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Examining the Branching Patterns of the Hepatis Portae Vena with Computed Tomography Images
Bilge Turkmen1, Mehmet Tugrul Yilmaz2, Duygu Akin Saygin2
1Healthcare Practice and Research Hospital, Hatay Mustafa Kemal University, Hatay 31100, Türkiye.
Insights
This study analyzed liver vascular structures using CT scans, revealing common and rare branching patterns of the Hepatis Portae Vena (HPV). Understanding these variations is crucial for liver surgery and interventional radiology.
Area of Science:
- Radiology
- Anatomy
- Medical Imaging
Background:
- The Hepatis Portae Vena (HPV) is a critical vascular structure within the liver.
- Variations in HPV branching patterns can impact surgical and radiological procedures.
- Accurate anatomical knowledge is essential for effective liver disease treatment.
Purpose of the Study:
- To investigate the branching patterns of the Hepatis Portae Vena (HPV) using Computed Tomography (CT).
- To identify and classify variations in HPV anatomy.
- To determine the surgical and radiological significance of observed HPV variations.
Main Methods:
- CT images of 996 healthy individuals (ages 20-59) were analyzed.
- HPV branching patterns were classified into distinct types (Type I-a to Type VIII-b).
- Data were analyzed across gender and age groups (20-29, 30-39, 40-49, 50-59).
Main Results:
- Type I-a was the most frequent HPV branching pattern (73.1%).
- Type VI-b and Type VII-b were the least frequent patterns (0.1% each).
- No statistically significant differences in HPV type frequency were found between gender and age groups (p > 0.05).
Conclusions:
- Detailed knowledge of HPV anatomy and its variations is vital for liver surgery.
- Understanding HPV branching patterns aids interventional radiology procedures.
- Accurate anatomical definitions support the cornerstone treatments for liver diseases.
Abstract:
Background/Objectives: The present study aimed to examine the branching pattern images of the Hepatis Portae Vena (HPV), which is one of the vascular structures of the liver, with Computed Tomography (CT), and to uncover the surgical and radiological importance of the variations. Methods: The HPV branching patterns on CT images of healthy liver of 996 individuals (47.8% male, 52.2% female) between the ages of 20 and 59 were evaluated according to previously determined definitions. The division of the main branch of the HPV into ramus (r.), dexter, and r. sinister and the later division of r. dexter into r. anterior and r. posterior branches were called Type I-a, other main branch variations were called Type II-a, Type III-a, and Type IV-a, and the r. dexter variations were called Type V-b, Type VI-b, Type VII-b, and Type VIII-b. Also, all individuals in the present study were examined under four age groups as 20-29, 30-39, 40-49, 50-59, and the data were analyzed in the SPSS 21 software. Results: Type I-a (73.1%) was detected most frequently in all individuals, but Type VI-b (0.1%) and Type VII-b (0.1%) were detected least frequently. Following Type I-a, Type II-a (10.6%), Type III-a (8.2%), and Type V-b (5.5%) were detected, respectively. No statistically significant differences were detected between gender and age groups in terms of the frequency of HPV types (p > 0.05). Conclusions: We believe that accurate knowledge and definition of HPV anatomy will guide liver surgeries and interventional radiology, which are the cornerstones of the treatment of liver diseases.
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