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M L Raghavan

Explore the profile of M L Raghavan including associated specialties, affiliations and a list of published articles. Areas
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Articles 15
Citations 627
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Recent Articles
1.
Chung T, Kim J, Gueldner P, Vorp D, Raghavan M
J Biomech Eng . 2024 Feb; 146(4). PMID: 38323620
The stress-strain curve of biological soft tissues helps characterize their mechanical behavior. The yield point on this curve is when a specimen breaches its elastic range due to irreversible microstructural...
2.
Sarathy S, Turek J, Chu J, Badheka A, Nino M, Raghavan M
Ann Biomed Eng . 2021 Oct; 49(12):3636-3646. PMID: 34705123
Oxygenator thrombosis during extracorporeal membrane oxygenation (ECMO), is a complication that necessitates component replacement. ECMO centers monitor clot burden by intermittent measurement of pressure drop across the oxygenator. An increase...
3.
Sarathy S, Nino M, Ghanim A, Rajagopal S, Mubeen S, Raghavan M
Front Chem . 2021 Jul; 9:680099. PMID: 34235135
measurement of the flow rate of physiological fluids such as the blood flow rate in the heart is vital in critically ill patients and for those undergoing surgical procedures. The...
4.
Polzer S, Man V, Vlachovsky R, Kubicek L, Kracik J, Staffa R, et al.
J Mech Behav Biomed Mater . 2020 Nov; 114:104181. PMID: 33153925
Introduction: Biomechanical rupture risk assessment of abdominal aortic aneurysm (AAA) requires information about failure properties of aneurysmal tissue. There are large differences between reported values. Among others, studies vary in...
5.
Raghavan M, Ma B, Fillinger M
Ann Biomed Eng . 2006 Jul; 34(9):1414-9. PMID: 16838128
Arterial aneurysms are in a pre-deformed state in vivo under non-zero pressure. The ability to determine their zero pressure geometry may help in improving accuracy of determination of stress distribution...
6.
Raghavan M, Trivedi S, Nagaraj A, McPherson D, Chandran K
Ann Biomed Eng . 2004 Mar; 32(2):257-63. PMID: 15008373
Calculation of residual stress in arteries, using the analytical approach has been quite valuable in our understanding of its critical role in vascular mechanics. Stresses are calculated at the central...
7.
Fillinger M, Marra S, Raghavan M, Kennedy F
J Vasc Surg . 2003 Mar; 37(4):724-32. PMID: 12663969
Objectives: We previously showed that peak abdominal aortic aneurysm (AAA) wall stress calculated for aneurysms in vivo is higher at rupture than at elective repair. The purpose of this study...
8.
Fillinger M, Raghavan M, Marra S, Cronenwett J, Kennedy F
J Vasc Surg . 2002 Sep; 36(3):589-97. PMID: 12218986
Objective: The purpose of this study was to calculate abdominal aortic aneurysm (AAA) wall stresses in vivo for ruptured, symptomatic, and electively repaired AAAs with three-dimensional computer modeling techniques, computed...
9.
Raghavan M, Vorp D, Federle M, Makaroun M, Webster M
J Vasc Surg . 2001 Feb; 31(4):760-9. PMID: 10753284
Purpose: Abdominal aortic aneurysm (AAA) rupture is believed to occur when the mechanical stress acting on the wall exceeds the strength of the wall tissue. Therefore, knowledge of the stress...
10.
Raghavan M, Vorp D
J Biomech . 2000 Apr; 33(4):475-82. PMID: 10768396
Knowledge of the wall stresses in an abdominal aortic aneurysm (AAA) may be helpful in evaluating the need for surgical intervention to avoid rupture. This must be preceded by the...