Related Experiment Video
Updated: Aug 22, 2026

The MODS method for diagnosis of tuberculosis and multidrug resistant tuberculosis
Published on: August 11, 2008
Development of an early auxiliary diagnostic model for disseminated tuberculosis in HIV-negative tuberculosis
Yicheng Guo1, Xingyu Liu2, Chen Yang1
1Department of Tuberculosis, The School of Public Health of Nanjing Medical University, The Second Hospital of Nanjing, Nanjing, China.
Background:
Disseminated tuberculosis (DI-TB) can induce multiple organ dysfunction syndrome and carries a high mortality rate. This study aimed to establish an early-warning diagnostic model to facilitate the identification of DI-TB high-risk patients and improve clinical prognosis.
Methods:
We retrospectively enrolled 1,122 HIV-negative hospitalized patients with disseminated tuberculosis (DI-TB) or pulmonary tuberculosis (PTB) admitted to Nanjing Second Hospital. Using conventional laboratory tests and multidimensional lymphocyte subset analysis, a diagnostic model was constructed employing machine learning algorithms. Feature importance analysis was performed using the Shapley Additive Explanations (SHAP) framework.
Results:
We screened nine significant features for model development. The XGB model demonstrated favorable diagnostic performance in the internal test set, achieving an AUC of 0.983, a Brier score of 0.025, an accuracy of 0.949, sensitivity of 0.914, specificity of 0.961, F1-score of 0.897, MCC of 0.864, NPV of 0.972, and PPV of 0.881. The SHAP interpretability system ranked features by importance, illustrating their positive or negative contributions to XGB predictions and explaining how individual features influenced model outputs.
Conclusion:
This study developed and internally evaluated a machine learning-enabled auxiliary risk-stratification model for identifying dissemination risk among HIV-negative hospitalized TB patients. The XGB model showed favorable internal performance and may provide a potential auxiliary tool for early DI-TB risk assessment, but prospective external validation is still required before routine clinical application.
Related Concept Videos
Pulmonary Tuberculosis IV
Several diagnostic approaches are used to detect TB. The conventional method is the Tuberculin Skin Test (TST), also known as the Mantoux test. However, this method has...
Pulmonary Tuberculosis V
Latent tuberculosis infection occurs when TB bacteria are present in a person's body, but are not causing illness or symptoms. It is not contagious, and preventive treatment is crucial to avoid the progression...
Pulmonary Tuberculosis I
Causative Organism
The primary infectious agent causing tuberculosis is Mycobacterium tuberculosis, a slow-growing, acid-fast, aerobic rod that exhibits sensitivity to heat and ultraviolet light. Instances of Mycobacterium bovis and Mycobacterium avium contributing to the development of TB infection are rare.
Mode of...
Pulmonary Tuberculosis III
The first classification is based on the development of the disease, and it includes the following categories:
Pulmonary Tuberculosis II
Here is a detailed explanation of its pathophysiology:
Transmission: The process begins when a person inhales droplet nuclei containing M. tuberculosis. These are typically released into the air when an individual with pulmonary or...
