From neural circuits to adaptive spatial navigation: A comprehensive review of brain-inspired navigation techniques

От нейронных цепей к адаптивной пространственной навигации: всесторонний обзор методов навигации, вдохновлённых принципами работы мозга
Yixin Liu, Zhihao Zhang, Lingling Wang, Li Fu, Maria S. Selezneva, Konstantin A. Neusypin
2026-03-03

brain-inspired SLAMbrain-inspired navigationfeedback-aligned frameworknavigation cellsvestibular–visual–hippocampal circuit
Brain-inspired navigation technology, which is derived from the neural mechanisms of the animal brain, demonstrates notable adaptability and energy efficiency. It offers solutions to the shortcomings of conventional analytical navigation systems in complex and dynamic environments. This approach effectively combines spatial cognition and path planning by integrating multimodal information perception, modeling navigation cells, and utilizing brain-inspired neural network algorithms. In particular, adaptability plays a central role in enabling systems to cope with environmental variability, sensor uncertainty and unexpected disturbances. However, challenges remain in enhancing information fusion accuracy, system robustness and real-time performance. Future research should emphasize investigating adaptive neural mechanisms in animals to guide the development of biologically plausible and computationally efficient navigation systems that can operate flexibly and reliably in real-world scenarios.
1
A feedback-aligned framework is proposed to bridge biological adaptive mechanisms and engineering navigation systems.
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Adaptability is central for coping with environmental variability, sensor uncertainty, and unexpected disturbances in navigation systems.
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Brain-inspired SLAM, planning, and control are discussed and unified within a system-level perspective on adaptive navigation.
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Brain-inspired navigation offers notable adaptability and energy efficiency compared to conventional analytical navigation in complex, dynamic environments.
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Challenges remain in improving information fusion accuracy, system robustness, and real-time performance of brain-inspired navigation systems.
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Integration of multimodal information perception, modelling of navigation cells, and brain-inspired neural network algorithms effectively combines spatial cognition with path planning.
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The vestibular–visual–hippocampal circuit is highlighted as a core adaptive mechanism for brain-inspired navigation.

Adaptive brain-inspired navigation systems (brain-inspired navigation technology combining neural circuits such as vestibular–visual–hippocampal circuit and navigation-cell models)

Adaptability and related capabilities of these systems, including multimodal information fusion, spatial representation by navigation cells, robustness, real-time performance, and biologically plausible planning/control mechanisms

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2026-03-03
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Authors
Yixin Liu
Zhihao Zhang
Lingling Wang
Li Fu
Maria S. Selezneva
Konstantin A. Neusypin
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