Letteratura scientifica selezionata sul tema "Cerebrovascular regulation"
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Articoli di riviste sul tema "Cerebrovascular regulation"
Benyó, Zoltán, Éva Ruisanchez, Miriam Leszl-Ishiguro, Péter Sándor e Pál Pacher. "Endocannabinoids in cerebrovascular regulation". American Journal of Physiology-Heart and Circulatory Physiology 310, n. 7 (1 aprile 2016): H785—H801. http://dx.doi.org/10.1152/ajpheart.00571.2015.
Testo completoMiller, Stephanie. "NIRS-based cerebrovascular regulation assessment: exercise and cerebrovascular reactivity". Neurophotonics 4, n. 04 (12 settembre 2017): 1. http://dx.doi.org/10.1117/1.nph.4.4.041503.
Testo completoYang, Yi, David Simpson, Bingren Hu, Jia Liu e Li Xiong. "Cerebrovascular Regulation in Neurological Disorders". BioMed Research International 2018 (8 ottobre 2018): 1–2. http://dx.doi.org/10.1155/2018/8140545.
Testo completoEisenach, J. C., C. Tong, D. A. Stump e S. M. Block. "Vasopressin and fetal cerebrovascular regulation". American Journal of Physiology-Regulatory, Integrative and Comparative Physiology 263, n. 2 (1 agosto 1992): R376—R381. http://dx.doi.org/10.1152/ajpregu.1992.263.2.r376.
Testo completoJafari, Behrouz. "Cerebrovascular Regulation and Sleep Apnea". Current Sleep Medicine Reports 4, n. 3 (17 luglio 2018): 196–201. http://dx.doi.org/10.1007/s40675-018-0123-6.
Testo completoDaffertshofer, M., e M. Hennerici. "Cerebrovascular regulation and vasoneuronal coupling". Journal of Clinical Ultrasound 23, n. 2 (febbraio 1995): 125–38. http://dx.doi.org/10.1002/jcu.1870230207.
Testo completoCaldwell, Hannah G., Jay M. J. R. Carr, Jatinder S. Minhas, Erik R. Swenson e Philip N. Ainslie. "Acid–base balance and cerebrovascular regulation". Journal of Physiology 599, n. 24 (26 novembre 2021): 5337–59. http://dx.doi.org/10.1113/jp281517.
Testo completoKoehler, Raymond C., Debebe Gebremedhin e David R. Harder. "Role of astrocytes in cerebrovascular regulation". Journal of Applied Physiology 100, n. 1 (gennaio 2006): 307–17. http://dx.doi.org/10.1152/japplphysiol.00938.2005.
Testo completoRaz, Limor. "Estrogen and cerebrovascular regulation in menopause". Molecular and Cellular Endocrinology 389, n. 1-2 (maggio 2014): 22–30. http://dx.doi.org/10.1016/j.mce.2014.01.015.
Testo completoEdvinsson, L. "Cerebrovascular gene regulation in brain diseases". Journal of the Neurological Sciences 283, n. 1-2 (agosto 2009): 246. http://dx.doi.org/10.1016/j.jns.2009.02.032.
Testo completoTesi sul tema "Cerebrovascular regulation"
Hansen, Alexander Bradley. "Cerebrovascular and peripheral vascular regulation : role of oxidative stress". Thesis, University of British Columbia, 2017. http://hdl.handle.net/2429/63341.
Testo completoGraduate Studies, College of (Okanagan)
Graduate
Lowings, Michael D., e University of Lethbridge Faculty of Arts and Science. "Epigenetic regulation of stroke recovery : changes in DNA methylation and micro-RNA regulation following stroke and EGF/EPO neurogenesis therapy". Thesis, Lethbridge, Alta. : University of Lethbridge, Dept. of Biological Sciences, c2010, 2010. http://hdl.handle.net/10133/2570.
Testo completox, [99] leaves : ill. (some col.) ; 29 cm
Allinger, Jérémie. "Etude des différents facteurs influençant la perte de cοnnaissance chez l'apnéïste". Electronic Thesis or Diss., Normandie, 2024. http://www.theses.fr/2024NORMR081.
Testo completoThe aim of this thesis was to study the factors influencing loss of consciousness in freedivers. Firstly, we studied the prevalence of accidents in competitive freediving as a function of the freediving discipline practised (study 1) and then attempted to establish whether there was a particularly high-risk profile for syncope among expert freedivers (study 2). Secondly, we analysed the cognitive impact of a series of maximal apneas in expert freedivers and after a regular freediving session in amateur freedivers (studies 3 and 4). In addition, particular attention was paid to the quantification and management of apnea training load in ecological situations (study 4). Finally, the haemodynamic and cerebral oxygenation responses of novice freedivers were compared during static and dynamic apneas (study 5). Syncope remains relatively frequent (3.31% of accidents), with a risk twice as high for disciplines without fins. Certain freedivers with the ability to perform long apneas tend to take more risks, particularly among experienced male competitors. This could be linked to repeated exposure to hypoxia, since we have shown that a series of maximal apneas directly affects cognitive functions, regardless of the level of training. However, in non-experts, a single apnea session in a non-competitive setting did not reveal any notable cognitive deficits, which suggests that these alterations probably depend on the intensity and frequency of apneas and therefore on the hypoxic dose. This hypoxic dose also seems to depend on the type of apnoea: static or dynamic. Thus, although static apnoea benefits from more effective compensatory mechanisms, dynamic apnoea, because of the increased muscular effort, induces more rapid hypoxia, putting the brain's protective mechanisms to a greater test. It therefore seems worthwhile to use tools to quantify the training load of freedivers in order to better assess the hypoxic dose induced and, ultimately, to limit the risks of syncope in order to prevent future cognitive impairment. This work paves the way for future research into adaptations to hypoxia induced by apnoea in sports and medical settings, while calling for better management of the risks associated with practice
Teixeira, Ana Sofia da Cunha. "Ageing affects the balance between central and peripheral mechanisms of cerebrovascular regulation with increasing influence of systolic blood pressure levels". Master's thesis, 2019. https://hdl.handle.net/10216/119825.
Testo completoTeixeira, Ana Sofia da Cunha. "Ageing affects the balance between central and peripheral mechanisms of cerebrovascular regulation with increasing influence of systolic blood pressure levels". Dissertação, 2019. https://hdl.handle.net/10216/119825.
Testo completoLibri sul tema "Cerebrovascular regulation"
Mitagvariia, N. P. Cerebral blood flow regulation. New York: Nova Science Publishers, 2009.
Cerca il testo completo1924-, Wüllenweber R., Klinger M. 1943- e Brock M. 1938-, a cura di. Regulation of cerebral blood flow and metabolism ; Neurosurgical treatment of epilepsy ; Rehabilitation in neurosurgery. Berlin: Springer-Verlag, 1987.
Cerca il testo completoMcCulloch, James, e Lars Edvinsson. Peptidergic Mechanisms in the Cerebral Circulation. Wiley & Sons, Incorporated, John, 1987.
Cerca il testo completoWullenweber e Klinger. Regulation of Cerebral Blood Flow and Metabolism/Neurosurgical Treatment of Epilepsy/Rehabilitation in Neurosurgery (Deutsche Gesellschaft Fur Neurochirurgie // Proceedings of the Annual Congress). Springer-Verlag, 1987.
Cerca il testo completoCerebral Blood Flow in Acute Head Injury: The Regulation of Blood Flow and Metabolism During the Acute Phase of Head Injury, and Its Significance for (Acta Neurochirurgica Supplementum). Springer, 1991.
Cerca il testo completoCapitoli di libri sul tema "Cerebrovascular regulation"
Dalkara, Turgay, e Michael A. Moskowitz. "Nitric Oxide and Cerebrovascular Regulation". In Biochemical, Pharmacological, and Clinical Aspects of Nitric Oxide, 189–94. Boston, MA: Springer US, 1995. http://dx.doi.org/10.1007/978-1-4615-1903-4_23.
Testo completoDalkara, T., e M. A. Moskowitz. "Nitric Oxide in Cerebrovascular Regulation and Ischemia". In Monographs in Clinical Neuroscience, 28–45. Basel: KARGER, 1997. http://dx.doi.org/10.1159/000061570.
Testo completoDaley, Michael L., Nithya Narayanan, Charles W. Leffler e Per Kristian Eide. "Stroke with subarachnoid hemorrhage: assessment of cerebrovascular pressure regulation and simulated cerebrovascular resistance". In Acta Neurochirurgica Supplements, 321–25. Vienna: Springer Vienna, 2008. http://dx.doi.org/10.1007/978-3-211-85578-2_61.
Testo completoToda, Noboru, e Tomio Okamura. "Nerve-Derived Nitric Oxide (NO) in the Regulation of Cerebrovascular Function". In Molecular and Cellular Mechanisms of Cardiovascular Regulation, 211–18. Tokyo: Springer Japan, 1996. http://dx.doi.org/10.1007/978-4-431-65952-5_16.
Testo completoKatsuki, Hiroshi, e Kosei Matsumoto. "Nicotinic Acetylcholine Receptors in Regulation of Pathology of Cerebrovascular Disorders". In Nicotinic Acetylcholine Receptor Signaling in Neuroprotection, 113–36. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-10-8488-1_7.
Testo completoMoore, Steven A., Elizabeth Yoder, Gretchen Rich, MacKenzie Hilfers e Jeffrey Albright. "Regulation of Cerebrovascular Cyclooxygenase-2 by Pro- and Anti-Inflammatory Cytokines". In Advances in Experimental Medicine and Biology, 125–29. Boston, MA: Springer US, 1999. http://dx.doi.org/10.1007/978-1-4615-4793-8_19.
Testo completoMacfarlane, R., e M. A. Moskowitz. "The Innervation of Pial Blood Vessels and their Role in Cerebrovascular Regulation". In Brain Ischemia, 247–59. London: Springer London, 1995. http://dx.doi.org/10.1007/978-1-4471-2073-5_25.
Testo completoBenyó, Zoltán, Christoph Görlach e Michael Wahl. "Interaction between Nitric Oxide and Thromboxane A2 in the Regulation of the Resting Cerebrovascular Tone". In Advances in Experimental Medicine and Biology, 373–79. Boston, MA: Springer US, 1999. http://dx.doi.org/10.1007/978-1-4615-4717-4_45.
Testo completoDaley, Michael L., C. W. Leffler, S. Jackson e I. Piper. "Use of Resistance-Area Product Derived from Doppler MCA Velocity to Estimate the Range of Active Cerebrovascular Regulation". In Intracranial Pressure and Brain Biochemical Monitoring, 155–57. Vienna: Springer Vienna, 2002. http://dx.doi.org/10.1007/978-3-7091-6738-0_40.
Testo completoSonntag, William E., Delrae M. Eckman, Jeremy Ingraham e David R. Riddle. "Regulation of Cerebrovascular Aging". In Brain Aging, 279–304. CRC Press, 2007. http://dx.doi.org/10.1201/9781420005523-12.
Testo completoAtti di convegni sul tema "Cerebrovascular regulation"
Miller, S., I. Richmond, J. Borgos e K. Mitra. "NIRS-based noninvasive cerebrovascular regulation assessment". In SPIE BiOS, a cura di Steen J. Madsen, Victor X. D. Yang, E. Duco Jansen, Qingming Luo, Samarendra K. Mohanty e Nitish V. Thakor. SPIE, 2016. http://dx.doi.org/10.1117/12.2213951.
Testo completo"Analysis of methylation of antioxydant-related genes in patiens with common cardio- and cerebrovascular diseases". In Bioinformatics of Genome Regulation and Structure/ Systems Biology. institute of cytology and genetics siberian branch of the russian academy of science, Novosibirsk State University, 2020. http://dx.doi.org/10.18699/bgrs/sb-2020-261.
Testo completoOlufsen, Mette S., Lewis A. Lipsitz e Ali Nadim. "A Lumped Parameter Model for Cerebral Blood Flow Regulation". In ASME 2001 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/imece2001/bed-23138.
Testo completoThunemann, Martin, Kivilcim Kilic, Michele Desjardins, Qun Cheng, Kimberly L. Weldy, Payam A. Saisan, Anders M. Dale e Anna Devor. "Implementation of Deep 2-Photon Microscopy and Optogenetics to Dissect Cell-Type-Specific Mechanisms of Cerebrovascular Regulation". In Bio-Optics: Design and Application. Washington, D.C.: OSA, 2017. http://dx.doi.org/10.1364/boda.2017.jtu4a.15.
Testo completoRakymzhan, Adiya, e Alberto Vazquez. "The Contribution of Cortical Neuronal Populations to Resting-State Cerebrovascular Regulation Revealed by Two-Photon Microscopy Imaging". In Optics and the Brain. Washington, D.C.: Optica Publishing Group, 2023. http://dx.doi.org/10.1364/brain.2023.btu1b.2.
Testo completoMalykhina, Galina, Vyacheslav Salnikov, Vladimir Semenyutin e Dmitriy Tarkhov. "Digitalization of medical services for detecting violations of cerebrovascular regulation based on a neural network signal analysis algorithm". In SPBPU IDE '20: SPBPU IDE-2020. New York, NY, USA: ACM, 2020. http://dx.doi.org/10.1145/3444465.3444526.
Testo completo"Molecular mechanisms of cardio- and cerebrovascular comorbidity: from experimental analysis of structural and epigenetic variations in the human genome to post-GWAS analysis of genetic correlations between diseases". In Bioinformatics of Genome Regulation and Structure/Systems Biology (BGRS/SB-2022) :. Institute of Cytology and Genetics, the Siberian Branch of the Russian Academy of Sciences, 2022. http://dx.doi.org/10.18699/sbb-2022-223.
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