Respiratory Polysomnographic Findings in Patients Treated Primarily for Unilateral Cleft Lip and Palate

Davi Sandes Sobral1, Gustavo Juliane Faller2, Marcus Vinícius Martins Collares3

  • 11 Otorhinolaringology Division, Santo Antonio Hospital (OSID-Nun Dulce`s Beneficent Institution), Salvador, BA, Brasil.

Insights

Children with cleft lip and palate (CLP) show a higher prevalence of obstructive sleep apnea syndrome (OSAS) during mixed dentition. While generally mild, closer observation and polysomnography are recommended for these airway-compromised patients.

Area of Science:

  • Craniofacial medicine
  • Pediatric sleep medicine
  • Otolaryngology

Background:

  • Cleft lip and palate (CLP) is a common congenital craniofacial anomaly.
  • Obstructive sleep apnea syndrome (OSAS) is prevalent and often linked to craniofacial differences.
  • Limited research exists on sleep breathing patterns in children with CLP.

Purpose of the Study:

  • To characterize the respiratory profile of children with unilateral CLP.
  • To evaluate the prevalence of OSAS in children aged 7-12 years with unilateral CLP.
  • To assess sleep breathing patterns post-surgical repair for CLP.

Main Methods:

  • Descriptive analysis of polysomnography findings.
  • Study included 23 children with unilateral CLP (aged 7-12 years).
  • Participants had undergone primary cleft lip/nasal and palatal repair.

Main Results:

  • Mean apnea/hypopnea index (AHI) was 1.11/h; median AHI was 0.9/h.
  • Nearly 30% of patients had an AHI > 1.4 events/h.
  • No significant oxyhemoglobin desaturation observed; OSAS prevalence higher than in non-cleft populations.

Conclusions:

  • Children with unilateral CLP exhibit an increased prevalence of OSAS during the mixed dentition stage.
  • OSAS in this cohort was generally mild, but warrants closer monitoring.
  • Polysomnography is advised for assessing airway abnormalities and individualizing treatment in children with CLP.

Related Concept Videos

Respiratory System Abnormal Finding I: Inspection and Percussion01:30

Respiratory System Abnormal Finding I: Inspection and Percussion

Respiratory system abnormalities are a significant concern in healthcare due to their potential to indicate underlying severe conditions like Chronic Obstructive Pulmonary Disease (COPD), asthma, and pneumonia. These abnormalities can often be detected through physical examination methods like inspection and percussion.
Inspection Findings
During an inspection, several findings may suggest the presence of respiratory distress or disease. Pursed-lip breathing, where exhalation is slowed by...
868
Respiratory System Abnormal Finding II: Palpation and Auscultation01:31

Respiratory System Abnormal Finding II: Palpation and Auscultation

In assessing respiratory abnormalities, palpation and auscultation are critical tools for detecting and interpreting various pathophysiological changes. These techniques provide insight into underlying disorders by evaluating tactile sensations and sounds produced by the respiratory system.
Palpation Findings
During a respiratory assessment, palpation can reveal several vital abnormalities:
1.6K
Finding the Center of Gravity01:03

Finding the Center of Gravity

The center of gravity of a body is an imaginary point where the body's total weight is assumed to be concentrated, and the body is perfectly balanced. The center of the mass of a body is a point at which the whole of the mass of the body appears to be concentrated. If the acceleration due to gravity, g, has the same value at all points on a body, its center of gravity is identical to its center of mass. The center of gravity of homogeneous bodies such as a sphere, cube, or rectangular plate...
4.4K
Cardiovascular System Abnormal Findings I: Inspection and Palpation01:29

Cardiovascular System Abnormal Findings I: Inspection and Palpation

In a cardiovascular examination, inspection and palpation are crucial for identifying abnormalities.
Abnormal findings observed during an inspection
963
Finding Electric Potential From Electric Field01:13

Finding Electric Potential From Electric Field

For a system of charges, it is easy to calculate the system's potential because potential is a scalar quantity. However, in some instances where calculating the electric field is more straightforward than finding the potential, the electric field is used to calculate the system's potential. For a positive charge, the electric field is radially outward, and the potential is positive at any finite distance from the positive charge. In such an electric field, the motion away from the...
5.7K
Anatomy of Respiratory System II: Lower Respiratory Tract01:31

Anatomy of Respiratory System II: Lower Respiratory Tract

The lower respiratory tract is anatomically composed of several vital structures, including the larynx, trachea, bronchial tree, alveoli, lungs, and pleurae. Each component has a specific function, and all are intricately connected to ensure efficient respiration.
The Larynx
It is located between the pharynx and the trachea, acts as a passageway for air, and hosts several critical structures, such as the epiglottis, vocal cords, and glottis. The epiglottis acts as a gateway, guiding food to the...
4.1K