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Published on: September 22, 2020
Seasonal variation in U.S. hospitalizations for chronic limb-threatening ischemia
S Elissa Altin1,2, Yeunjung G Kim1, Herbert D Aronow3
1Division of Cardiology, Yale University, New Haven, Connecticut.
Insights
Critical limb-threatening ischemia (CLTI) hospitalizations and mortality show significant seasonal variation, peaking in spring and winter, respectively. Amputation rates, however, remained consistent across seasons for most patients.
Area of Science:
- Vascular Surgery
- Public Health
- Epidemiology
Background:
- Seasonal patterns are known for coronary artery disease but not for critical limb-threatening ischemia (CLTI).
- Understanding seasonal trends in CLTI hospital admissions and outcomes is crucial for patient risk stratification and management.
Purpose of the Study:
- To investigate seasonal variations in hospital admission incidence for CLTI.
- To analyze seasonal trends in mortality and amputation rates associated with CLTI.
Main Methods:
- Utilized the National Inpatient Sample (NIS) from 2012-2015, identifying over 1.2 million CLTI hospitalizations.
- Analyzed seasonal hospitalization incidence, in-hospital mortality, and major/minor amputation rates.
- Stratified outcomes by diabetic status to identify differential seasonal effects.
Main Results:
- Spring saw the highest CLTI admission rates (28.3%), while fall had the lowest (19.1%).
- In-hospital mortality was highest in winter (aOR 1.08), coinciding with peak influenza season.
- Amputation rates showed no overall seasonal variation, but non-diabetic patients had higher amputation odds in spring (aOR 1.07).
Conclusions:
- CLTI exhibits significant seasonal variability in admissions and mortality, but not in amputation rates.
- Seasonal awareness can aid in identifying high-risk individuals for CLTI hospitalization and death.
- Targeted patient and provider education may mitigate seasonal risks for CLTI outcomes.
Background:
Seasonal variation in coronary artery disease is well described, with a peak in the winter and a trough in the summer. However, little is known about seasonal trends in hospital admission for critical limb-threatening ischemia (CLTI) and associated outcomes.
Methods:
Patients admitted with CLTI from January 1, 2012 through August 31, 2015 were identified in the Healthcare Cost and Utilization Project's National Inpatient Sample based upon administrative claims diagnosis codes. The primary outcome was seasonal hospitalization incidence, and secondary outcomes included mortality rates and rates of in-hospital major and minor amputations among nondiabetics and diabetics.
Results:
Of 1,276,745 hospitalizations for CLTI during the study period, 28.3% occurred in the spring, the peak admission season, and 19.1% occurred in the fall, the nadir. In-hospital mortality was highest during the winter (adjusted odds ratio [OR]: 1.08; 95% confidence interval [CI]: 1.03-1.14), and followed the highest seasonal rates of influenza in the fall; however, other important comorbidities did not differ significantly by season. For the overall cohort, there was no significant seasonal variation in rates of major or minor amputation, although seasonal rates were different according to diabetic status. Patients without diabetes had the highest odds of amputation in the spring (OR 1.07; 95% CI: 1.02-1.12), although this trend was not identified among patients with diabetes.
Conclusions:
There is significant seasonal variability in CLTI admissions and mortality but minimal variability in amputation rates. Understanding the seasonal variation in CLTI may help to identify individuals at greatest risk for hospitalization and death through patient and provider education efforts.
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