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Ultrasound Assessment of Tongue Characteristics in Adolescents With Obesity and Obstructive Sleep Disorders

2026년 5월 21일 업데이트: Vrije Universiteit Brussel

Standardised Ultrasound Assessment of Tongue Characteristics in Adolescents With Obesity and Obstructive Sleep Disordered Breathing: a Research Protocol

Obstructive sleep-disordered breathing, including obstructive sleep apnea (OSA), represents a significant yet underdiagnosed condition in the pediatric population, particularly among adolescents with obesity. The tongue is a central anatomical contributor to upper airway collapsibility; however, its biomechanical properties have been investigated almost exclusively in adult populations, leaving a critical gap in knowledge regarding younger individuals.

This study aims to assess tongue biomechanical and echographic characteristics using quantitative ultrasound modalities - shear-wave elastography (SWE), acoustic attenuation, and echo intensity - in adolescents aged 12 to 18 years with obesity and obstructive sleep disorders. The study adopts a mixed design combining (1) an observational cross-sectional comparison between participants with obesity and OSDB and age- and sex-matched healthy controls at baseline, and (2) a prospective longitudinal cohort component evaluating changes in tongue ultrasound characteristics over the course of a 30-week multidisciplinary inpatient weight-loss program delivered as standard care at the Zeepreventorium (De Haan, Belgium). An additionnal methodological objective consists in determining intra-rater and inter-rater reliability of the ultrasound acquisition protocol providing a reproducible framework for future studies.

연구 개요

상세 설명

Scientific Background and Rationale Amongst obstructive sleep disorders, Obstructive sleep apnea (OSA) is characterized by repetitive complete (apnea) or partial (hypopnea) collapse of the upper airway during sleep. Upper airway collapsibility in OSA results from the interaction of multiple contributing mechanisms, including craniofacial morphology (retrognathia, maxillary constriction, reduced posterior airway space), adenotonsillar hypertrophy - a predominant anatomical risk factor in the pediatric population -, obesity-related peripharyngeal fat deposition, neuromuscular control deficits of upper airway dilator muscles, and environmental exposures such as prenatal or passive tobacco smoke exposure, associated with increased upper airway inflammation and altered respiratory control.

Among the anatomical structures implicated in upper airway collapsibility, the tongue plays a central role as the largest muscular structure of the oropharynx. Morphological and biomechanical alterations (incl. increased volume, fat infiltration at the base, posterior positioning, and modified tissue stiffness) have been identified as relevant contributors to airway obstruction and are increasingly investigated as potential screening markers.

In the pediatric population, OSA remains substantially underdiagnosed. Access to polysomnography is limited, parents seldom spontaneously report nocturnal symptoms, and prevalence estimates vary widely in the literature (1.2% to over 60% in children with obesity), partly due to heterogeneous diagnostic criteria. This epidemiological uncertainty underscores the need for accessible, non-invasive tools capable of characterizing tongue biomechanical properties in younger populations - a gap that the present study directly addresses.

Ultrasound is non-invasive, non-ionizing, widely accessible, and well tolerated, including in adolescents. Existing studies applying these modalities to the tongue in OSA have been conducted exclusively in adult populations and report heterogeneous, sometimes contradictory findings. Methodological variability in acquisition parameters, probe positioning, and region-of-interest definition substantially limits reproducibility and inter-study comparability. No study to date has applied this multimodal quantitative ultrasound approach to adolescents with obesity and obstructive sleep-disordered breathing, nor examined the longitudinal trajectory of these parameters in response to a structured weight-loss intervention. The present study is therefore the first to address this population and this clinical question.

Tongue morphology and tongue fat in patients suffering from OSA have been assessed several times with ultrasound, a non-invasive, widely accessible imaging modality that provides real-time visualization of tissues and is generally well tolerated, with minimal to no associated discomfort. Ultrasound echo intensity has been validated with MRI to estimate tongue fat percentage. Advanced ultrasound modalities, such as shear wave elastography (SWE) and attenuation imaging (AI), provide quantitative measures of tissue stiffness and its attenuation properties, respectively Existing studies on tongue SWE and echo intensity (EI) have been conducted exclusively in adults and report heterogeneous, and sometimes contradictory, findings in patients suffering from OSA. Raw data in EI values would increase in the case of high lipidic impregnation or fibrous accumulation and decrease when the amount of muscle is higher, but the results are still variable depending on the location. Methodological variability in acquisition parameters, probe positioning, region-of-interest definition, and data analysis substantially limit reproducibility and comparability. Arbitrary region-of-interest sizing that does not account for individual tongue morphology may further introduce systematic bias.

Another gap in current research is the limited focus on younger populations. While studies have primarily targeted middle-aged and older adults due to the higher prevalence of OSA in these groups, the biomechanical properties of the tongue may differ significantly in younger individuals, due to growth and hormonal factors. In particular, heterogeneous distribution of elasticity values between anterior and posterior regions of the tongue indicate that there is a need for a better understanding The objectives of this study and anticipated new evidence are as follows below. Primary objective: to compare tongue biomechanical properties, assessed using shear-wave elastography and quantitative ultrasound, between children and adolescents with obesity and obstructive sleep disorders and age-matched healthy controls.

Secondary objectives: (1) to assess longitudinal changes in tongue echographic characteristics over the course of a 30-week multidisciplinary weight-loss program delivered as part of standard care and (2) to evaluate the influence of anthropometric parameters, sex, and pubertal status on these measurements.

Methodological objective: to determine the intra-rater and inter-rater reliability of ultrasound-based tongue measurements, thereby providing a reproducible framework for future clinical and comparative studies.

연구 유형

중재적

등록 (추정된)

80

단계

  • 해당 없음

연락처 및 위치

이 섹션에서는 연구를 수행하는 사람들의 연락처 정보와 이 연구가 수행되는 장소에 대한 정보를 제공합니다.

연구 연락처

연구 장소

      • Brussels, 벨기에, 1090
        • KidZ Health Castle - Universitair Ziekenhuis Brussel Brussels - Health Campus Avenue du Laerbeek 101 1090 Jette
        • 연락하다:
        • 연락하다:
        • 수석 연구원:
          • Steven Provyn, Prof PhD
      • De Haan, 벨기에, 8420
        • Zeepreventorium, Koninklijke Baan 5, 8420 De Haan
        • 연락하다:
          • Frederic Paillaugue, MSc PT
          • 전화번호: +32485952930
        • 수석 연구원:
          • Steven Provyn, Prof PhD

참여기준

연구원은 적격성 기준이라는 특정 설명에 맞는 사람을 찾습니다. 이러한 기준의 몇 가지 예는 개인의 일반적인 건강 상태 또는 이전 치료입니다.

자격 기준

공부할 수 있는 나이

  • 어린이
  • 성인

건강한 자원 봉사자를 받아들입니다

설명

Inclusion Criteria:

  • Aged 12-18 years
  • Already enrolled in Zeepreventorium weight-loss program as Standard Care Diagnosed Obstructive Sleep Apnea (AHI ≥ 1)1 or any Obstructive sleep disordered breathing detected by any of the specific sleep questionnaire (OSA-18, ESS, SSS-Ad, PDSS)

Exclusion Criteria:

  • Any other orthopedic, traumatic, or rheumatologic condition affecting the cervicocephalic region
  • Syndromic or neuromuscular disorders
  • Cognitive impairment limiting compliance with study procedures
  • Inability to provide informed consent
  • Self-reported alcohol or recreational drug consumption within 48 hours preceding the experimental session

공부 계획

이 섹션에서는 연구 설계 방법과 연구가 측정하는 내용을 포함하여 연구 계획에 대한 세부 정보를 제공합니다.

연구는 어떻게 설계됩니까?

디자인 세부사항

  • 주 목적: 기초 과학
  • 할당: 무작위화되지 않음
  • 중재 모델: 크로스오버 할당
  • 마스킹: 없음(오픈 라벨)

무기와 개입

참가자 그룹 / 팔
개입 / 치료
실험적: Study group

Adolescents (12-18 y.o.) with obesity and sleep-disordered breathing, recruited at the Zeepreventorium de Haan and at the KidZ Health Castle UZ-VUB.

The intervention will consist of a submental ultrasound examination - a pain-free, non-ionizing, and non-invasive imaging procedure - aimed at quantifying tongue biomechanical properties, complemented by the collection of descriptive and anthropometric measures including standing height, body weight, impedance analysis, and neck circumference.

Tongue ultrasound via a submental approach. This non-invasive, pain-free and non-radiating protocol will study both morphological and dynamic characteristics of the tongue. Ultrasonographic assessment will be performed with participants in a resting, supine position and ultrasound gel will be used to optimise submental probe contact.
활성 비교기: Control group
A control group of healthy participants (without obesity nor sleep disorders), matched for gender and age, will be recruited from among the researchers' acquaintances. The intervention will be the same, consisting of a submental ultrasound examination - a pain-free, non-ionizing, and non-invasive imaging procedure - aimed at quantifying tongue biomechanical properties, complemented by the collection of descriptive and anthropometric measures including standing height, body weight, impedance analysis, and neck circumference.
Tongue ultrasound via a submental approach. This non-invasive, pain-free and non-radiating protocol will study both morphological and dynamic characteristics of the tongue. Ultrasonographic assessment will be performed with participants in a resting, supine position and ultrasound gel will be used to optimise submental probe contact.

연구는 무엇을 측정합니까?

주요 결과 측정

결과 측정
측정값 설명
기간
혀 경직
기간: 기준선과 30주 체중 감량 프로그램 후
혀의 강직도는 전단파 탄성 초음파로 측정되며 kPa로 표시됩니다.
기준선과 30주 체중 감량 프로그램 후
혀 두께
기간: 기준선 및 30주 체중 감량 프로그램 후
혀 두께(단위: cm)는 초음파를 사용하여 중앙시상면에서 턱끝근의 심근막에서 가장 높은 혀등까지의 수직 거리로 측정됩니다.
기준선 및 30주 체중 감량 프로그램 후
에코 강도
기간: 기준 시점과 30주 체중 감량 프로그램 후에
에코 강도는 ImageJ / Fiji 소프트웨어(ImageJ, US NIH, Bethesda, USA)로 측정되며, 0(검정)에서 255(흰색) 사이의 회색조를 기반으로 한 영역의 평균 픽셀 값을 의미합니다
기준 시점과 30주 체중 감량 프로그램 후에
Acoustic Attenuation
기간: at baseline and after a 30 weeks weight loss program
Attenuation will be measured with ultrasound and depicts the quantitative measurement of ultrasound attenuation in tissues. It is expressed as an attenuation coefficient in dB/cm/MHz.
at baseline and after a 30 weeks weight loss program

2차 결과 측정

결과 측정
측정값 설명
기간
집단내 상관계수, ICC
기간: 기준선
초음파 마커의 평가자 내 및 평가자 간 신뢰도를 평가하기 위해 등급내 상관계수를 사용할 것입니다. 혀 측정의 초음파 신뢰도 및 반복성은 등급내 상관계수(ICC)와 그 95% 신뢰구간을 통해 평가될 것입니다. 주 연구자가 15명의 참가자를 대상으로 시상면과 관상면에서 각 초음파 측정(혀 크기 및 형태학적 매개변수, 에코 강도, 강성, 조직 감쇠 영상, 조직 산란 분포 영상, 지방 분율)을 24시간 간격으로 두 번 수행할 것입니다.
기준선
체중
기간: 기준선 및 30주 체중 감량 프로그램 후
체중은 Tanita 체중계로 측정되며 kg 단위로 표시됩니다.
기준선 및 30주 체중 감량 프로그램 후
신장
기간: 기준선 및 30주 체중 감량 프로그램 이후
키는 스타디오미터로 측정되어 cm 단위로 표현됩니다.
기준선 및 30주 체중 감량 프로그램 이후
OSA-18 questionnaire
기간: Baseline and after a 30-weeks weight loss program

The OSA-18 is a disease-specific screening tool for early diagnosis of obstructive sleep apnea in children, and is used to evaluate the quality of life before and after treatment.

The Obstructive Sleep Apnea - 18 questionnaire is specific to obstructive sleep apnea in children and will be used for correlation analysis. Quality of life is assessed using the Obstructive Sleep Apnea - 18 Quality of Life Survey (OSA-18), a validated questionnaire comprising 18 items. Total scores range from 18 to 126, with higher scores indicating poorer quality of life and greater disease impact, and lower scores reflecting better outcomes.

Baseline and after a 30-weeks weight loss program
Stanford Sleepiness Scale (for adolescents)
기간: Baseline and after a 30-weeks weight loss program
The Stanford Sleepiness Scale (SSS) is a single-item, momentary self-report scale assessing current level of alertness and sleepiness on a 7-point ordinal scale, ranging from 1 ("feeling active, vital, alert, or wide awake") to 7 ("no longer fighting sleep, sleep onset soon, having dream-like thoughts"). Originally developed by Hoddes et al. (1973), the scale captures state sleepiness at a given moment rather than habitual sleepiness patterns, making it particularly suitable for repeated within-session assessments. Its adaptation and use in adolescent populations has been documented in pediatric sleep research, where it complements trait-level instruments such as the ESS and PDSS.
Baseline and after a 30-weeks weight loss program
Pediatric Daytime Sleepiness Scale (PDSS)
기간: Baseline and after a 30-weeks weight loss program
The Pediatric Daytime Sleepiness Scale (PDSS) is an 8-item self-report questionnaire designed to assess daytime sleepiness in school-aged children and adolescents. Each item is rated on a 5-point Likert scale (0-4), yielding a total score ranging from 0 to 32, with higher scores indicating greater daytime sleepiness. The PDSS was developed and validated by Drake et al. (2003) and has demonstrated adequate internal consistency (Cronbach's α = 0.78) and convergent validity with objective sleep measures. It is specifically designed for pediatric populations and captures sleep-related daytime impairment across academic, behavioral, and social domains. A score ≥ 15 has been proposed as a clinically meaningful threshold for excessive daytime sleepiness in adolescents.
Baseline and after a 30-weeks weight loss program
Epworth Sleepiness Scale (ESS)
기간: Baseline and after a 30-weeks weight loss program
The Epworth Sleepiness Scale (ESS) is an 8-item self-report questionnaire assessing the propensity to fall asleep across eight everyday situations, rated on a 4-point Likert scale (0-3), yielding a total score ranging from 0 to 24. Higher scores reflect greater subjective daytime sleepiness. Originally developed and validated by Johns (1991) in adults, the ESS has been subsequently validated for use in adolescent populations and is among the most widely used instruments for screening excessive daytime sleepiness in clinical and research settings. A score > 10 is conventionally considered indicative of excessive daytime sleepiness.
Baseline and after a 30-weeks weight loss program
BMI Z-score
기간: Baseline and after a 30-weeks weight loss program
The body mass index Z-score (BMI Z-score, also referred to as BMI standard deviation score) is a age- and sex-standardized measure of body mass index (BMI, kg/m²) that expresses an individual's BMI relative to a reference population of the same age and sex. It is calculated as the deviation of an individual's BMI from the median BMI of the reference population, expressed in units of standard deviation. In pediatric populations, the BMI Z-score is the recommended metric for assessing adiposity and defining weight status categories, as raw BMI values are not directly comparable across age and sex groups due to physiological changes in body composition during growth. In the present study, BMI Z-scores will be calculated according to the World Health Organization (WHO) 2007 reference data for school-aged children and adolescents (5-19 years). Obesity is defined as a BMI Z-score > +2 SD, and overweight as a BMI Z-score between +1 SD and +2 SD above the age- and sex-specific median.
Baseline and after a 30-weeks weight loss program

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여기에서 이 연구와 관련된 사람과 조직을 찾을 수 있습니다.

간행물 및 유용한 링크

연구에 대한 정보 입력을 담당하는 사람이 자발적으로 이러한 간행물을 제공합니다. 이것은 연구와 관련된 모든 것에 관한 것일 수 있습니다.

일반 간행물

  • Brockmann, P., & Gozal, D. (2022). Neurocognitive Consequences in Children with Sleep Disordered Breathing: Who Is at Risk? Children, 9(9), 1278. https://doi.org/10.3390/children9091278 Chu, C.-A., Chen, Y.-J., Chang, K.-V., Wu, W.-T., & Özçakar, L. (2021). Reliability of Sonoelastography Measurement of Tongue Muscles and Its Application on Obstructive Sleep Apnea. Frontiers in Physiology, 12, 654667. https://doi.org/10.3389/fphys.2021.654667 da Silva Gusmão Cardoso, T., Pompéia, S., & Miranda, M. C. (2018). Cognitive and behavioral effects of obstructive sleep apnea syndrome in children: A systematic literature review. Sleep Medicine, 46, 46-55. https://doi.org/10.1016/j.sleep.2017.12.020 Gipson, K., Lu, M., & Kinane, T. B. (2019). Sleep-Disordered Breathing in Children. Pediatrics in Review, 40(1), 3-13. https://doi.org/10.1542/pir.2018-0142 Glicksman, A., Hadjiyannakis, S., Barrowman, N., Walker, S., Hoey, L., & Katz, S. L. (2017). Body Fat Distribution Ratios and Obstructive Sleep Apnea Severity in Youth With Obesity. Journal of Clinical Sleep Medicine: JCSM: Official Publication of the American Academy of Sleep Medicine, 13(4), 545-550. https://doi.org/10.5664/jcsm.6538 Halbower, A. C., Degaonkar, M., Barker, P. B., Earley, C. J., Marcus, C. L., Smith, P. L., Prahme, M. C., & Mahone, E. M. (2006). Childhood Obstructive Sleep Apnea Associates with Neuropsychological Deficits and Neuronal Brain Injury. PLoS Medicine, 3(8), e301. https://doi.org/10.1371/journal.pmed.0030301 Yu, J. L., Wiemken, A., Schultz, S. M., Keenan, B. T., Sehgal, C. M., & Schwab, R. J. (2022). A comparison of ultrasound echo intensity to magnetic resonance imaging as a metric for tongue fat evaluation. Sleep, 45(2), zsab295. https://doi.org/10.1093/sleep/zsab295

연구 기록 날짜

이 날짜는 ClinicalTrials.gov에 대한 연구 기록 및 요약 결과 제출의 진행 상황을 추적합니다. 연구 기록 및 보고된 결과는 공개 웹사이트에 게시되기 전에 특정 품질 관리 기준을 충족하는지 확인하기 위해 국립 의학 도서관(NLM)에서 검토합니다.

연구 주요 날짜

연구 시작 (추정된)

2026년 9월 1일

기본 완료 (추정된)

2027년 9월 1일

연구 완료 (추정된)

2027년 12월 31일

연구 등록 날짜

최초 제출

2026년 5월 21일

QC 기준을 충족하는 최초 제출

2026년 5월 21일

처음 게시됨 (실제)

2026년 5월 29일

연구 기록 업데이트

마지막 업데이트 게시됨 (실제)

2026년 5월 29일

QC 기준을 충족하는 마지막 업데이트 제출

2026년 5월 21일

마지막으로 확인됨

2026년 5월 1일

추가 정보

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개별 참가자 데이터(IPD) 계획

개별 참가자 데이터(IPD)를 공유할 계획입니까?

미정

IPD 계획 설명

Individual participant data (IPD) may not be shared publicly, given the sensitive nature of the data collected (health data from minors) and the applicable data protection requirements under the General Data Protection Regulation (GDPR, EU 2016/679). Pseudonymized data will be stored on the secure VUB research data platform (Pixiu) and accessible only to authorized members of the research team. Aggregate and summary data supporting the findings of this study will be made available upon reasonable request to the corresponding author, subject to ethical and institutional approval.

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