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A Porcine Model of Acute Autologous Pulmonary Embolism
Published on: September 6, 2024
Case report: Subjective loss of performance after pulmonary embolism in an athlete- beyond normal values
Daniel Dumitrescu1, Felix Gerhardt2, Thomas Viethen3
1Klinik III für Innere Medizin, Herzzentrum der Universität zu Köln, Kerpener Str. 62, 50937, Köln, Germany. daniel.dumitrescu@uk-koeln.de.
Insights
Chronic thromboembolic disease (CTED) can significantly impact exercise capacity even without pulmonary hypertension. Pulmonary endarterectomy (PEA) improved exercise performance in a highly trained athlete with CTED and normal resting hemodynamics.
Area of Science:
- Cardiology
- Pulmonology
- Sports Medicine
Background:
- Chronic thromboembolic disease (CTED) presents diagnostic challenges, particularly in elite athletes.
- Pulmonary endarterectomy (PEA) is recommended for operable chronic thromboembolic pulmonary hypertension (CTEPH).
- Management of CTED without pulmonary hypertension (PH) is complex, especially in high-performing individuals.
Observation:
- A 43-year-old male athlete with progressive exercise limitation post-pulmonary embolism presented with normal resting pulmonary hemodynamics.
- Diagnostic imaging revealed significant thromboembolic material, yet peak oxygen uptake exceeded predicted values.
- Exercise ventilatory efficiency was notably abnormal compared to a matched athlete.
Findings:
- Pulmonary endarterectomy (PEA) in this athlete with CTED and normal resting hemodynamics led to profound improvements.
- Maximal exercise capacity and ventilatory efficiency significantly improved post-surgery.
- Subjective exercise tolerance returned to normal levels after PEA.
Implications:
- Significant CTED can exist without resting pulmonary hemodynamic abnormalities.
- Normal maximal exercise capacity in highly trained individuals does not rule out pulmonary vascular disease.
- Shared decision-making and cardiopulmonary exercise testing are crucial for evaluating PEA in CTED patients with normal hemodynamics.
Background:
Chronic thromboembolic pulmonary hypertension (CTEPH) is a progressive disease. For patients with operable CTEPH, there is a clear recommendation for surgical removal of persistent thrombi by pulmonary endarterectomy (PEA). However, without the presence of PH, therapeutic management of chronic thromboembolic disease (CTED) is challenging - especially in highly trained subjects exceeding predicted values of maximal exercise capacity.
Case Presentation:
A 43-year-old male athlete reported with progressive exercise limitation since 8 months. Six months earlier, pulmonary embolism had occurred, and was treated since with oral anticoagulation. A pulmonary ventilation/perfusion scan showed severe ventilation/perfusion mismatch: chest CT and pulmonary angiography revealed bilateral wall-adherent thrombotic material, but pulmonary hemodynamics were completely normal. His peak oxygen uptake exceeded predicted values, however exercise ventilatory efficiency was abnormal, compared to a matching athlete. After thoroughly discussing therapeutic options with the patient, he successfully underwent pulmonary endarterectomy at an expert center. Five and twelve months after surgery, his maximal exercise capacity and ventilatory efficiency profoundly improved beyond preoperative values, and his subjective exercise tolerance had returned to normal.
Conclusions:
Significant CTED may be present without relevant pathologic changes in pulmonary hemodynamics at rest. Reaching normal values of maximal exercise capacity does not exclude pulmonary vascular disease in highly trained subjects. More data are needed to evaluate the risk-/benefit ratio of PEA in patients with CTED and normal pulmonary hemodynamics. A thorough discussion with the patient as well as shared decision making regarding therapy are mandatory. Cardiopulmonary exercise testing may add important clinical information in the non-invasive diagnostic evaluation at baseline and during follow-up.
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Pneumothorax-I
Pneumothorax can be even further classified as spontaneous, traumatic, and tension pneumothorax.
Pneumothorax-II
Clinical Manifestations:
Flail Chest-II
Assessment:
1. Clinical Evaluation:
History:

