Showing posts with label sleep apnea. Show all posts
Showing posts with label sleep apnea. Show all posts

Tuesday, January 18, 2022

Helping High Risk Infants and Parents Sleep Better: ATS Guidelines for Outpatient Care of Premature Infants

Premature infants, particularly born before 30 weeks gestation who have been given a diagnosis of chronic lung disease, bronchopulmonary dysplasia, or post-prematurity respiratory disease face significant challenges in transition from the NICU environment to life at home.  The lack of guidelines to help focus care and quality medical literature differentiating outcomes is stark.  Parents and physicians need tools to care for these high risk infants. These new ATS guidelines nicely evaluate the role of inhaled medications, swallowing assessment, airway endoscopy, and especially sleep testing and provide timely recommendations.

Outpatient Respiratory Management of Infants, Children, and Adolescents with Post-Prematurity Respiratory Disease: An Official American Thoracic Society Clinical Practice Guideline

New recommendations are available to help guide physicians who must determine when and how to treat infants, children and adolescents with post-prematurity respiratory disease (PPRD). The American Thoracic Society has published an official clinical practice guideline in which a multidisciplinary panel of experts provide 13 conditional recommendations on the diagnostic testing and clinical management of these young people. The complete guideline detailing these recommendations was posted online ahead of print in the American Journal of Respiratory and Critical Care Medicine.

Worldwide, approximately 12 million —10 percent of live births—are born prematurely and are at risk for respiratory disease, the most common of which is bronchopulmonary dysplasia (BPD). However, all , even those who do not meet the criteria for having BPD, may develop poor respiratory health later in life with signs and symptoms including cough, recurrent wheezing, exercise intolerance, low blood oxygen (hypoxemia) and reduced pulmonary function. These individuals are classified as having PPRD.

Tuesday, August 31, 2021

Sleeping for Better Cardiovascular Health in Children and Adolescents


There is a reason why personal sleep monitoring devices have proliferated in the wearable technology space.  Poor sleep health is linked to reduced cognitive function, quality of life, and cardiovascular outcomes.  Children are not immune to these complications, but they may present differently.  Obesity, hypertension, insulin resistance, and dyslipidemia have all been correlated in some form to obstructive sleep apnea or sleep disordered breathing.

Be on the lookout for the any of the following:

1) Chronic snoring, mouth breathing, pauses in breathing during sleep especially when associated with tonsillar enlargement

2) Signs of daytime sleepiness despite adequate sleep time.  Sleep needs in children vary by age, so it is important that sleep times reflect that.  Also, it is common for sleepiness to look completely different in children.  Problems with focus, attention and labile emotions and irritability in the second half of the day are quite common.

3) Special risk populations, including children that are obese, or those that have other medical disorders known to predispose to sleep apnea, such as Down Syndrome or other craniofacial abnormalities.

Any of the above warrants evaluation with a pediatric sleep specialist to discuss testing.


AHA Releases Scientific Statement on Obstructive Sleep Apnea and Cardiovascular Health in Children and Adolescents


 In a recent scientific statement, the American Heart Association (AHA) outlined evidence highlighting the effect of obstructive sleep apnea (OSA) on the cardiovascular health of children and adolescents. The full statement was published in Journal of the American Heart Association.

The AHA noted that this statement may be used to develop future guidelines in managing OSA with regard to cardiovascular disease (CVD) risk in the pediatric population.

Epidemiology and Risk Factors

Patients with OSA experience disruption during sleep caused by upper airway obstruction. In children and adolescents, the clinical presentation of the condition can vary by age, but it is generally characterized by habitual snoring, labored breathing, gasps/snorting noises, and daytime sleepiness. According to the AHA, 1% to 6% of children and adolescents have OSA. Current evidence suggests that the OSA prevalence in a pediatric population peaks between 2 and 8 years of age and corresponds to a peak in adenotonsillar hypertrophy prevalence.

Primary risk factors for OSA in the pediatric population include obesity, allergic rhinitis, upper and lower airway disease, enlarged tonsils and adenoids, low muscle tone, neuromuscular disorders, and craniofacial malformations. In addition, sickle cell disease (SCD) may be an independent risk factor for OSA. Premature birth, or birth that occurs prior to 37 weeks’ gestation, may also be associated with an increased risk for sleep-disordered breathing among children, partially because of delayed development of respiratory control.


Read article here.

Friday, May 21, 2021

Saturday, September 7, 2019

CPAP , A Medical Aesthetic?

 




Coronary artery disease, cerebrovascular events, cardiac arrhythmias... What about fine lines and wrinkles?  Looks like we have the whole sleep apnea marketing approach wrong.

Patients With OSA Are Perceived as Younger Following Treatment With CPAP.

Abstract

BACKGROUND: 

The aim of this study was to compare the effects of CPAP treatment and placebo intervention on the facial appearance of patients with OSA.

METHODS: 

Patients with severe OSA were randomized to receive either CPAP treatment or nasal dilator (placebo) intervention for 1 month. The sequence was interposed by 15 days of washout with no treatment. Patients were evaluated by using questionnaires, polysomnography, and facial photographs at baseline and at the end of both interventions. In an electronic survey, the photographs were presented in a randomized order to 704 observers who rated the perceived age, health, attractiveness, and tiredness of the patients. Observers were unaware of the patients' conditions.

RESULTS: 

Thirty patients (age, 46 ± 9 years; 21 men; apnea-hypopnea index, 61.8 ± 26.2) were evaluated. During each intervention period, patients used CPAP 6.0 ± 1.7 h per night on 94% of the nights and the placebo intervention on 98% of the nights. After CPAP treatment, patients were rated younger (47.9 ± 3.5 years) than they appeared at baseline (53.9 ± 4.0 years) and following the placebo treatment (49.8 ± 3.7 years) (P < .001). Linear regression analysis identified that CPAP adherence, total sleep time, and percentage of total sleep time with oxyhemoglobin saturation < 90% were predictors of a decreased age rating following CPAP treatment.

CONCLUSIONS: 

Patients with severe OSA had a younger appearance following 1 month of CPAP treatment. This benefit can serve as an additional source of motivation for patients with OSA to comply with CPAP treatment and may facilitate OSA management.

Read abstract here.

Monday, December 3, 2018

CPAP or Surveillance Device?


An unfortunate spin on an extremely useful technology that can strengthen doctor/patient relationship and improve sleep apnea outcomes when used properly.  Step off regulators!  Dr. Susarla

Last March, Tony Schmidt discovered something unsettling about the machine that helps him breathe at night. Without his knowledge, it was spying on him.
From his bedside, the device was tracking when he was using it and sending the information not just to his doctor, but to the maker of the machine, to the medical supply company that provided it and to his health insurer.
Schmidt, an information technology specialist from Carrollton, Texas, was shocked. "I had no idea they were sending my information across the wire."
Schmidt, 59, has sleep apnea, a disorder that causes worrisome breaks in his breathing at night. Like millions of people, he relies on a continuous positive airway pressure, or CPAP, machine that streams warm air into his nose while he sleeps, keeping his airway open. Without it, Schmidt would wake up hundreds of times a night; then, during the day, he'd nod off at work, sometimes while driving and even as he sat on the toilet.
"I couldn't keep a job," he said. "I couldn't stay awake." The CPAP, he said, saved his career, maybe even his life.

Tuesday, November 27, 2018

Excess Weight Increases Asthma Risk



Proximity to holidays purely coincidental.  Nonetheless, watch the pounds folks! Dr. Susarla

Children who are overweight or obese are at increased risk for asthma, researchers report.
A retrospective study, published in Pediatrics, included 507,496 children followed for an average of four years. None of the children had incidents of asthma before the start of the study.
The researchers divided the children into three groups: overweight, defined as the 85th to 94th percentile for weight; obese, the 95th percentile or higher; and normal weight, the 25th to 64th percentile.
The study controlled for age, race, health insurance, food allergies, medications and other factors, and found that compared with children of normal weight, the overweight were 17 percent more likely to have been given a diagnosis of asthma and to take an asthma medication. The obese were 30 percent more likely.
The researchers estimate that 23 to 27 percent of asthma cases in obese children can be attributed to the obesity itself. Among all the children, 10 to 13 percent of asthma cases were attributable to obesity.

Tuesday, October 2, 2018

10 Treatable Traits That Could Predict Asthma Attacks



The science and art of predicting asthma risk may go beyond asthma symptoms and lung physiology and intersect with the presence of chronic disease. Dr. Susarla
With increasing attention on a “treatable traits”—a new classification and precision medicine strategy for asthma and other chronic airway diseases,1 a team of researchers set out to examine whether and which treatable traits could be identified from registry data in persons with severe asthma and used to predict the future risk of asthma exacerbations.2
In their study, published in the journal Respirology, the investigators recorded the prevalence of the treatable asthma traits of 434 participants with severe asthma and 102 participants with non-severe asthma, all of whom were enrolled in the Australasian Severe Asthma Web‐Based Database. The prevalence of participants’ treatable asthma traits were described. They assessed participants at the study’s outset and then every 6 months thereafter for 24 months.
Of the 24 treatable traits the researchers identified, 10 predicted exacerbation risk in the participants with severe asthma, with the 5 strongest as follows:
  • Being prone to exacerbations
  • Depression
  • Inhaler device polypharmacy
  • Vocal cord dysfunction
  • Obstructive sleep apnea
“Treatable traits can be assessed using a severe asthma registry,” the authors concluded. “In severe asthma, patients express more treatable traits than non‐severe asthma. Traits may be associated with future asthma exacerbation risk demonstrating the clinical utility of assessing treatable traits.”