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1.
J Spec Oper Med ; 23(2): 78-81, 2023 Jun 23.
Article in English | MEDLINE | ID: mdl-36951634

ABSTRACT

Operation Gunpowder is a high-fidelity military medical field practicum conducted by the Uniformed Services University of Health Sciences, Bethesda, MD. During this multi-day combat simulation, Special Operations Medics and Corpsmen teach military medical students how to treat patients in an austere, resource-limited environment. To investigate the effectiveness of this teaching model, our research team used a qualitative phenomenological design to explore medical students' experiences being taught by Special Operations Medics and Corpsmen during Operation Gunpowder. We found two themes regarding the medical students' personal and professional development: an increased understanding of medics' skills and capabilities and the realization of their future roles as educators and leaders. Our study suggests that the use of Special Operations Corpsmen and Medics in medical student training is a valuable model for both military and civilian medical education and training.


Subject(s)
Military Personnel , Students, Medical , Humans , Military Personnel/education , Qualitative Research
2.
Ann Am Thorac Soc ; 20(7): 969-975, 2023 07.
Article in English | MEDLINE | ID: mdl-36763964

ABSTRACT

Rationale: In 2017, an American Thoracic Society/European Respiratory Society Task Force report recommended further research on the effects that body mass index (BMI) has on diffusing capacity of the lung for carbon monoxide (DlCO), the transfer coefficient (Kco), and the alveolar volume (VA). Objectives: Our goals were to 1) quantify the magnitude and direction of change to measured and predicted DlCO values as BMI increases in patients free of cardiopulmonary disease and 2) identify how BMI and obesity-related changes differ by reference set. Methods: Using data from a prospective cohort study of service members free of cardiopulmonary disease, we modeled the effect that BMI has on measured values of DlCO, Kco, and VA, after adjusting for age, sex, hemoglobin (Hgb), and height. We then referenced DlCO, Kco, and VA to normal values using four different reference equations. Results: There were 380 patients with data available for analysis, and 130 had a BMI ⩾ 30 kg/m2 (87.7% class I obesity). After controlling for age, sex, Hgb, and height, increased BMI was significantly associated with Kco (ß = 0.09, P < 0.01) and VA (ß = -0.15, P < 0.01) but not DlCO. After adjustment for Hgb, for every 5-kg/m2 increase in BMI, the mean increase in percent predicted (PPD) values ranged from 4.2% to 6.5% and from 5.0% to 7.5% for DlCO and Kco, respectively; and the mean decrease in VA PPD was 3.2-4.0%. In the presence of obesity (BMI ⩾ 30 kg/m2), the prevalence of DlCO and Kco abnormalities dropped by 4.1-12.1% and 0.4-16.3%, respectively, across equations, whereas VA abnormalities increased from 7.7% to 9.9%. Eliminating 163 patients with abnormal trans-thoracic echocardiogram (TEE), high-resolution computed tomographic (HRCT) scan, or Hgb altered the magnitude of relationships, but significance was preserved. Conclusions: In an otherwise healthy population with predominantly class I obesity and normal TTE, HRCT scan, and Hgb, we found that Kco and VA were more affected by BMI than DlCO. Increases in PPD values varied across equations and were modest but significant and could change clinical decision making by reducing sensitivity for detecting gas-exchange abnormalities. BMI and obesity had the smallest effect on Global Lung Function Initiative PPD values.


Subject(s)
Carbon Monoxide , Pulmonary Heart Disease , Humans , Prospective Studies , Pulmonary Diffusing Capacity , Lung/diagnostic imaging , Obesity
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