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