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Updated: Dec 20, 2025

Point-of-Care Lung Ultrasound in Adults: Image Acquisition
Published on: March 3, 2023
Pulmonary and systemic involvement in COVID-19 patients assessed with ultrasound-guided minimally invasive autopsy
Amaro N Duarte-Neto1, Renata A A Monteiro1, Luiz F F da Silva1,2
1BIAS-Brazilian Image Autopsy Study Group, Departamento de Patologia, Faculdade de Medicina da Universidade de São Paulo, São Paulo, Brazil.
Insights
Ultrasound-guided minimally invasive autopsy (MIA-US) reveals COVID-19 is a systemic disease affecting multiple organs. This method is safe and effective for studying severe coronavirus disease 19, highlighting epithelial and vascular injury.
Area of Science:
- Pathology
- Infectious Diseases
- Pulmonology
Background:
- Brazil faces high coronavirus disease 19 (COVID-19) mortality rates.
- Autopsies are crucial for understanding COVID-19 pathophysiology and associated conditions.
- Ultrasound-guided minimally invasive autopsy (MIA-US) offers a safe approach for tissue sampling.
Purpose of the Study:
- To assess the systemic involvement of COVID-19 using MIA-US.
- To evaluate the safety and effectiveness of MIA-US in studying severe COVID-19 cases.
- To identify pathological changes in various organs affected by COVID-19.
Main Methods:
- Ultrasound-guided minimally invasive autopsy (MIA-US) was performed on 10 patients.
- Tissue samples were collected from lungs, liver, heart, kidneys, spleen, brain, skin, skeletal muscle, and testis.
- Histology and reverse transcription polymerase chain reaction (RT-PCR) were used to detect severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) RNA.
Main Results:
- All patients exhibited exudative/proliferative diffuse alveolar damage with cytopathic effects on respiratory epithelium.
- Fibrinous thrombi were found in alveolar arterioles (8/10 patients) and less frequently in other organs.
- Systemic findings included comorbidities, age, sepsis, and potential viral-induced tissue damage (myositis, dermatitis, myocarditis, orchitis).
Conclusions:
- MIA-US is a safe and effective method for studying severe COVID-19.
- COVID-19 is a systemic disease with significant pulmonary and multi-organ involvement.
- Pulmonary changes stem from epithelial injury and microthrombotic vascular phenomena, suggesting therapeutic targets.
Aims:
Brazil ranks high in the number of coronavirus disease 19 (COVID-19) cases and the COVID-19 mortality rate. In this context, autopsies are important to confirm the disease, determine associated conditions, and study the pathophysiology of this novel disease. The aim of this study was to assess the systemic involvement of COVID-19. In order to follow biosafety recommendations, we used ultrasound-guided minimally invasive autopsy (MIA-US), and we present the results of 10 initial autopsies.
Methods And Results:
We used MIA-US for tissue sampling of the lungs, liver, heart, kidneys, spleen, brain, skin, skeletal muscle and testis for histology, and reverse transcription polymerase chain reaction to detect severe acute respiratory syndrome coronavirus 2 RNA. All patients showed exudative/proliferative diffuse alveolar damage. There were intense pleomorphic cytopathic effects on the respiratory epithelium, including airway and alveolar cells. Fibrinous thrombi in alveolar arterioles were present in eight patients, and all patients showed a high density of alveolar megakaryocytes. Small thrombi were less frequently observed in the glomeruli, spleen, heart, dermis, testis, and liver sinusoids. The main systemic findings were associated with comorbidities, age, and sepsis, in addition to possible tissue damage due to the viral infection, such as myositis, dermatitis, myocarditis, and orchitis.
Conclusions:
MIA-US is safe and effective for the study of severe COVID-19. Our findings show that COVID-19 is a systemic disease causing major events in the lungs and with involvement of various organs and tissues. Pulmonary changes result from severe epithelial injury and microthrombotic vascular phenomena. These findings indicate that both epithelial and vascular injury should be addressed in therapeutic approaches.
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