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1.
Zentralbl Chir ; 2022 Jun 22.
Artigo em Alemão | MEDLINE | ID: mdl-35732185

RESUMO

In modern perioperative care concepts, multimodal ERAS (Enhanced Recovery After Surgery) is a multimodal perioperative treatment concept for improving postoperative recovery of surgical patients after an operation. This is managed by the so-called ERAS Society and through which hospitals can also be officially certified. The focus of the ERAS concept is on uniform patient care from admission to discharge, with the aim of improving perioperative processes by implementing evidence-based protocols involving a multidisciplinary treatment team. In 2019, ERAS guidelines were published for the first time by the European Society of Thoracic Surgery (ESTS), in cooperation with the ERAS Society, for specific lung resection procedures, and these identified a total of 45 graduated recommendations or Enhanced Recovery Pathways (ERP). The implementation of ERAS concepts in thoracic surgery (ERATS = Enhanced Recovery After Thoracic Surgery) is intended to establish standardised perioperative procedures based on study results and/or expert recommendations. These recommendations take into account organisational aspects as well as thoracic surgical and anaesthesiological procedures, with the overriding goal of creating a structured treatment plan tailored to the patient. All these measures should result in a multimodal overall concept, which should primarily lead to an improved outcome after elective thoracic surgery and secondarily to shorter hospital stays with correspondingly lower costs.This review article describes basic ERAS principles and provides a compact presentation of the most important European ERAS recommendations from the authors' point of view, together with typical obstacles to the implementation of the corresponding ERATS program in German thoracic surgery.

2.
Cancers (Basel) ; 15(15)2023 Jul 29.
Artigo em Inglês | MEDLINE | ID: mdl-37568670

RESUMO

BACKGROUND: The intraoperative detection of solitary pulmonary nodules (SPNs) continues to be a major challenge, especially in minimally invasive video-assisted thoracic surgery (VATS). The location, size, and intraoperative frozen section result of SPNs are decisive regarding the extent of lung resection. This feasibility study investigates the technical applicability of intraoperative contrast-enhanced ultrasonography (Io-CEUS) in minimally invasive thoracic surgery. METHODS: In this prospective, monocentric clinical feasibility study, n = 30 patients who underwent Io-CEUS during elective minimally invasive lung resection for SPNs between October 2021 and February 2023. The primary endpoint was the technical feasibility of Io-CEUS during VATS. Secondary endpoints were defined as the detection and characterization of SPNs. RESULTS: In all patients (female, n = 13; mean age, 63 ± 8.6 years) Io-CEUS could be performed without problems during VATS. All SPNs were detected by Io-CEUS (100%). SPNs had a mean size of 2.2 cm (0.5-4.5 cm) and a mean distance to the lung surface of 2.0 cm (0-6.4 cm). B-mode, colour-coded Doppler sonography, and contrast-enhanced ultrasound were used to characterize all tumours intraoperatively. Significant differences were found, especially in vascularization as well as in contrast agent behaviour, depending on the tumour entity. After successful lung resection, a pathologic examination confirmed the presence of lung carcinomas (n = 17), lung metastases (n = 10), and benign lung tumours (n = 3). CONCLUSIONS: The technical feasibility of Io-CEUS was confirmed in VATS before resection regarding the detection of suspicious SPNs. In particular, the use of Doppler sonography and contrast agent kinetics revealed intraoperative specific aspects depending on the tumour entity. Further studies on Io-CEUS and the application of an endoscopic probe for VATS will follow.

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