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Changes in body mass index following venous thromboembolism in children: a prospective cohort study
Mary P Dang1,2,3,4, Maria Hanna5,6, Zhuo Tina Yang1,2
1University of Texas Southwestern Medical Center, Dallas, Texas, USA.
Insights
Pediatric venous thromboembolism (VTE) is linked to increased body mass index (BMI) over time, except in intensive care unit (ICU) patients. Weight-based counseling may aid recovery after VTE.
Area of Science:
- Pediatric Hematology
- Cardiovascular Research
- Obesity Studies
Background:
- Acute pediatric venous thromboembolism (VTE) may be associated with changes in body mass index (BMI) over time.
- Understanding these changes is crucial for identifying potential clinical interventions.
- Previous research has not fully elucidated BMI trajectories following pediatric VTE.
Purpose of the Study:
- To investigate changes in BMI from VTE diagnosis to 3 and 6 months post-diagnosis.
- To identify predictors of BMI changes in pediatric VTE patients.
- To calculate the prevalence of overweight and obesity in this cohort.
Main Methods:
- Prospective cohort study of 63 pediatric VTE patients over 6 months.
- Used percentage of BMI95 (%-of-BMI95) to standardize weight across age and sex.
- Analyzed change in %-of-BMI95 (Δ%-of-BMI95) as the primary outcome, comparing intensive care unit (ICU) vs. non-ICU subgroups.
Main Results:
- 62% of participants were overweight/obese at diagnosis.
- Mean %-of-BMI95 was 102.5%.
- Weight gain (Δ%-of-BMI95 > 0) observed at 3 and 6 months (1.5% and 2.2% increase, respectively), particularly in non-ICU patients. Longer hospital stay predicted weight gain, while higher initial %-of-BMI95 in the ICU predicted BMI decrease.
Conclusions:
- BMI generally increases following pediatric VTE, with exceptions for patients admitted to the ICU.
- Weight-based counseling and lifestyle modifications are potential interventions for post-VTE management.
- Further research could explore targeted interventions to mitigate weight gain.
Background:
We hypothesized that acute pediatric venous thromboembolism (VTE) is associated with an increase in body mass index (BMI) over time. We posited that if children gain weight following VTE, targeted interventions may be advised clinically or tested in future studies.
Objectives:
The objectives of our study were to investigate BMI changes from VTE diagnosis to 3 and 6 months after diagnosis, identify predictors, and calculate the prevalence of overweight and obesity.
Methods:
: In this prospective cohort study, we followed 63 participants (mean age, 12.8 years [SD, 5]) for 6 months following first episode of acute VTE. We chose percentage of BMI95 (%-of-BMI95) instead of absolute BMI as a measure of weight to standardize across sex and age and used change in %-of-BMI95 as a measure of weight change. Δ%-of-BMI95 was the primary outcome measure documenting change over time, categorized as increased if Δ%-of-BMI95 was >0, unchanged if Δ%-of-BMI95 was 0, and decreased if Δ%-of-BMI95 was <0. To assess BMI changes, we created a prespecified subgroup of participants who required intensive care unit (ICU) vs those who did not.
Results:
Sixty-two percent of participants were overweight/obese at diagnosis. Mean %-of-BMI95 was 102.5% (95% CI, 95-109). The Δ%-of-BMI95 at 3 and 6 months after diagnosis was, 1.5 (95% CI, -0.8 to 3.6) and 2.2 (95% CI, -0.6 to 5.2), respectively. We identified 3 predictors of weight change: non-ICU stay and longer length of stay predicted weight gain, whereas a higher %-of-BMI95 at diagnosis in the ICU cohort correlated with decreased BMI.
Conclusion:
BMI increases following pediatric VTE except those in the ICU. Weight-based counseling and lifestyle changes represent potential targeted interventions after VTE.
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