Simultaneous sampling of both cingulate gyri using a single interhemispheric depth electrode: A technical note

Author:

Farhat Sahar1,Melhem Jawad1,Darwish Houssein2,Bsat Shadi2,Kawtharani Sarah2,Fadlallah Hiba2,Najjar Marwan2,Beydoun Ahmad1

Affiliation:

1. Department of Neurology, American University of Beirut Medical Center, Beirut, Lebanon.

2. Department of Neurosurgery, American University of Beirut Medical Center, Beirut, Lebanon.

Abstract

Background: Simultaneous sampling of the cingulate gyri through a single depth electrode inserted underneath the falx cerebri is clinically useful in certain cases of drug-resistant epilepsy. However, the frequency at which each region of the cingulate gyri – namely, anterior, middle, and posterior – can be simultaneously sampled with a single electrode remains uncertain. Methods: We assessed the anatomical relationship between the falx cerebri and the cingulate gyrus in 50 adults and children. Subsequently, we determined whether an arbitrary line, denoted as A (representing a 5 mm gap between the falx cerebri and corpus callosum necessary for depth electrode insertion), fell within the anterior, middle, or posterior cingulate gyrus. Results: The shape of the falx cerebri and its intersection point with the corpus callosum varied substantially across individuals, with a significant difference between children and adults (P = 0.02). The A line was located in the middle cingulate gyrus in 18 children (72%), while 3 (12%) and 4 (16%) had it located in the posterior and anterior cingulate gyrus, respectively. Among adults, 15 individuals (60%) had the A line in the middle cingulate gyrus, 10 (40%) in the posterior cingulate gyrus, and none in the anterior cingulate gyrus. Conclusion: This study demonstrates the feasibility of simultaneous sampling of both the anterior and middle cingulate gyri in adults and children. Moreover, it represents the first investigation to document the wide interindividual variability in the morphology of the falx cerebri and its association with the cingulate gyrus.

Publisher

Scientific Scholar

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