Publication:

Microsurgical anatomy and the inner architecture of the retrocommissural portion of the hippocampal formation demonstrated through fiber microdissection

Date

Date

Date
2025
Journal Article
Published version

Citations

Citation copied

Goga, C., Serra, C., & Türe, U. (2025). Microsurgical anatomy and the inner architecture of the retrocommissural portion of the hippocampal formation demonstrated through fiber microdissection. Journal of Neurosurgery, 142(4), 1085–1098. https://doi.org/10.3171/2024.6.JNS232987

Abstract

Abstract

Abstract

OBJECTIVE An understanding of the complex nomenclature and 3D spatial relations between the cortical and white matter components of the retrocommissural portion of the hippocampal formation is essential for a successful outcome when performing surgery in the mediobasal temporal region. The goal of this study was to clarify the nomenclature related to the retrocommissural portion of the hippocampal formation and to provide a detailed description of its topography and inner structure from a relevant surgical perspective. This descriptio

Additional indexing

Creators (Authors)

  • Goga, Cristina
  • Serra, Carlo
  • Türe, Uğur

Journal/Series Title

Journal/Series Title

Journal/Series Title

Volume

Volume

Volume
142

Number

Number

Number
4

Page range/Item number

Page range/Item number

Page range/Item number
1085

Page end

Page end

Page end
1098

Item Type

Item Type

Item Type
Journal Article

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Dewey Decimal Classifikation

Language

Language

Language
English

Publication date

Publication date

Publication date
2025-04-01

Date available

Date available

Date available
2025-02-03

ISSN or e-ISSN

ISSN or e-ISSN

ISSN or e-ISSN
0022-3085

OA Status

OA Status

OA Status
Closed

PubMed ID

PubMed ID

PubMed ID

Citations

Citation copied

Goga, C., Serra, C., & Türe, U. (2025). Microsurgical anatomy and the inner architecture of the retrocommissural portion of the hippocampal formation demonstrated through fiber microdissection. Journal of Neurosurgery, 142(4), 1085–1098. https://doi.org/10.3171/2024.6.JNS232987

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