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Development of the Sphenoid Sinus in Japanese Children: A Retrospective Longitudinal Study Using Three-Dimensional
Masaaki Higashino1, Susumu Abe2, Masaki Sawada3
1Department of Otorhinolaryngology, Head and Neck Surgery, Osaka Medical and Pharmaceutical University, Takatsuki 569-8686, Osaka, Japan.
Insights
The sphenoid sinus (SS) grows with age in Japanese children, peaking around 15 years old. Its growth rate correlates with physical development, potentially serving as an indicator for growth spurts.
Area of Science:
- Otolaryngology
- Pediatric Radiology
- Human Anatomy
Background:
- The sphenoid sinus (SS) is clinically significant due to its proximity to vital structures like the pituitary gland.
- Understanding SS growth patterns is crucial for pediatric clinical practice.
Purpose of the Study:
- To investigate the growth patterns of the sphenoid sinus in Japanese children.
- To correlate sphenoid sinus development with cranial base morphology and overall physical growth.
Main Methods:
- Utilized three-dimensional computed tomography (CT) scans from 78 pediatric patients.
- Measured sphenoid sinus size and volume from volume-rendered images.
- Determined cranial base morphological measurements from scout CT images.
Main Results:
- Sphenoid sinus size and volume increase with age, reaching a peak around 15 years.
- Males exhibited a higher SS growth rate than females, with peak rates at 12 (males) and 10 (females) years.
- Anterior cranial base length growth stabilized around age 10 in females, but continued gradually until 15 in males.
Conclusions:
- The sphenoid sinus growth spurt closely mirrors the adolescent physical growth spurt.
- Changes in sphenoid sinus dimensions may serve as a valuable indicator of physical growth spurts in children.
Abstract:
Background: The sphenoid sinus (SS) is located close to vital structures, such as the pituitary gland, and it has significant clinical relevance. This study aimed to clarify the growth pattern of the SS in Japanese children using three-dimensional computed tomography (CT). Methods: Seventy-eight participants with congenital, acquired, or external auditory canal cholesteatoma were recruited and underwent CT more than twice during their treatment. Using the volume-rendered images, the size and volume of the SS were measured. Furthermore, on the scout image, the morphological measurements of the cranial base were determined. Results: The size and volume of the SS increased with age, and peaked at the mean age of 15 years. For males, the volume of the SS was smaller than that of females aged <5 years. The growth rate of the SS was significantly higher in males than in females. The maximum growth rate was detected at the age of 12 years for males and 10 years for females. For females, the increase in the length of the anterior cranial base ceased at approximately 10 years of age and remained constant thereafter. In contrast, for males, the length of the anterior cranial base increased gradually until 15 years of age. Conclusions: Considering the similarity of the periods between the adolescent growth spurt and the maximum growth rate of the SS, changes in the size of the SS may be used as an indicator of the physical growth spurt.
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