Aims & Scope

Scope of the Journal / Article Classification and Subject Areas
The journal welcomes manuscripts across a broad range of anatomical, developmental, neuroscientific, translational, computational, and educational disciplines, including:

1. Clinical, Surface, and Surgical Anatomy

  • Clinical anatomy
  • Surface anatomy
  • Surgical anatomy
  • Applied and translational anatomy

2. Radiological and Sectional Anatomy

  • Radiological anatomy
  • Sectional and cross-sectional anatomy
  • Imaging-based anatomy
  • Three-dimensional anatomical imaging
3. Neuroanatomy, Brain Mapping, and Neuroimaging
  • Neuroanatomy
  • Brain mapping
  • Structural and functional neuroimaging
  • Clinical neuroanatomy
  • Brain connectivity and Neural circuits
  • Cellular neuroscience
  • Molecular neuroscience
  • Clinical neuroscience
  • Developmental neuroscience
  • Neurobiology
  • Neural plasticity
  • Mechanisms of neurological disorders
4. Biomechanics, Kinesiology, and Functional Anatomy
  • Biomechanics
  • Kinesiology
  • Functional anatomy
  • Musculoskeletal anatomy and movement sciences
5. Pediatric Anatomy and Growth
  • Pediatric anatomy
  • Growth and development
  • Age-related anatomical changes
6. Morphometry and Anthropological Sciences
  • Morphometry
  • Quantitative anatomy
  • Anthropometry
  • Anatomical anthropology
  • Population-based anatomical variation
  • Three-dimensional morphometric analysis
7. Histology, Histopathology and Imaging
  • Histological techniques and tissue processing
  • Histochemistry and immunohistochemistry
  • Tissue staining, labeling and visualization
  • Microscopic and cellular imaging
  • Surgical pathology and diagnostic histopathology
  • Tumor pathology and neoplastic diseases
  • Diagnostic, prognostic and predictive biomarkers
  • Ultrastructural and electron microscopy
8. Advanced Cell Culture Technologies
  • Advanced cell culture systems
  • Three-dimensional cell culture
  • Organoid and ex vivo models
  • Microfluidics and On-a-Chip Platforms
  • Cellular models of tissue development and disease
9. Tissue Engineering and Regenerative Medicine
  • Tissue engineering
  • Regenerative medicine
  • Biomaterials and scaffolds
  • Tissue regeneration and repair
  • Cell-based regenerative approaches
10. Embryology, Gametogenesis, and Organogenesis
  • Basic and medical embryology
  • Gametogenesis
  • Fertilization
  • Embryonic development
  • Gastrulation
  • Organogenesis
  • Prenatal and postnatal development
  • Developmental Defects and Treatment
11. Assisted Reproductive Technologies
  • Assisted reproductive technologies
  • In vitro fertilization
  • Embryo development and implantation
  • Reproductive biology
  • Fertility-related developmental research
12. Stem Cells, Cell Therapy, and Gene Therapy
  • Stem cell biology
  • Embryonic stem cells
  • Adult (Tissue Specific) stem cells
  • Induced pluripotent stem cells
  • Cell therapy
  • Gene therapy
  • Gene editing and genome engineering
13. Systems Biology, Genomics, and Proteomics
  • Systems biology
  • Genomics
  • Transcriptomics
  • Proteomics
  • Metabolomics
  • Multi-omics approaches
  • Molecular and systems-level analysis
14. Bioinformatics and Computational Biology
  • Bioinformatics
  • Computational biology
  • Computational anatomy
  • Biological data science
  • Molecular network analysis
  • Computational modeling and simulation
15. Artificial Intelligence, Digital Apps, and Interactive Platforms
  • Artificial intelligence and neural networks
  • Machine learning and deep learning
  • Digital anatomical sciences and virtual dissection
  • Virtual microscopy
  • Digital embryology and simulation rendering
  • Medical image analysis
  • Automated anatomical segmentation and classification
  • Three-dimensional image processing and reconstruction
16. Education and Assessment in Anatomical Sciences
  • Anatomical Sciences education
  • Innovative teaching methodologies
  • Problem-based and case-based learning
  • Gamification and game-based learning
  • Virtual and augmented reality
  • E-learning, blended learning and online anatomy education
  • Simulation-based education and procedural simulation
  • Curriculum development of Anatomical Sciences
  • Assessment and evaluation in Anatomical Sciences
  • Student engagement, motivation and learning experience
  • Cognitive, biological, and neurobiological mechanisms in learning
17. History, Heritage, Ethics and Legal Perspectives in Anatomical Sciences
  • History, milestones, and evolution of in anatomical sciences
  • Legal and bioethical aspects of body (genomic/gamete/embryo/cell/ surrogacy/tissue organ) donation and transplantation
  • Forensic and medico-legal aspects of human remains, cadaver, and autopsy
  • Biobanking and governance of biological resources
  • Legislation and regulatory responses to emerging biomedical technologies (BCI, implants, remote biosensors, and artificial organs)

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