Related Experiment Videos
Forecasting new home oxygen requirements after lung resection: A predictive model
Benjamin Hambright1, Wendelyn M Oslock2,3, Ioannis Liapis2
1University of Alabama-Birmingham School of Medicine, Birmingham, Ala.
Objective:
There are currently no reliable means for accurately predicting which patients will require discharge with supplemental oxygen following lung resection. To address this problem, we endeavored to develop and validate a prediction model and risk nomogram for new home oxygen requirement after lung resection.
Methods:
We performed a retrospective cohort study using an institutional Society of Thoracic Surgeons database. Adult patients who underwent lung resection for any indication from 2013 to 2023 were included. We excluded patients with preoperative home oxygen and missing pulmonary function tests. Bivariate analyses compared characteristics of patients who required home oxygen postdischarge with those who did not. Multivariable logistic regression models were used to identify risk factors for home oxygen, including the creation of a risk nomogram developed and validated via bootstrapping.
Results:
Of 1875 patients, 6.4% had a new home oxygen requirement. Overall, a majority of patients (72%) were older than age 60 years, 54% were women, and 82% were White. Most patients underwent resection for lung cancer (69%). The most commonly performed procedure was a lobectomy (50%), and a minimally invasive approach was utilized in 84%. On multivariable analysis, patients with a new home oxygen requirement were more likely to be obese (adjusted odds ratio [aOR], 2.62; 95% CI, 1.67-4.11), be current smokers (aOR, 2.52; 95% CI, 1.58-3.96), have a preoperative diffusing capacity for carbon monoxide <50% of predicted (aOR, 2.88; 95% CI, 1.65-4.91), and have a preoperative forced expiratory volume in 1 second <50% of predicted (aOR, 2.14; 95% CI, 1.07-4.07).
Conclusions:
In this large retrospective study, we identified 4 primary factors associated with increased odds of home oxygen requirement after lung resection: obesity, current tobacco use, reduced forced expiratory volume in 1 second, and reduced diffusion capacity of carbon monoxide. Prediction modeling may aid in preoperative risk assessment and targeting prehabilitation deployment.
Related Concept Videos
Oxygen Delivering System I: Nasal Cannula and Face Mask
Nasal Cannula
A nasal cannula is a lightweight tube split at one end into two prongs and placed in the nostrils. It is typically used to deliver low to medium levels of oxygen.
Suggested flow rate: The suggested flow rate for a nasal cannula typically ranges between 1 and 6 L/min.
Oxygen percentage setting:...
Respiratory Volumes and Capacities
Oxygen Delivering System II: Venturi Mask and Transtracheal Oxygen
Venturi Mask
The Venturi mask, named after the Venturi effect, is designed to deliver precise oxygen concentrations. It consists of a large tube with an oxygen inlet that narrows down, causing a pressure drop that pulls air in through adjustable side ports. The mask is a lightweight,...
Lung Capacity
Respiratory Volumes and Capacities I
Respiratory Capacities
One key metric is the Inspiratory Capacity (IC), which represents the maximum amount of air that can be inhaled with full effort. IC is calculated by summing the tidal volume and inspiratory reserve volume, typically ranging from 2.4 to 3.6 liters.
The Functional Residual Capacity (FRC) represents the air in the...