Hippocampus

The hippocampus is a curved, seahorse-shaped structure located bilaterally in the medial temporal lobe. Named from the Greek for "seahorse" (hippokampos), it is one of the most studied brain regions in cognitive neuroscience. Its defining functions are the consolidation of new declarative memories — converting short-term traces into stable long-term storage — and spatial navigation.

The hippocampus's role in memory became vividly clear through the case of Henry Molaison (Patient H.M.), who underwent bilateral hippocampal resection in 1953 to control epilepsy. The surgery left him with profound anterograde amnesia: he could not form any new explicit memories, yet retained procedural skills and memories formed before the surgery. This dissociation demonstrated that the hippocampus is necessary for forming new declarative memories but not for storing them indefinitely, and not for procedural or skill-based learning.

Beyond episodic memory, the hippocampus contains specialised place cells — neurons that fire when an organism occupies a specific location — forming a cognitive map of the environment. Eleanor Maguire's neuroimaging research with London taxi drivers found that posterior hippocampal volume was larger in more experienced drivers, demonstrating structural plasticity in the adult human hippocampus. The hippocampus also interacts closely with the amygdala during emotionally significant events, which is why emotional memories tend to be especially vivid and durable.

Frequently Asked Questions

What is the hippocampus responsible for?

The hippocampus is primarily responsible for consolidating new declarative memories — converting recently formed memories into stable long-term storage — and for spatial navigation. It plays a key role in both episodic memory (memories of specific events) and semantic memory (general knowledge). It works closely with the prefrontal cortex during encoding and retrieval, and with the amygdala during emotionally significant experiences.

What happens if the hippocampus is damaged?

Damage to the hippocampus typically produces anterograde amnesia — the inability to form new long-term explicit memories — while leaving older memories and procedural skills largely intact. This pattern was most clearly demonstrated in Patient H.M., whose bilateral hippocampal removal in 1953 left him unable to remember any new events day to day for the rest of his life, despite normal intelligence and intact short-term memory.

Can the hippocampus grow in adults?

Yes. Research by Eleanor Maguire and colleagues at University College London found that the posterior hippocampus of London taxi drivers was significantly larger than in non-drivers, and that this enlargement correlated with years of navigational experience — demonstrating activity-dependent structural plasticity in the adult human brain. The hippocampus is one of the few brain regions known to support neurogenesis (the birth of new neurons) in adults, though the extent of human adult neurogenesis remains debated.

How does stress affect the hippocampus?

The hippocampus is highly sensitive to glucocorticoids (stress hormones such as cortisol), which it expresses in large quantities via glucocorticoid receptors. Chronic stress and prolonged elevated cortisol are associated with hippocampal atrophy in both animal models and humans. Reduced hippocampal volume has been consistently observed in post-traumatic stress disorder (PTSD) and major depression, though it remains debated whether this is a consequence of stress or a pre-existing vulnerability.

Practice Questions

13 questions from across Cognitive Connie that test your understanding of hippocampus. Drawn from the complete question bank using the concept relationship — not only from one quiz.

Start practice quiz

Studies & Cases

Related Quizzes

Subjects & Related Concepts

Sources

Last reviewed: 6 August 2026

  1. 1.

    Scoville, W. B., & Milner, B. (1957). Loss of recent memory after bilateral hippocampal lesions. Journal of Neurology, Neurosurgery, and Psychiatry, 20(1), 11–21.

    Primary study

    The foundational case study of Patient H.M., establishing the hippocampus's role in declarative memory consolidation.

  2. 2.

    Maguire, E. A., Gadian, D. G., Johnsrude, I. S., Good, C. D., Ashburner, J., Frackowiak, R. S. J., & Frith, C. D. (2000). Navigation-related structural change in the hippocampi of taxi drivers. Proceedings of the National Academy of Sciences, 97(8), 4398–4403.

    Primary study

    Demonstrates activity-dependent structural plasticity in the adult hippocampus.

  3. 3.

    Squire, L. R. (1992). Memory and the hippocampus: A synthesis from findings with rats, monkeys, and humans. Psychological Review, 99(2), 195–231.

    Review article

    Influential review integrating animal and human evidence for hippocampal memory functions.

  4. 4.

    O'Keefe, J., & Nadel, L. (1978). The Hippocampus as a Cognitive Map. Oxford University Press.

    Textbook

    Foundational text proposing the cognitive map theory and describing place cells.