Explores biomedical microrobots for precision medicine and tissue mechanics, including innovative navigation techniques and the control of tissue morphogenesis.
Covers general principles and animal systems in cell and developmental biology, including fertilization, zygote formation, and recurrent special features.
Covers proteomic applications in neuroscience, focusing on targeted analysis of cortical neurons and their developmental interactions with striatal neurons.
Covers the importance of human embryology for careers in biology, medicine, and health sciences, focusing on the development of key organs and anatomical structures.
Explores embryonic tissue mechanics, challenges in modeling biological tissues, and solid-fluid transitions in equilibrium, focusing on the dynamics of nuclei and subcellular elements.