BrightMinds
Human Brain Model, Size Plastic Disassembled Brain Anatomy Model with Colored Labels and Stable Base for Neuroscience Psychology Teaching
Human Brain Model, Size Plastic Disassembled Brain Anatomy Model with Colored Labels and Stable Base for Neuroscience Psychology Teaching
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$40.19 USD
Regular price
$40.19 USD
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About This
- [Detachable Design] Features 17 removable parts for clear internal structure visualization, enabling hands-on neuroanatomy study. The disassembled brain model allows detailed examination of each component while maintaining accurate replication of human brain anatomy, making complex neuroscience concepts tangible for effective classroom demonstrations and laboratory research applications.
- [Color-Coded Learning] Functional brain areas are distinctly labeled with precise color differentiation, providing intuitive understanding textbooks. This visual approach simplifies identification of structures like frontal lobe and cerebellum, enhancing memory retention during psychology lessons or student training through immediate visual reference without overwhelming textual explanations.
- [Stable Display Base] Includes a secure black base that firmly holds assembled or disassembled components during presentations. The non-slip foundation ensures professional exhibition in teaching environments while facilitating easy transportation between classrooms or clinics, maintaining structural integrity during repeated handling for long-term educational use.
- [Safe Educational Material] Made from durable non- plastic that withstands frequent cleaning and daily classroom use. Lightweight construction supports portability for student projects while resisting wear, ensuring the model remains pristine through years of neuroscience instruction without compromising anatomical accuracy or safety standards.
- [Versatile Teaching Application] Serves as essential anatomy resource for students, psychology educators, and science classrooms. Supports diverse scenarios including patient consultations, laboratory displays, and children's STEM learning through its representation, bridging theoretical knowledge with practical observation across neuroscience curriculum requirements.
