1.Anatomy of the sural nerve in a sample of South African human adult cadavers
Jayshree HARANGEE ; Gerda VENTER
Anatomy & Cell Biology 2026;59(1):11-20
The sural nerve (SN) is a sensory nerve in the lower limb with notable variability in its origin, course, and branching patterns. This variability has important implications for diagnostic procedures, nerve grafting, and surgical planning, yet it remains underexplored in Southern African populations. This cadaveric study examined 90 lower limbs from 45 embalmed adult human cadavers (24 males, 21 females) at the University of Pretoria in South Africa. Each specimen was assessed for SN formation type, anatomical location, and morphometric data, including its contributing branches (medial sural cutaneous nerve [MSCN] and lateral sural cutaneous nerve [LSCN]). Measurements were recorded, and bilateral symmetry and sex-based differences were analyzed. Four SN formation types were identified, with Type 1 (union of MSCN and LSCN) being most common (62.2%). Formation most frequently occurred in the middle third of the leg (38.9%), although distribution across the middle, lower, and ankle levels was more evenly spread than in other populations. Bilateral symmetry in SN formation was seen in only 40% of cadavers. The average SN length was 100.1 mm and the mean distance from the lateral malleolus was 27.2 mm. This study confirms high anatomical variability of the SN among South African cadavers, and understanding such variation is crucial for clinicians performing nerve grafting or procedures in the distal leg. These findings may enhance surgical planning and education by emphasizing region-specific anatomical variation.
2.An anatomical investigation of the suboccipitaland inferior suboccipital triangles
Kirsten Shannon REGAN ; Gerda VENTER
Anatomy & Cell Biology 2023;56(3):350-359
The suboccipital triangle (ST) is a clinically relevant landmark in the posterior aspect of the neck and is used to locate and mobilize the horizontal segment of the third part of the vertebral artery before it enters the cranium.Unfortunately, this space is not always a viable option for vertebral artery exposition, and consequently a novel triangle, the inferior suboccipital triangle (IST) has been defined. This alternative triangle will allow surgeons to locate the artery more proximally, where its course is more predictable. The purpose of this study was to better define the anatomy of both triangles by measuring their borders and calculating their areas. Ethical clearance was obtained from the University of Pretoria (reference number: 222/2021) and both triangles were subsequently dissected out on both the left and right sides of 33 formalin-fixed human adult cadavers. The borders of each triangle were measured using a digital calliper and the areas were calculated using Herons Formula. The average area of the ST is 969.82±153.15 mm 2 , while the average area of the IST is 307.48±41.31 mm 2 . No statistically significant differences in the findings were observed between the sides of the body, ancestry, or sex of the cadavers. Measurement and analysis of these triangles provided important anatomical information and speak to their clinical relevance as surgical landmarks with which to locate the vertebral artery. Of particular importance here is the IST, which allows for mobilisation of this artery more proximally, should the ST be occluded.

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