Urination is a result of a complex neuro-muscular coordination which involves the action and arrangement of different parts of nervous systems as well as the muscular structure of the lower part of the urinary system. When there is an abnormal pattern in bladder and bowel habits without any known neuronal lesions, the condition is called bladder and bowel disorder (BBD). The symptoms can range from the feeling of rushing to the toilet, urinary accidents to urinating much less than expected during the day. The standard treatment for most cases of BBD starts with Standard Urotherapy (SU) which is a beneficial basic and harmless form of treatment widely used for all children with BBD. SU involves explaining of the problem to the children and their parents by the doctors and educating them on proper voiding mechanisms, sitting, and standing positions as well as how and when to void. The purpose of this study is to explore the possibility of testing the additive effectiveness of Diaphragmatic Breathing exercise (DB) as an alternative and harmless additional treatment to SU in children with BBD.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
23
BC Children's and Women's Hospital
Vancouver, British Columbia, Canada
Proportion of participants with resolved incontinence at the end of the trial in each group (SU+DB vs. SU only).
Time frame: 3 months
Number of withdrawals during the treatment period.
Time frame: 3 months
Number of children adhering to the diaphragmatic breathing schedule that is given to them.
This will be measured by the information obtained from the mobile application used during the study period.
Time frame: 3 months
Treatment acceptability of the proposed intervention (diaphragmatic breathing).
This outcome will be reported based on the participants and their parents' response to the Treatment Acceptability Questionnaires.
Time frame: 3 months
Change in High Frequency (HF) variation of HRV from baseline to end of treatment period for both study groups.
This outcome will be measured using state-of-the-art machine for recording heart rate variability.
Time frame: Baseline and 3 months
Change in Total Power from baseline to end of treatment period for both study groups.
This outcome will be calculated from the measurements obtained from state-of-the-art machine for recording heart rate variability.
Time frame: Baseline and 3 months
Change in heart rate from baseline to end of treatment period for both study groups.
Time frame: Baseline and 3 months
Change in Pre-ejection Period (PEP) from baseline to end of treatment period for both study groups.
This outcome will be measured using state-of-the-art machine for recording heart rate variability.
Time frame: Baseline and 3 months
Change in BBD score from baseline to end of treatment period for both study groups.
This outcome will be reported based on participants' response to a validated 5-point Likert scale questionnaire for diagnosing BBD.
Time frame: Baseline and 3 months
Change in Pediatric Incontinence Questionnaire (PinQ) scores from baseline to end of treatment period for both study groups.
Time frame: Baseline and 3 months
Change in average urinary flow rate (a uroflowmetry parameter) from baseline to end of treatment period for both study groups.
Average urinary flow rate will be measured using top-notch equipment for measuring uroflowmetry parameters. Average urinary flow rate will be reported in mL/sec.
Time frame: Baseline and 3 months
Change in peak urinary flow rate (a uroflowmetry parameter) from baseline to end of treatment period for both study groups.
Peak urinary flow rate will be measured using top-notch equipment for measuring uroflowmetry parameters. Peak urinary flow rate will be reported in mL/sec.
Time frame: Baseline and 3 months
Change in post-void residual volume from baseline to end of treatment period for both study groups.
A hand-held ultrasound device will be used for the measurement of the post-void residual volume.
Time frame: Baseline and 3 months
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