Proteome Reveals Novel Targets for Hypercoagulation in Pseudoexfoliation Syndrome
by Elif Ugurel, Ghazal Narimanfar, Neslihan Cilek, Cem Kesim, Cigdem Altan, Afsun Sahin and Ozlem Yalcin
Int. J. Mol. Sci. 2024, 25(3), 1403; https://doi.org/10.3390/ijms25031403 - 24 Jan 2024
Cited by 5 | Viewed by 2335
Abstract
Pseudoexfoliation syndrome (PEX) is characterized by the accumulation of abnormal extracellular matrix material in ocular and non-ocular tissues, including blood vessel walls. Clot-forming dysfunction might be responsible for venous thrombosis in PEX. We investigated global coagulation, the proteome, and functions of platelets in [...] Read more.
Pseudoexfoliation syndrome (PEX) is characterized by the accumulation of abnormal extracellular matrix material in ocular and non-ocular tissues, including blood vessel walls. Clot-forming dysfunction might be responsible for venous thrombosis in PEX. We investigated global coagulation, the proteome, and functions of platelets in PEX patients and aimed to determine prognostic biomarkers for thrombosis risk in PEX. Peripheral blood was collected from PEX and retinal vein occlusion (RVO) patients, and age–sex matched controls. Viscoelastic hemostasis was evaluated by rotational thromboelastometry (ROTEM). Platelet markers (CD41, CD42, CD61, and CD62p) and endothelial markers (P-selectin, E-selectin, and von Willebrand factor) were investigated by flow cytometry and ELISA, respectively. The platelet proteome was analyzed by 2D fluorescence difference gel electrophoresis followed by mass spectrometry. Clot formation time (CFT) is significantly reduced in PEX patients compared to the controls (p < 0.05). P-selectin levels were higher in PEX patients than in controls (p < 0.05); E-selectin and von Willebrand factor remained unchanged. The monitorization of CFT by ROTEM, and soluble P-selectin, may help assess thrombotic risk in PEX patients. Proteomic analysis revealed differential expression of Profilin-1 in platelets. Profilin-1 regulates the stability of actin-cytoskeleton and may contribute to impaired platelet hemostatic functions. Increased P-selectin levels together with impaired coagulation dynamics might be responsible for the thrombotic events in PEX disease. Full article
(This article belongs to the Special Issue New Insights into Proteomics in Disease)
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11 pages, 1906 KB  
Article
Physiology-Enhanced Data Analytics to Evaluate the Effect of Altitude on Intraocular Pressure and Ocular Hemodynamics
by Alice Verticchio Vercellin, Alon Harris, Aditya Belamkar, Ryan Zukerman, Lucia Carichino, Marcela Szopos, Brent Siesky, Luciano Quaranta, Carlo Bruttini, Francesco Oddone, Ivano Riva and Giovanna Guidoboni
Photonics 2022, 9(3), 158; https://doi.org/10.3390/photonics9030158 - 5 Mar 2022
Cited by 1 | Viewed by 3220
Abstract
Altitude affects intraocular pressure (IOP); however, the underlying mechanisms involved and its relationship with ocular hemodynamics remain unknown. Herein, a validated mathematical modeling approach was used for a physiology-enhanced (pe-) analysis of the Mont Blanc study (MBS), estimating the effects of [...] Read more.
Altitude affects intraocular pressure (IOP); however, the underlying mechanisms involved and its relationship with ocular hemodynamics remain unknown. Herein, a validated mathematical modeling approach was used for a physiology-enhanced (pe-) analysis of the Mont Blanc study (MBS), estimating the effects of altitude on IOP, blood pressure (BP), and retinal hemodynamics. In the MBS, IOP and BP were measured in 33 healthy volunteers at 77 and 3466 m above sea level. Pe-retinal hemodynamics analysis predicted a statistically significant increase (p < 0.001) in the model predicted blood flow and pressure within the retinal vasculature following increases in systemic BP with altitude measured in the MBS. Decreased IOP with altitude led to a non-monotonic behavior of the model predicted retinal vascular resistances, with significant decreases in the resistance of the central retinal artery (p < 0.001) and retinal venules (p = 0.003) and a non-significant increase in the resistance in the central retinal vein (p = 0.253). Pe-aqueous humor analysis showed that a decrease in osmotic pressure difference (OPD) may underlie the difference in IOP measured at different altitudes in the MBS. Our analysis suggests that venules bear the significant portion of the IOP pressure load within the ocular vasculature, and that OPD plays an important role in regulating IOP with changes in altitude. Full article
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9 pages, 1469 KB  
Article
Assessment of Retinal Capillary Dropout after Transcatheter Aortic Valve Implantation by Optical Coherence Tomography Angiography
by Jeanne Martine Gunzinger, Burbuqe Ibrahimi, Joel Baur, Maximilian Robert Justus Wiest, Marco Piccirelli, Athina Pangalu, Dominik Straumann, Fabian Nietlispach, Igal Moarof and Sandrine Anne Zweifel
Diagnostics 2021, 11(12), 2399; https://doi.org/10.3390/diagnostics11122399 - 20 Dec 2021
Cited by 9 | Viewed by 3516
Abstract
Transcatheter aortic valve implantation (TAVI) is an alternative to open heart surgery in the treatment of symptomatic aortic valve stenosis, which is often the treatment of choice in elderly and frail patients. It carries a risk of embolic complications in the whole cerebral [...] Read more.
Transcatheter aortic valve implantation (TAVI) is an alternative to open heart surgery in the treatment of symptomatic aortic valve stenosis, which is often the treatment of choice in elderly and frail patients. It carries a risk of embolic complications in the whole cerebral vascular bed, which includes the retinal vasculature. The main objective was the evaluation of retinal emboli visible on optical coherence tomography angiography (OCTA) following TAVI. This is a prospective, single center, observational study enrolling consecutive patients over two years. Patients were assessed pre- and post-TAVI. Twenty-eight patients were included in the final analysis, 82.1% were male, median age was 79.5 (range 52–88), median BCVA was 82.5 letters (range 75–93). Eight patients (28.6%) presented new capillary dropout lesions in their post-TAVI OCTA scans. There was no statistically significant change in BCVA. Quantitative analysis of macular or peripapillary OCTA parameters did not show any statistically significant difference in pre- and post-intervention. In conclusion, capillary dropout lesions could frequently be found in patients after TAVI. Quantitative measurements of macular and peripapillary flow remained stable, possibly indicating effective ocular blood flow regulation within the range of left ventricular ejection fraction in our cohort. Full article
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15 pages, 21078 KB  
Article
Metabolic Signaling in a Theoretical Model of the Human Retinal Microcirculation
by Julia Arciero, Brendan Fry, Amanda Albright, Grace Mattingly, Hannah Scanlon, Mandy Abernathy, Brent Siesky, Alice Verticchio Vercellin and Alon Harris
Photonics 2021, 8(10), 409; https://doi.org/10.3390/photonics8100409 - 23 Sep 2021
Cited by 9 | Viewed by 3015
Abstract
Impaired blood flow and oxygenation contribute to many ocular pathologies, including glaucoma. Here, a mathematical model is presented that combines an image-based heterogeneous representation of retinal arterioles with a compartmental description of capillaries and venules. The arteriolar model of the human retina is [...] Read more.
Impaired blood flow and oxygenation contribute to many ocular pathologies, including glaucoma. Here, a mathematical model is presented that combines an image-based heterogeneous representation of retinal arterioles with a compartmental description of capillaries and venules. The arteriolar model of the human retina is extrapolated from a previous mouse model based on confocal microscopy images. Every terminal arteriole is connected in series to compartments for capillaries and venules, yielding a hybrid model for predicting blood flow and oxygenation throughout the retinal microcirculation. A metabolic wall signal is calculated in each vessel according to blood and tissue oxygen levels. As expected, a higher average metabolic signal is generated in pathways with a lower average oxygen level. The model also predicts a wide range of metabolic signals dependent on oxygen levels and specific network location. For example, for high oxygen demand, a threefold range in metabolic signal is predicted despite nearly identical PO2 levels. This whole-network approach, including a spatially nonuniform structure, is needed to describe the metabolic status of the retina. This model provides the geometric and hemodynamic framework necessary to predict ocular blood flow regulation and will ultimately facilitate early detection and treatment of ischemic and metabolic disorders of the eye. Full article
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23 pages, 9570 KB  
Review
Clinical Applications and Factors Involved in Validating Thermal Windows Used in Infrared Thermography in Cattle and River Buffalo to Assess Health and Productivity
by Daniel Mota-Rojas, Alfredo M. F. Pereira, Dehua Wang, Julio Martínez-Burnes, Marcelo Ghezzi, Ismael Hernández-Avalos, Pamela Lendez, Patricia Mora-Medina, Alejandro Casas, Adriana Olmos-Hernández, Adriana Domínguez, Aldo Bertoni and Ana de Mira Geraldo
Animals 2021, 11(8), 2247; https://doi.org/10.3390/ani11082247 - 30 Jul 2021
Cited by 106 | Viewed by 14444
Abstract
Infrared thermography (IRT) is a non-ionizing, non-invasive technique that permits evaluating the comfort levels of animals, a topic of concern due to the growing interest in determining the state of health and welfare of production animals. The operating principle of IRT is detecting [...] Read more.
Infrared thermography (IRT) is a non-ionizing, non-invasive technique that permits evaluating the comfort levels of animals, a topic of concern due to the growing interest in determining the state of health and welfare of production animals. The operating principle of IRT is detecting the heat irradiated in anatomical regions characterized by a high density of near-surface blood vessels that can regulate temperature gain or loss from/to the environment by modifying blood flow. This is essential for understanding the various vascular thermoregulation mechanisms of different species, such as rodents and ruminants’ tails. The usefulness of ocular, nasal, and vulvar thermal windows in the orbital (regio orbitalis), nasal (regio nasalis), and urogenital (regio urogenitalis) regions, respectively, has been demonstrated in cattle. However, recent evidence for the river buffalo has detected discrepancies in the data gathered from distinct thermal regions in these large ruminants, suggesting a limited sensitivity and specificity when used with this species due to various factors: the presence of hair, ambient temperature, and anatomical features, such as skin thickness and variations in blood supplies to different regions. In this review, a literature search was conducted in Scopus, Web of Science, ScienceDirect, and PubMed, using keyword combinations that included “infrared thermography”, “water buffalo”, “river buffalo” “thermoregulation”, “microvascular changes”, “lacrimal caruncle”, “udder”, “mastitis”, and “nostril”. We discuss recent findings on four thermal windows—the orbital and nasal regions, mammary gland in the udder region (regio uberis), and vulvar in the urogenital region (regio urogenitalis)—to elucidate the factors that modulate and intervene in validating thermal windows and interpreting the information they provide, as it relates to the clinical usefulness of IRT for cattle (Bos) and the river buffalo (Bubalus bubalis). Full article
(This article belongs to the Special Issue Thermal stress—Thermoregulatory and Adaptive Responses of Livestock)
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40 pages, 2542 KB  
Review
Signalling, Metabolic Pathways and Iron Homeostasis in Endothelial Cells in Health, Atherosclerosis and Alzheimer’s Disease
by Emy Bosseboeuf and Claudio Raimondi
Cells 2020, 9(9), 2055; https://doi.org/10.3390/cells9092055 - 8 Sep 2020
Cited by 38 | Viewed by 8677
Abstract
Endothelial cells drive the formation of new blood vessels in physiological and pathological contexts such as embryonic development, wound healing, cancer and ocular diseases. Once formed, all vessels of the vasculature system present an endothelial monolayer (the endothelium), lining the luminal wall of [...] Read more.
Endothelial cells drive the formation of new blood vessels in physiological and pathological contexts such as embryonic development, wound healing, cancer and ocular diseases. Once formed, all vessels of the vasculature system present an endothelial monolayer (the endothelium), lining the luminal wall of the vessels, that regulates gas and nutrient exchange between the circulating blood and tissues, contributing to maintaining tissue and vascular homeostasis. To perform their functions, endothelial cells integrate signalling pathways promoted by growth factors, cytokines, extracellular matrix components and signals from mechanosensory complexes sensing the blood flow. New evidence shows that endothelial cells rely on specific metabolic pathways for distinct cellular functions and that the integration of signalling and metabolic pathways regulates endothelial-dependent processes such as angiogenesis and vascular homeostasis. In this review, we provide an overview of endothelial functions and the recent advances in understanding the role of endothelial signalling and metabolism in physiological processes such as angiogenesis and vascular homeostasis and vascular diseases. Also, we focus on the signalling pathways promoted by the transmembrane protein Neuropilin-1 (NRP1) in endothelial cells, its recently discovered role in regulating mitochondrial function and iron homeostasis and the role of mitochondrial dysfunction and iron in atherosclerosis and neurodegenerative diseases. Full article
(This article belongs to the Special Issue Vascular Signalling)
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20 pages, 5467 KB  
Review
Retinal Neurovascular Coupling in Diabetes
by Gerhard Garhöfer, Jacqueline Chua, Bingyao Tan, Damon Wong, Doreen Schmidl and Leopold Schmetterer
J. Clin. Med. 2020, 9(9), 2829; https://doi.org/10.3390/jcm9092829 - 1 Sep 2020
Cited by 60 | Viewed by 6659
Abstract
Neurovascular coupling, also termed functional hyperemia, is one of the physiological key mechanisms to adjust blood flow in a neural tissue in response to functional activity. In the retina, increased neural activity, such as that induced by visual stimulation, leads to the dilatation [...] Read more.
Neurovascular coupling, also termed functional hyperemia, is one of the physiological key mechanisms to adjust blood flow in a neural tissue in response to functional activity. In the retina, increased neural activity, such as that induced by visual stimulation, leads to the dilatation of retinal arterioles, which is accompanied by an immediate increase in retinal and optic nerve head blood flow. According to the current scientific view, functional hyperemia ensures the adequate supply of nutrients and metabolites in response to the increased metabolic demand of the neural tissue. Although the molecular mechanisms behind neurovascular coupling are not yet fully elucidated, there is compelling evidence that this regulation is impaired in a wide variety of neurodegenerative and vascular diseases. In particular, it has been shown that the breakdown of the functional hyperemic response is an early event in patients with diabetes. There is compelling evidence that alterations in neurovascular coupling precede visible signs of diabetic retinopathy. Based on these observations, it has been hypothesized that a breakdown of functional hyperemia may contribute to the retinal complications of diabetes such as diabetic retinopathy or macular edema. The present review summarizes the current evidence of impaired neurovascular coupling in patients with diabetes. In this context, the molecular mechanisms of functional hyperemia in health and disease will be covered. Finally, we will also discuss how neurovascular coupling may in future be used to monitor disease progression or risk stratification. Full article
(This article belongs to the Special Issue Effects of Diabetes on Neurodegenerative and Neurovascular Changes)
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