An observational study in Asthma, sponsored by Sheba Medical Center. Completed at 1 site in Israel. Open to participants aged 3 Years to 6 Years. Per ClinicalTrials.gov, last updated 2007-03-06.
Sponsored by Sheba Medical Center · Observational
Vigorous exercise is known to cause transient bronchoconstriction in school children with asthma, many of whom initially have normal lung function at rest. The presence and extent of this phenomena in early childhood is difficult to recognize, because exercise induced bronchoconstriction (EIB) may not limit the child's performance and the child may fail to notice the symptoms until taking part in organized or competitive sport. Conversely, as children do participate in vigorous activities all day long, severe EIB may provoke a crucial disabling condition in the child.
In school children the exercise challenge test (ECT) is a well standardized test and is used to make a diagnosis of asthma because it is able to discriminate between asthma and other chronic breathing illnesses of childhood and is also used to determine the effectiveness and optimal dosages of medications prescribed to prevent EIB.
The test includes is a controlled run on a motor-driven treadmill followed by scheduled multiple spirometry maneuvers. This procedure was never been tested and may not be suitable for the preschool age.
In this study we assumed that a free-run test which combined with measurements of duplicate spirometry-sets would be the most convenient way to test young children.
The aims of this study are a) to examine the feasibility of a free-run protocol (according to the ATS/ERS recomendations), followed by duplicate spirometry measurements in early childhood.
b) to explore the existence of exercise induced bronchoconstriction in young children (age 3-6 years old) with respiratory symptoms.
Method:
The children are to come in comfortable clothes and running shoes, having consumed no more than a light meal and having had pulmonary medications withdrawn as described above. A parent, a pediatric pulmonary physician and a technician is present throughout the test. Each child undergoes a physical examination to exclude evidence of wheeze, and baseline spirometry was performed. The children are asked to run freely back and forth (without a nose-clip) in a 50m long corridor next to the pulmonary laboratory. The target is to achieve 6 minutes of "free run" to increase hart-rate to 80% in the maximum for at least 4 minutes according to ATS/ERS recommendations for exercise challenge test in older children [1]. An adult (parent/technician/ physician) will run with the child to encourage him/her to continue running. Heart-rate and O2-saturation is monitored continuously throughout the run using a portable mobile pulse-oximeter monitor (Nonin medical, INC, model 2500, Minneapolis, USA).
Spirometry is measured according to the recommendations for preschool children [2], with a commercial ZAN100 Spirometer situated in the pediatric pulmonary laboratory, by a skilled technician. Measurements are performed in the standing position, without nose-clip (for comfort of the child) until two consecutive technically acceptable curves are achieved. After the free-run, spiroetmry is measured in duplicate sets at 1, 3, 5, 10 and 20 minutes post-exercise [1]. The better of the two curves is selected as the representative value at each interval, but differences between the two values of FEV1 has to be \<5%. The following signs are monitored by the pulmonologist: wheeze and prolonged expiration on auscultation over the trachea and two zones of both lungs (upper front and lower back). Cough, shortness of breath, or perceived breathlessness within 20 minutes after the run were noted.
Analysis: Technically acceptable spirometry maneuvers are analyzed. Baseline values are first compared to the spirometry values with relation to height derived from the indices in 109 healthy children in our previous study [3].
Following exercise, best spirometry values for each interval are compared to baseline values. Exercise response was defined as the greatest decrease in FEV1 expressed as a percentage of the baseline values. A bronchoconstriction response to exercise is considered as positive when the FEV1 decrease from baseline was greater than 13% [4]. Student's paired t-test is used for comparison of data between each spirometry index and the calculated values for healthy children. A value of p\<0.05 was considered significant.
References:
3,921 studies on the registry are indexed under Asthma; 507 are open to participants now.
This study's enrollment of 100 is below the median of 150 across 970 observational studies indexed under Asthma.
Browse Asthma studies →Sheba Medical Center is the lead sponsor of 660 studies on the registry; 63 are open to participants now.
Counted across the registry records on this site, refreshed daily.
Exclusion Criteria:
This study is completed, as verified in Mar 2007. You cannot join it, but the record below documents what was studied.
Get an email when the registry record changes — status, dates, results — or when someone posts here.
Sign in to followQuestions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.
Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.
Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.
Sheba Medical Center