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pro vyhledávání: '"Maria Lyck Hansen"'
4.1 PROBING ARTERIAL STIFFNESS AT THE NANO-SCALE USING THE INTERNAL MAMMARY ARTERY AS A NOVEL TARGET
Publikováno v:
Artery Research, Vol 24 (2018)
Introduction: Arterial stiffening is associated with structural and biomechanical alterations in the aorta. However, there are still gaps in our understanding as to how the structure and properties of arteries across the vasculature are altered with
Externí odkaz:
https://doaj.org/article/6988852edd5c46ba91b18118a22a7d0f
Publikováno v:
Artery Research, Vol 20 (2017)
Background: Arterial stiffening, occurring as part of the natural aging process of the artery, is well- established as a powerful predictor of cardiovascular disease. However, little is known about how localised changes in the extracellular matrix an
Externí odkaz:
https://doaj.org/article/2571b91ff6b04496982c6e2111f28ff3
Publikováno v:
Artery Research, Vol 16 (2016)
Background: Arterial stiffening occurs as part of the natural ageing process. Degradation of the extracellular matrix (ECM) in the medial layer is typically implicated in arterial stiffening. However, little is known about how localised changes in ar
Externí odkaz:
https://doaj.org/article/c10755d87abb4589800c420abfc92359
Publikováno v:
Artery Research, Vol 12 (2015)
Aim: Arterial stiffening occurs as part of the natural ageing process, and is thought to be related to the accumulation of collagen and degradation of elastin. However, little is known about how regional variations in arterial structure and mechanica
Externí odkaz:
https://doaj.org/article/08bc08661446479f98bc3bc1a90a2304
Autor:
Maria Bloksgaard, Jo G. R. De Mey, Luis A. Bagatolli, Maria Lyck Hansen, Maise H Fredgart, Lars Melholt Rasmussen, Kristoffer Rosenstand, Jonathan R. Brewer, Akhmadjon Irmukhamedov, Thomas Leurgans
Publikováno v:
British Journal of Pharmacology. 173:1653-1664
Background and purpose We tested the hypothesis that in resistance arteries from cardiovascular disease (CVD) patients, effects of an endothelium-dependent vasodilator depend on the contractile stimulus. Experimental approach Arteries dissected from
Autor:
Helle C. Thiesson, Karl Egon Larsen, Lars Melholt Rasmussen, Boye L. Jensen, Bente Jespersen, Vibe Skov, Maria Lyck Hansen, Jane Stubbe
Publikováno v:
Stubbe, J, Skov, V, Thiesson, H C, Larsen, K E, Hansen, M L, Jensen, B L, Jespersen, B & Rasmussen, L M 2018, ' Identification of differential gene expression patterns in human arteries from patients with chronic kidney disease ', American Journal of Physiology: Renal Physiology, vol. 314, no. 6, pp. F1117-F1128 . https://doi.org/10.1152/ajprenal.00418.2017
Stubbe, J, Skov, V, Thiesson, H, Larsen, K E, Hansen, M L, Jensen, B L, Jespersen, B & Rasmussen, L M 2017, ' Identification of differential gene expression patterns in human arteries from patients with chronic kidney disease ', 21st annual meeting of the European Council for Cardiovascular Research (ECCR 2017), Italien, 20/10/2017-22/10/2017 .
Stubbe, J, Skov, V, Thiesson, H, Larsen, K E, Hansen, M L, Jensen, B L, Jespersen, B & Rasmussen, L M 2017, ' Identification of differential gene expression patterns in human arteries from patients with chronic kidney disease ', 21st annual meeting of the European Council for Cardiovascular Research (ECCR 2017), Italien, 20/10/2017-22/10/2017 .
Uremia accelerates atherosclerosis, but little is known about affected pathways in human vasculature. This study aimed to identify differentially expressed arterial transcripts in patients with chronic kidney disease (CKD). Global mRNA expression was
Autor:
Lars Melholt Rasmussen, Zhuo Chang, Hans Christian Beck, Maria Lyck Hansen, Po-Yu Chen, Riaz Akhtar, Paolo Paoletti
Publikováno v:
Chang, Z, Paoletti, P, Hansen, M L, Beck, H C, Chen, P Y, Rasmussen, L M, Akhtar, R & Stylianou, A 2018, ' AFM Characterization of the Internal Mammary Artery as a Novel Target for Arterial Stiffening ', Scanning, vol. 2018, 6340425 . https://doi.org/10.1155/2018/6340425
Scanning, Vol 2018 (2018)
Scanning
SCANNING
Scanning, Vol 2018 (2018)
Scanning
SCANNING
Using the atomic force microscopy- (AFM-) PeakForce quantitative nanomechanical mapping (QNM) technique, we have previously shown that the adventitia of the human internal mammary artery (IMA), tested under dehydrated conditions, is altered in patien
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8fc63637ec3d73cbc8903857f60078cb
https://findresearcher.sdu.dk:8443/ws/files/144401051/AFM_Characterization_of_the_Internal_Mammary_Artery_as_a_Novel_Target_for_Arterial_Stiffening.pdf
https://findresearcher.sdu.dk:8443/ws/files/144401051/AFM_Characterization_of_the_Internal_Mammary_Artery_as_a_Novel_Target_for_Arterial_Stiffening.pdf
Publikováno v:
Hansen, M L & Rasmussen, L M 2015, ' Associations between plasma fibulin-1, pulse wave velocity and diabetes in patients with coronary heart disease ', Journal of Diabetes and its Complications, vol. 29, no. 3, pp. 362-366 . https://doi.org/10.1016/j.jdiacomp.2015.01.003
BACKGROUND: Diabetes is related to increased risk of cardiovascular disease, and arterial stiffness and its consequences may be the factor connecting the two. Arterial stiffness is often measured by carotid-femoral pulse wave velocity (cf-PWV), but n
Autor:
Maria Bloksgaard, Mey, Jo G. R., Susanne Hansen, Maria Lyck Hansen, Akhmadjon Irmukhamedov, Pia Søndergaard Jensen, Thomas Leurgans, Niels Marcussen, Isabel Nguyen, Inger Nissen, Katrine Dueholm Nissen, Simone Rørdam Preil, Lars Melholt Rasmussen, Lars Riber, Kristoffer Rosenstand
Publikováno v:
Bloksgaard, M, De Mey, J G R, Hansen, S, Hansen, M L, Irmukhamedov, A, Jensen, P S, Leurgans, T, Marcussen, N, Nguyen, I, Nissen, I, Nissen, K D, Rørdam Preil, S, Rasmussen, L M, Riber, L P & Rosenstand, K 2017, ' Determinants of the Maximal contractile Reactivity of Pericardial Resistance Arteries from Cardio-Thoracic Surgery Patients ', 9th Annual Meeting Danish Society for Pharmacology, Odense, Denmark, 18/01/2017-18/01/2017 .
University of Southern Denmark
University of Southern Denmark
authors in alphabetical order
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=dedup_wf_001::2bf63e22516dc4552d88d83bb20fb320
https://portal.findresearcher.sdu.dk/da/publications/037d490e-9b6b-46c4-8c5f-c01817919aed
https://portal.findresearcher.sdu.dk/da/publications/037d490e-9b6b-46c4-8c5f-c01817919aed
Autor:
Maria Lyck Hansen, Anne Yaël Nossent, Mikael Schneider, Lars Melholt Rasmussen, Pia Jeppesen, Pernille B. Lærkegaard Hansen, Tilde Eskildsen, Maria B. Sandberg, Charlotte Harken Jensen, Ditte Caroline Andersen, Søren P. Sheikh, Niels Marcussen, Peter Bie
Publikováno v:
International Journal of Molecular Sciences, Vol 14, Iss 6, Pp 11190-11207 (2013)
International Journal of Molecular Sciences
International Journal of Molecular Sciences, 14(6), 11190-11207
Eskildsen, T V, Jeppesen, P L, Schneider, M, Nossent, A Y, Sandberg, M B, Hansen, P B L, Jensen, C H, Hansen, M L, Marcussen, N, Rasmussen, L M, Bie, P, Andersen, D C & Sheikh, S P 2013, ' Angiotensin II Regulates microRNA-132/-212 in Hypertensive Rats and Humans ', International Journal of Molecular Sciences, vol. 14, no. 6, pp. 11190-11207 . https://doi.org/10.3390/ijms140611190
International Journal of Molecular Sciences; Volume 14; Issue 6; Pages: 11190-11207
International Journal of Molecular Sciences
International Journal of Molecular Sciences, 14(6), 11190-11207
Eskildsen, T V, Jeppesen, P L, Schneider, M, Nossent, A Y, Sandberg, M B, Hansen, P B L, Jensen, C H, Hansen, M L, Marcussen, N, Rasmussen, L M, Bie, P, Andersen, D C & Sheikh, S P 2013, ' Angiotensin II Regulates microRNA-132/-212 in Hypertensive Rats and Humans ', International Journal of Molecular Sciences, vol. 14, no. 6, pp. 11190-11207 . https://doi.org/10.3390/ijms140611190
International Journal of Molecular Sciences; Volume 14; Issue 6; Pages: 11190-11207
MicroRNAs (miRNAs), a group of small non-coding RNAs that fine tune translation of multiple target mRNAs, are emerging as key regulators in cardiovascular development and disease. MiRNAs are involved in cardiac hypertrophy, heart failure and remodeli