COMPUTATIONAL MODELING AND PARAMETRIC STUDY OF CIRCULATING TUMOR CELL (CTC) MOTION AND ATTACHMENT IN CAPILLARIES WITH PLATELET INTERACTION AND ACTIVATION
Metastasis involves the dissemination of circulating tumor cells (CTCs) from the primary tumor, their survival in the bloodstream, and eventual colonization of distant organs. Adhesive interactions with platelets, leukocytes, and endothelial cells are critical to CTC survival and extravasation. Platelet adhesion enhances CTC viability and promotes ...
By Vladimir Simić, Miljan Milošević, Aleksandar Nikolić, Shao Ning, Xuewu Liu, Fransisca Leonard, Miloš Kojić
CRITICAL STRESS EVALUATION IN RECTANGULAR CORRODED PIPE TEES UNDER INTERNAL PRESSURE
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By Mansour Boudjelid, Aicha Metehri, Belaϊd Mechab, Bachir Bel Abbes Bouiadjra
MODELING OF PLAQUE FORMATION AND DEVELOPMENT IN ARTREAT AND TAXINOMISIS PROJECTS
This review summarizes scientific findings from three European Commission FP7 projects. The first, ARTREAT (2008-2013), focused on a multi-level, patient-specific model of artery and atherogenesis for outcome prediction, treatment decision support, and virtual hands-on training. An original method for plaque formation and development was created an...
By Nenad Filipović, Miloš Radović, Tijana Đukić, Igor Saveljić, Bogdan Milićević, Exarchos Themis, Oberdan Parodi, Dimitris Fotiadis
REXCOM (REXHEP COMMAND OPERATIONS MODULE): A HUMAN-CENTRIC MILITARY AI CHATBOT FRAMEWORK FOR SECURE COMMAND, PERSONNEL AND LOGISTICS OPERATIONS
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By Rexhep Mustafovski, Aleksandar Petrovski, Marko Radovanović
THREE-DIMENSIONAL NUMERICAL INVESTIGATION OF STATIC AERODYNAMIC COEFFICIENTS FOR AN ARTILLERY PROJECTILE USING STEADY-STATE RANS METHODOLOGY
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By Damir Jerković, Abdellah Ferfouri, Nebojša Hristov, Toufik Allouche, Igor Radisavljević, Mladen Josijević
MECHANICS OF LUNG MICROSTRUCTURE AS A BASIS FOR LUNG MECHANICS, AND MULTISCALE-MULTIPHYSICS MODEL OF LUNG MECHANICS, AIRFLOW, BLOOD FLOW, AND DIFFUSION
This paper contains two parts – the first is related to the mechanics of lung microstructure, and the second is a formulation of a multiscale-multiphysics model of the lung. The second part considers the entire lung that relies on the mechanics of the microstructure and recently developed a multiscale composite finite element of the lung tiss...
By Miloš Kojić, Ivo Vlastelica, Boban Stojanović, Vladimir Ranković, Akira Tsuda
STRONG COUPLING IN MODELING SOLID-FLUID INTERACTION IN PAK SOFTWARE - THEORY AND SELECTED APPLICATIONS
Finite element (FE) modeling the motion of deformable bodies within a fluid, as well as the interaction between the bodies, has been a continuous challenge over the years. There are in principle two approaches – loose and strong coupling between the FE models of the two domains, with their advantages and drawbacks. We here present our concept...
By Velibor Isailović, Miljan Milošević, Nikola Kojić, Miloš Kojić
MODELING MASS RELEASE FROM NANOFIBERS – THEORY AND APPLICATION
This study investigates the drug release performance of electrospun composite nanofiber mats, which hold significant promise as drug carriers for site-specific delivery in therapeutic applications such as cancer therapy. Predicting drug release rates from poly(D,L-lactic-co-glycolic acid) (PLGA) nanofibers produced via emulsion electrospinning is c...
By Miljan Milošević, Vladimir Simić, Bodan Milićević, Dušica Stojanović, Mirjana Grković, Miloš Bjelović, Petar Uskoković, Miloš Kojić
HEART MODELING, INSILICO CLINICAL TRIALS
In silico clinical trials are set to transform medicine by enabling virtual testing and simulation, which streamline the development of medical devices and pharmaceuticals while reducing costs and duration. The SILICOFCM platform offers a innovative, multi-modular approach designed to optimize overall heart function and monitor the effectiveness of...
By Nenad Filipović, Igor Saveljić, Tijana Geroski, Smiljana Tomašević, Miljan Milošević, Bogdan Milićević, Momčilo Prodanović, Srboljub Mijailović, Miloš Kojić
INCREMENTAL LOAD STEP REGULATION FOR CONTACT MECHANICS USING THE PENALTY APPROACH
This paper presents a method for improving the numerical analysis of contact problems using a penalty formulation. Since contact phenomena are inherently nonlinear, particularly in the case of large deformations, an incremental solution strategy is required. Conventional Newton-Raphson algorithms often face convergence problems when many nodes make...
By Snežana Vulović, Miroslav Živković, Nenad Grujović, Marko Topalović