We report on the development of a model to understand why the range of experience with respect to HIV infection is so diverse, especially with respect to the latency period.\ud To investigate this, an agent-based approach is used to extract highlevel behaviour which cannot be described analytically from the set of interaction rules at the cellular level. A network of independent matrices mimics the chain of lymph nodes. Dealing with massively multi-agent systems requires major computational effort. However, parallelisation methods are a natural consequence and advantage of the multi-agent approach and, using the MPI library, are here implemented, tested and optimized. Our current focus is on the various implementations of the data transfer ...
BACKGROUND: The immune system behaves like a complex, dynamic network with interacting elements incl...
In this work, we adopt a statistical-mechanics approach to investigate basic, systemic features exhi...
International audienceHuman Immunodeficiency Virus (HIV) infection of humans represents a complex bi...
We report on the development of a model to understand why the range of experience with respect to HI...
We report on the development of a model to understand why the range of experience with respect to HI...
This study focuses on trying to understand why the range of experience with respect to HIV infectio...
This study focuses on examining why the range of experience with respect to HIV infection is so dive...
The three phases of the macroscopic evolution of the HIV infection are well-known, but it is still d...
Biological systems are typically complex and adaptive, involving large numbers of entities, or organ...
Background In recent years, the study of immune response behaviour using bottom up approach, Agen...
Background Recent advances in Immunology highlighted the importance of local properties on the overa...
In recent years, the study of the immune response behaviour through mathematical and computational m...
Computational approaches to immunology represent an important area of Systems Biology aimed at suppo...
<p>(A): The <i>in silico</i> experiments are performed in a 3-dimensional ellipsoidal lattice. The l...
This paper proposes a Multi-Agents Model to simulate the phenomenon of the infection by the Human Im...
BACKGROUND: The immune system behaves like a complex, dynamic network with interacting elements incl...
In this work, we adopt a statistical-mechanics approach to investigate basic, systemic features exhi...
International audienceHuman Immunodeficiency Virus (HIV) infection of humans represents a complex bi...
We report on the development of a model to understand why the range of experience with respect to HI...
We report on the development of a model to understand why the range of experience with respect to HI...
This study focuses on trying to understand why the range of experience with respect to HIV infectio...
This study focuses on examining why the range of experience with respect to HIV infection is so dive...
The three phases of the macroscopic evolution of the HIV infection are well-known, but it is still d...
Biological systems are typically complex and adaptive, involving large numbers of entities, or organ...
Background In recent years, the study of immune response behaviour using bottom up approach, Agen...
Background Recent advances in Immunology highlighted the importance of local properties on the overa...
In recent years, the study of the immune response behaviour through mathematical and computational m...
Computational approaches to immunology represent an important area of Systems Biology aimed at suppo...
<p>(A): The <i>in silico</i> experiments are performed in a 3-dimensional ellipsoidal lattice. The l...
This paper proposes a Multi-Agents Model to simulate the phenomenon of the infection by the Human Im...
BACKGROUND: The immune system behaves like a complex, dynamic network with interacting elements incl...
In this work, we adopt a statistical-mechanics approach to investigate basic, systemic features exhi...
International audienceHuman Immunodeficiency Virus (HIV) infection of humans represents a complex bi...