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May 17, 2026Veterinary Sciences0 citationsOpen Access

Determination of Safe Corridors for External Fixation Pin Insertion in the Distal Long Bones: An Ex Vivo Anatomical Study in Neonatal Simmental Calves

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KİKamil Serdar İnalCNCan Nacar

Key Points

  • This study aims to identify safe and hazardous corridors for pin insertion in the distal long bones of neonatal Simmental calves.
  • Ex vivo study using six fresh Simmental calf cadavers without orthopedic problems.
  • Dissection of radius-ulna, tibia, metacarpal and metatarsal bones from five anatomical levels.
  • Assessment of safe, hazardous, and unsafe corridors for transcortical pin placement.
  • No safe corridor found in the proximal metaphysis and proximal diaphysis of the radius-ulna.
  • Safe corridors identified on the medial side of the radius-ulna and throughout the tibia, as well as lateral and medial corridors in the metacarpal and metatarsal bones.
  • Hazardous corridors can be used with caution, while unsafe corridors must be avoided to prevent iatrogenic injury.

Abstract

External skeletal fixation (ESF) is a versatile method for fracture management in neonatal calves but confers a significant risk of iatrogenic injury to vital structures. The aim of this ex vivo study was to systematically define safe, hazardous, and unsafe corridors for transcortical pin placement in the distal long bones (radius-ulna, tibia, metacarpus, and metatarsus) of Simmental calves to provide precise anatomical guidance. Six fresh Simmental calf cadavers without orthopaedic problems were included in the study. The forearm and hindlimb were disarticulated from the shoulder and hip joints, respectively. The radius-ulna, tibia, and metacarpal and metatarsal bones were dissected transversely from five anatomical levels. Safe, hazardous, and unsafe corridors were determined in each section. No safe corridor was found in the proximal metaphysis and proximal diaphysis of the radius-ulna. Safe corridors were found on the medial side of the radius-ulna, from the mid-diaphysis to the distal metaphysis. The metacarpal and metatarsal bones showed lateral and medial safe corridors. The tibia provided a continuous medial safe corridor. In conclusion, precise topographic mapping is vital for safe ESF. While anatomically safe corridors are the primary choice for ESF, hazardous corridors are viable alternatives if meticulously utilized. By contrast, unsafe corridors must be strictly avoided to prevent severe iatrogenic trauma.

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Cite This Study

İnal et al. (2026) studied this question.

synapsesocial.com/papers/6a095ba67880e6d24efe1698https://doi.org/10.3390/vetsci13050475
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