AbstractA 41 year‐old female with a medical history of Turner syndrome underwent a chest computed tomography (CT) scan which revealed a varicose left pulmonary vein and an endobronchial tumor of the left lower lobe. As venous drainage of each lobe seemed to be respected, surgical resection was considered. During surgical exploration, the absence of fissure and a unique venous trunk was observed. Surgical resection was aborted as only pneumonectomy was possible in this context. Endobronchial resection was performed. To better understand this particular anatomy, a three‐dimensional (3D) reconstruction was performed a posteriori. This technique is already commonly used in the preoperative planning of pulmonary segmentectomy. Here, we have shown its interest in a lung malformative context.
Background: Pectus arcuatum is often mistaken for a type of pectus carinatum. However, pectus arcuatum is a unique clinical form of pectus caused by premature obliteration of the sternal sutures (manubrial sternum, four sternebrae and xiphoid process), whereas pectus carinatum is due to abnormal growth of the costal cartilage. In order to better describe pectus arcuatum, we analysed the files of patients with pectus arcuatum followed in our centers. Methods: Multicenter retrospective study of young patients' files diagnosed with pectus arcuatum. Results: The clinical diagnosis of pectus arcuatum was made in 34 patients with a mean age at diagnosis of 10.3 years (4-23 years). A chest profile X-ray or a CT scan was performed in 16 patients (47%) and confirmed the diagnosis of PA by the presence of a sternal fusion. It was complete in 12 patients. A malformationwas associated in 35% of cases (Noonan syndrome 33%, scoliosis 25% or cardiopathy 16%). 11 patients (32%) had a family history of skeletal malformation. Orthopedic treatment was initiated in 3 patients without any success. 11 patients underwent surgical correction, which was completed in 7 of them. Conclusion: The diagnosis of pectus arcuatum is based on clinical experience and if necessary, on a profile chest X-ray showing the fusion of the sternal pieces. It implies the search for any associated malformations (musculoskeletal, cardiac, syndromic). Bracing treatment is useless for pectus arcuatum. Corrective surgery, based on a sternotomy associated with a partial chondro-costal resection, can be performed at the end of growth. Level of Evidence: IV. (c) 2023 Elsevier Inc. All rights reserved.
Background: Surgical rib fixation for multiple rib fractures and flail chest has become more common in the 2000s with interesting results in selected patients. However, surgical rib fixation lacks a consensus on the delay to surgery and the benefits on postoperative clinical outcomes. Our goal was to determine if delay to surgery can affect postoperative outcomes. Methods: We analyzed a retrospective database including all consecutive patients referred for surgical rib fixation. All outcomes were explored according to trauma mechanism, associated lesions, initial ventilatory status, delay to surgery, surgical technique and a specific focus was made towards post-operative care and pulmonary complications. Logistic regressions were performed to evaluate the association between delay to surgery [before 48 hours (early group), 48 hours to 7 days (mid group), more than 7 days (late group)] and pneumonia and failure of extubating. Results: From 2010 to 2020, 159 patients underwent surgical rib fixation. The median hospital length of stay was 18 days (interquartile range, 13–30 days). Pulmonary infections were encountered in 67 patients (42.2%) with about two third of early pneumonia (<5 days). The one-month mortality rate was 1.9%. Delay to surgery was not associated with either pneumonia (P>0.05) or failure of extubating (P>0.05). Conclusions: Surgical rib fixation can be delayed without increasing the risk of pulmonary complications. Stabilizing other clinical situations can be safely prioritized if needed. A global evaluation including characteristics of trauma and lung evaluation must be considered before surgical stabilization of rib fracture.
Introduction: Stage IVa thymoma is a rare disease without a standard of care. Subtotal pleurectomy and HITHOC introduced in highly selected patients may provide interesting oncologic results. The purpose of this study was to distinguish de novo stage IVa tumors (DNT) from distant relapse (DR) with respect to post-operative and long-term outcomes to provide the procedure efficacy. Methods: From July 1997–December 2021, 40 patients with IVa pleural involvement were retrospectively analyzed. The surgical procedure was subtotal pleurectomy and HITHOC (cisplatin 50 mg/m2, mitomycin 25 mg/m2, 42 °C, 90 min). The post-operative outcome, disease-free interval (DFI) and overall survival (OS) were analyzed. Results: Mean age was 52 ± 12 years. B2 and B3 thymomas were preponderant (27; 67.5%). The median number of pleural nodes were nine (4–81) vs. five (1–36); p = 0.004 * in DNT and DR, respectively. Hospital mortality rate was 2.5%. There were four specific HITHOC complications (10%). DFI were 49 and 85 months (p = 0.02 *), OS were 94 and 118 months (NS), in DNT and DR, respectively. Conclusions: Subtotal pleurectomy with HITHOC in IVa offers satisfying results in highly selected patients, for both DNT and DR. Due to the disease rarity, multicentric studies are needed to define HITHOC as a standard of care.
Persistent left superior vena cava is the most common congenital anomaly of the thoracic venous system. In most cases, the left vena cava drains into the coronary sinus and remains asymptomatic. When draining in the left atrium, paradoxical embolization could be a severe complication of the right-to-left shunt and is an indication for surgery. We describe the thoracoscopic approach for ligation of a persistent left superior vena cava in a 9 years old girl with VACTERL association and a history of stroke. Bilateral superior vena cava connected by a bridging vein allowed simple ligature of the abnormal systemic venous return.
Minimally invasive sublobar anatomical resection is becoming more and more popular to manage early lung lesions. Robotic-assisted thoracic surgery (RATS) is unique in comparison with other minimally invasive techniques. Indeed, RATS is able to better integrate multiple streams of information including advanced imaging techniques, in an immersive experience at the level of the robotic console. Our aim was to describe three-dimensional (3D) imaging throughout the surgical procedure from preoperative planning to intraoperative assistance and complementary investigations such as radial endobronchial ultrasound (R-EBUS) and virtual bronchoscopy for pleural dye marking. All cases were operated using the DaVinci SystemTM. Modelisation was provided by Visible Patient™ (Strasbourg, France). Image integration in the operative field was achieved using the Tile Pro multi display input of the DaVinci console. Our experience was based on 114 robotic segmentectomies performed between January 2012 and October 2017. The clinical value of 3D imaging integration was evaluated in 2014 in a pilot study. Progressively, we have reached the conclusion that the use of such an anatomic model improves the safety and reliability of procedures. The multimodal system including 3D imaging has been used in more than 40 patients so far and demonstrated a perfect operative anatomic accuracy. Currently, we are developing an original virtual reality experience by exploring 3D imaging models at the robotic console level. The act of operating is being transformed and the surgeon now oversees a complex system that improves decision making.
Compared to other bronchopulmonary cancers, carcinoid tumors represent a rare occurrence. Depending on the intrabronchial localization, the surgical treatment options range from a limited lung-sparing anatomical resection to a major pulmonary resection. This is the case of a 64-year-old male who presented with a hemoptoic cough. The CT scan found an intrabronchial mass. Bronchoscopy showed an uneasy intrabronchial localization, extending at the level of the intermediate bronchus right up to the S6 bronchus. The decision was made to perform a primary lower bilobectomy.