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The prefrontal cortex of the bottlenose dolphin (Tursiops truncatus Montagu, 1821): a tractography study and comparison with the human

Journal article

Fast facts

  • Internal authorship

  • Further publishers

    Tommaso Gerussi, Jean-Marie Graïc, Antonella Peruffo, Mehdi Behroozi, Stefan Huggenberger, Onur Güntürkün, Bruno Cozzi

  • Publishment

    • Springer (Berlin) 2023
  • Purpose of publication

  • Organizational unit

  • Subjects

    • Anatomy
  • Research fields

    • Other field of research

Quote

T. Gerussi, J.-M. Graïc, A. Peruffo, M. Behroozi, L. Schlaffke, S. Huggenberger, O. Güntürkün, and B. Cozzi, "The prefrontal cortex of the bottlenose dolphin (Tursiops truncatus Montagu, 1821): a tractography study and comparison with the human," Brain Structure and Function, vol. 228, no. 8, pp. 1963-1976, 2023.

Content

Cetaceans are well known for their remarkable cognitive abilities including self-recognition, sound imitation and decision making. In other mammals, the prefrontal cortex (PFC) takes a key role in such cognitive feats. In cetaceans, however, a PFC could up to now not be discerned based on its usual topography. Classical in vivo methods like tract tracing are legally not possible to perform in Cetacea, leaving diffusion-weighted imaging (DWI) as the most viable alternative. This is the first investigation focused on the identification of the cetacean PFC homologue. In our study, we applied the constrained spherical deconvolution (CSD) algorithm on 3 T DWI scans of three formalin-fixed brains of bottlenose dolphins (Tursiops truncatus) and compared the obtained results to human brains, using the same methodology. We first identified fibers related to the medio-dorsal thalamic nuclei (MD) and then seeded the obtained putative PFC in the dolphin as well as the known PFC in humans. Our results outlined the dolphin PFC in areas not previously studied, in the cranio-lateral, ectolateral and opercular gyri, and furthermore demonstrated a similar connectivity pattern between the human and dolphin PFC. The antero-lateral rotation of the PFC, like in other areas, might be the result of the telescoping process which occurred in these animals during evolution.

References

DOI 10.1007/s00429-023-02699-8

Notes and references

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