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Updated: May 16, 2026

High-speed Video Microscopy Analysis for First-line Diagnosis of Primary Ciliary Dyskinesia
Published on: January 19, 2022
Structural lung assessment in children with primary ciliary dyskinesia: evaluation with the SPEC scoring system
Gamze Akca Dinç1, Ezgi Yağız Ertuna2, Satı Özkan Tabakçı3
1Department of Pediatric Pulmonology, Ankara Bilkent City Hospital, Ankara, Turkey. dr.gamzeakca@yahoo.com.
Insights
The Specific PCD Evaluation by CT (SPEC) scoring system effectively assesses lung damage in children with Primary Ciliary Dyskinesia (PCD). This validated tool correlates with lung function and can guide treatment for pediatric PCD patients.
Area of Science:
- Pediatric Pulmonology
- Radiology
- Genetic Disorders
Background:
- Primary ciliary dyskinesia (PCD) causes progressive lung damage, often preceding detectable lung function decline.
- Existing CT scoring systems (Bhalla, modified Brody) were designed for cystic fibrosis and may not fully capture PCD-specific lung changes.
- The Specific PCD Evaluation by CT (SPEC) scoring system, introduced in 2024, is the first CT scoring system developed specifically for PCD, but pediatric data remains limited.
Purpose of the Study:
- To evaluate the validity and clinical utility of the SPEC scoring system in a pediatric cohort with Primary Ciliary Dyskinesia (PCD).
- To assess the correlation between SPEC scores and established CT scoring systems (Bhalla, modified Brody) and pulmonary function tests (PFTs) in children with PCD.
Main Methods:
- A retrospective, cross-sectional study included 47 children diagnosed with or highly suspected of having PCD.
- Thin-section thoracic computed tomography (CT) scans were evaluated by pediatric radiologists using the SPEC, Bhalla, and modified Brody scoring systems.
- Pulmonary function tests (PFTs) performed within three months of CT were analyzed and correlated with CT scores.
Main Results:
- The SPEC scoring system demonstrated strong intercorrelations with the modified Brody (ρ=0.894) and Bhalla (ρ=-0.838) scoring systems.
- SPEC scores showed significant negative correlations with FEV₁ z-score (ρ=-0.748) and FVC z-score (ρ=-0.722), indicating more severe disease with lower lung function.
- Bronchiectasis was most frequently observed in the left lower lobe (68.1%) using the SPEC system.
Conclusions:
- The SPEC scoring system is a valid tool for assessing structural lung disease in children with PCD.
- Strong correlations between SPEC scores, pulmonary function, and other CT scoring systems support its clinical utility.
- The SPEC system shows promise for guiding treatment decisions and serving as an outcome measure in pediatric PCD clinical trials.
Abstract:
Primary ciliary dyskinesia (PCD) is a rare genetic disorder that may result in progressive lung damage. The Specific PCD Evaluation by CT (SPEC) scoring system has been specifically used in PCD patients since 2024. This study aimed to evaluate the SPEC score in children with PCD. This retrospective, cross-sectional, single-center study included 47 children with confirmed or highly likely PCD who underwent thin-section thoracic computed tomography (CT). Pediatric radiologists evaluated CT scans using SPEC, Bhalla, and modified Brody scoring systems. We analyzed pulmonary function tests performed within 3 months of CT. We compared its performance with established scoring systems. The median age at CT was 8 years (Q1-Q3: 5.5-13.0). SPEC scores ranged from 0 to 51 (median 29). All three CT scoring systems showed strong intercorrelations; the SPEC-modified Brody correlation was ρ = 0.894 (p < 0.001), and the SPEC-Bhalla correlation was ρ = - 0.838 (p < 0.001). SPEC scores showed strong negative correlations with FEV₁ z-score (ρ = - 0.748, p < 0.001) and FVC z-score (ρ = - 0.722, p < 0.001) and positively correlated with age (ρ = 0.425, p = 0.003). SPEC scoring showed bronchiectasis predominantly in the lower and middle lobes, with the left lower lobe most frequently affected (68.1%). Conlsuions: The SPEC scoring system is valid for assessing structural lung disease in children with PCD. Strong correlations with pulmonary function and established CT scoring systems support its clinical utility. SPEC may help guide treatment decisions and serve as an outcome measure in pediatric PCD trials. What is Known: • Bhalla and modified Brody CT scoring systems were developed for cystic fibrosis and may not fully capture PCD-specific findings. • SPEC, introduced in 2024 as the first PCD-specific CT scoring system, has limited pediatric data. • Structural lung damage in PCD is progressive and may precede spirometric decline. What is New: • This study provides an independent pediatric application cohort for the SPEC scoring system, outside the development study. • SPEC scores correlated strongly with pulmonary function parameters. • SPEC can guide clinical decisions and serve as an outcome measure in the pediatric PCD population.
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