Lorand Gabriel Parajdi, Ph.D. Lecturer

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About me…


Hello, world!  I am Lorand Gabriel Parajdi, Ph.D. Lecturer at Faculty of Mathematics and Computer Science, “Babeș-Bolyai” University, Cluj-Napoca, Romania.


Domains of Interest

  • Ordinary Differential Equations,
  • Mathematical Modelling in Medicine and Biology,
  • Chemical Reaction Network Theory,
  • Partial Differential Equations,
  • Nonlinear Dynamics.

E-mail:    lorand.parajdi@ubbcluj.ro

You can trace my mathematics genealogy back to Joseph-Louis Lagrange

Latest Research

A Method of Lower and Upper Solutions for Control Problems and Application to a Model of Bone Marrow Transplantation Two Numerical Methods for Solving a Nonlinear System of Integral Equations of Mixed Volterra-Fredholm Type Arising from a Control Problem Related to Leukemia Analysis of Some Mathematical Models of Cell Dynamics in Hematology On the Controllability of a System Modeling Cell Dynamics Related to Leukemia
 Analysis of the Effectiveness of the Treatment of Solid Tumors in Two Cases of Drug Administration
 COVID-19 Data Fitting with Linear and Nonlinear Regression
 A Mathematical Model of the Transition from Normal Hematopoiesis to the Chronic and Accelerated-Acute Stages in Myeloid Leukemia
 Theoretical Basis of Optimal Therapy for Individual Patients in Chronic Myeloid Leukemia: A Mathematical Approach
 Stability of the Equilibria of a Dynamic System Modeling Stem Cell Transplantation 

Expand to See More

 Assessment of Measurable Residual Disease in Chronic Myeloid Leukemia. BCR-ABL1 IS in the Avant-Garde of Molecular Hematology
 Theoretical Models of Hematopoietic Cell Dynamics Related to Bone Marrow Transplantation
 Analysis of a Planar Differential System Arising from Hematology
 Modeling the Treatment of Tumor Cells in a Solid Tumor
 

Research in Progress

A Mathematical Model of Clonal Hematopoiesis Explaining Phase Transitions in Chronic Myeloid Leukemia (Research Paper)
 On the Existence and Absence of Hopf Bifurcation in Some Chemical Reaction Networks Derived from Distributive Phosphorylation and Dephosphorylation Network (Research Paper)
 DSR Cycles and Multistationarity in Biochemical Reaction Networks (Research Project)

Research Gate, Google Scholar, Academia.edu, arXiv.org and Github

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