DESCRIPTION
Call for papers/Topics
Full Articles/ Reviews/ Shorts Papers/ Abstracts are welcomed in the following research fields:
1. Regenerative Medicine & Tissue Engineering This field combines living cells, biological signals, and engineered structural supports to repair or replace damaged tissues and organs.
Biomaterials & Scaffolds
Biocompatible polymers and natural matrices
3D bioprinting and bio-inks
Decellularization and extracellular matrix dynamics
Stem Cell Biology & Therapeutics
Pluripotent stem cells and induced pluripotency
Cellular differentiation pathways
Organoids and micro-tissue modeling
Tissue Reconstruction
Vascularization in lab-grown tissues
Musculoskeletal and cardiovascular tissue repair
Immune integration and graft rejection mitigation
2. Biomedical Imaging & Diagnostics Engineering optics, acoustics, and electromagnetic fields intersect with cellular and anatomical science to visualize health and disease.
Advanced Imaging Modalities
Magnetic resonance imaging and spectroscopy
X-ray computed tomography and micro-CT
Ultrasound mechanics and photoacoustic imaging
Optical & Molecular Imaging
Fluorescence microscopy and super-resolution imaging
Targeted contrast agents and radiopharmaceuticals
Optical coherence tomography
Diagnostic Signal & Image Processing
Automated lesion detection and segmentation algorithms
Image reconstruction mathematics
Functional brain mapping and neuroimaging analysis
3. Neuroengineering & Molecular Neuroscience Focuses on understanding nervous system dynamics and building technological interfaces to restore or enhance neural function.
Neural Interfacing & Prosthetics
Brain-computer interfaces and invasive microelectrode arrays
Deep brain stimulation devices
Sensory feedback restoration and bionic limbs
Neurobiology & Synaptic Transmission
Neurotransmitter pathways and neurochemistry
Neuroplasticity and cognitive network modeling
Mechanisms of neurodegenerative diseases
Bioelectric Signal Processing
Electroencephalography and electromyography analysis
Neural decoding and pattern recognition
Action potential propagation dynamics
4. Biomechanics, Kinesiology & Prosthetics Applies classical and computational mechanics to human movement, structural biological materials, and artificial support systems.
Tissue & Fluid Mechanics
Cardiovascular hemodynamics and wall shear stress
Viscoelasticity of soft biological tissues
Orthopedic joint loads and bone remodeling dynamics
Prosthetics & Rehabilitation Robotics
Exoskeletons and wearable robotic suits
Myoelectric limb control systems
Gait analysis and biomechanical optimization
Cellular Mechanobiology
Mechanotransduction pathways
Cellular responses to physical shear stress and tension
Extracellular matrix stiffness in disease progression
5. Nanomedicine, Molecular Engineering & Pharmacology Operates at the micro- and nanoscale to manipulate biological processes, synthesize targeted drugs, and build miniaturized sensors.
Targeted Drug Delivery Systems
Liposomes, polymeric nanoparticles, and exosomes
Stimuli-responsive release mechanisms
Blood-brain barrier crossing strategies
Microfluidics & Biosensors
Lab-on-a-chip technologies
Point-of-care diagnostic devices
Enzymatic and electrochemical bio-sensing
Molecular Cell Biology & Pharmacology
Receptor-ligand binding dynamics
Signal transduction cascades
Pharmacokinetics and pharmacodynamics modeling
6. Genomics, Synthetic Biology & Systems Biology Combines high-throughput genomic science with engineering principles to analyze, rewrite, and redesign biological systems.
Gene Editing & Genetic Engineering
CRISPR-Cas systems and base editing
Viral and non-viral gene therapy vectors
Synthetic genetic circuits
Computational Biology & Bioinformatics
Genome sequencing analysis and assembly algorithms
Proteomics and structural biology modeling
Metabolic network flux analysis
Systems Physiology
Integrated organ system modeling
Homeostatic feedback mechanisms
Host-microbiome interactions and biological crosstalk