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An in vivo study of isotropic and anisotropic wall stress in a hyperelastic holzapfel-gasser-ogden model in the human abdominal aorta: Effects of age and sex
Linköpings universitet, Institutionen för hälsa, medicin och vård, Avdelningen för diagnostik och specialistmedicin. Linköpings universitet, Medicinska fakulteten. Region Östergötland, Hjärtcentrum, Fysiologiska kliniken US.ORCID-id: 0000-0002-0025-3011
Linköpings universitet, Institutionen för ekonomisk och industriell utveckling, Mekanik och hållfasthetslära. Linköpings universitet, Tekniska fakulteten.ORCID-id: 0000-0002-9891-6783
Linköpings universitet, Institutionen för hälsa, medicin och vård, Avdelningen för diagnostik och specialistmedicin. Linköpings universitet, Medicinska fakulteten. Linköpings universitet, Centrum för medicinsk bildvetenskap och visualisering, CMIV. Region Östergötland, Hjärtcentrum, Fysiologiska kliniken US.ORCID-id: 0000-0003-2198-9690
Linköpings universitet, Institutionen för hälsa, medicin och vård. Linköpings universitet, Medicinska fakulteten. Region Östergötland, Hjärtcentrum, Thorax-kärlkliniken i Östergötland. Linköpings universitet, Centrum för medicinsk bildvetenskap och visualisering, CMIV.ORCID-id: 0000-0002-9095-403X
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2023 (engelsk)Inngår i: Frontiers in Physiology, E-ISSN 1664-042X, Vol. 14, artikkel-id 1128131Artikkel i tidsskrift (Fagfellevurdert) Published
Abstract [en]

Background: Wall stress of the abdominal aorta (AA) appears to be an important factor in the assessment of risk for rupture based on the relationship between blood pressure and aortic diameter. We therefore investigated peak wall stress as well as isotropic and anisotropic wall stress of AA.Methods: Thirty healthy adults (male = 15) were included. Pulsatile diameter changes were determined non-invasively by an echo-tracking system, and intra-aortic pressure was measured simultaneously. A computer based mechanical model was used to compute the isotropic and anisotropic components of circumferential and longitudinal stresses.Results: Elderly males had higher total wall stress and a higher isotropic stress component in the circumferential direction and higher total longitudinal wall stress than elderly females. The isotropic component increased with age in males but not in females, whereas the anisotropic component decreased with age in both sexes.Conclusion: We found that isotropic and anisotropic properties of the abdominal aortic wall differ between young and elderly participants and between the sexes. A possible explanation could relate to chemical alterations (e.g., due to sex hormones) and changes over time in the physical distribution of fibers. Modeling of wall stress components of the human AA may contribute to a better understanding of elastin-collagen interactions during remodeling of the aortic wall.

sted, utgiver, år, opplag, sider
FRONTIERS MEDIA SA , 2023. Vol. 14, artikkel-id 1128131
Emneord [en]
abdominal aorta, remodeling, wall stress, sex, age
HSV kategori
Identifikatorer
URN: urn:nbn:se:liu:diva-192572DOI: 10.3389/fphys.2023.1128131ISI: 000958802000001PubMedID: 36994420Scopus ID: 2-s2.0-85150895161OAI: oai:DiVA.org:liu-192572DiVA, id: diva2:1745199
Merknad

Funding: Region OEstergoetland [ROE-965959]; Medical Faculty Linkoeping University; Swedish Research Council [12,661]; Swedish Heart-Lung Foundation

Tilgjengelig fra: 2023-03-22 Laget: 2023-03-22 Sist oppdatert: 2026-05-29
Inngår i avhandling
1. Abdominal Aortic Wall Mechanics - Stress, Strain and Stiffness in A Medical Perspective: An Experimental Study in Man
Åpne denne publikasjonen i ny fane eller vindu >>Abdominal Aortic Wall Mechanics - Stress, Strain and Stiffness in A Medical Perspective: An Experimental Study in Man
2024 (engelsk)Doktoravhandling, med artikler (Annet vitenskapelig)
Abstract [en]

Background:  

The stiffness of the abdominal aorta is considered a significant factor affecting the morbidity and mortality of cardiovascular disease. Estimating vascular stiffness is an integral part in cardiovascular risk assessment. Wall stress of the abdominal aorta appears to be a crucial factor in the remodeling of the arterial wall and the growth of aneurysms. Consequently, arterial mechanics plays a vital role in the function of the cardiovascular system. Therefore, there is a need for comprehensive studies of mechanical forces in the vessel wall to better understand the mechanisms behind normal and pathological changes that are significant for hypertension, atherosclerosis, and the development of arterial aneurysms. The aim of this study was to explore the blood pressure-induced forces in the aortic wall using a computational mechanical model, with particular attention to the effects of age, sex, and blood pressure on the remodeling process of the vessel wall.  

Methods:  

A computational model, comprising a solid mechanical model and a parameter identification process known as the Parameter Identification Method for Mechanical Parameters (PIMMP), was used to investigate the mechanical properties of the abdominal aortic vessel wall. Data for the model were obtained from the human abdominal aorta of volunteers: 30 healthy individuals, females (n=15) and males, divided into three age groups with an equal number of females and males (n=5 in each age group). Invasive blood pressure, measured via catheter, and diameter variation in the abdominal aorta, measured via ultrasound, were acquired to be used as input data for PIMMP. This dataset was utilized in Papers I, III, and IV. In Paper II, 24 datasets were generated, based on model parameters presented in the scientific literature.   

Results:  

Paper I reveals that elderly males exhibit both higher aortic wall stress and higher isotropic stress component, than females. With age, males show an increase in isotropic load-bearing fraction and a decrease in anisotropic load-bearing fraction, a trend not observed in females.  

Paper II validates an in silico aortic model against a computerized membrane model of an abdominal aorta. The membrane model accurately predicts stress states as well as the load-bearing fraction of anisotropic material across all blood pressure levels, independent of the transmural stress gradient. However, the model’s accuracy is limited due to insufficient in vivo axial loading information.  

Paper III demonstrates that changes in circumferential stretch have a more pronounced effect on longitudinal stress than the other way around. Both circumferential and longitudinal stiffnesses increase with age, irrespective of sex. However, sex-based differences in stiffness are observed when comparing younger and older groups.  

Paper IV investigates pulse wave velocity (PWV) calculations using the Moens-Korteweg equation and the Bramwell-Hill equation. PWV shows a positive association with both isotropic and anisotropic material properties, with a transition zone observed between diastolic and systolic blood pressures, to a positive association with anisotropic properties at systolic blood pressure. Furthermore, an increase in PWV with age, with no significant difference between sexes, is observed.  

The Extra Material suggests a deficiency in age-related wall stress regulation in males, potentially due to insufficient stiffness of anisotropic materials such as collagen. In contrast, females show an age-related increase in abdominal aortic wall thickness and anisotropic material stiffness, indicating adequate wall stress regulation.  

Conclusions:  

This doctoral dissertation focused on the effects of age and sex on the abdominal aortic wall. Overall, the findings suggest potential alterations in the collagen and elastin content during the remodeling of the abdominal aorta, which may differ between sexes. These alterations could be induced chemically or mechanically. The model has shown potential in identifying healthy individuals within a population. These insights may contribute to the understanding of cardiovascular health and disease progression. 

sted, utgiver, år, opplag, sider
Linköping: Linköping University Electronic Press, 2024. s. 138
Serie
Linköping University Medical Dissertations, ISSN 0345-0082 ; 1898
HSV kategori
Identifikatorer
urn:nbn:se:liu:diva-201134 (URN)10.3384/9789180755344 (DOI)9789180755337 (ISBN)9789180755344 (ISBN)
Disputas
2024-03-22, Berzeliussalen, building 463, Campus US, Linköping, 09:00 (svensk)
Opponent
Veileder
Merknad

Funding agencies:

• Residents Physician Grants, Region Östergötland, Sweden

• ALF Grants, Region Östergötland, Sweden

• Swedish Heart Lung Foundation (Grants), Sweden

• Swedish Research Council Grant, Sweden

Tilgjengelig fra: 2024-02-23 Laget: 2024-02-23 Sist oppdatert: 2024-06-20bibliografisk kontrollert

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