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Thoracic Neoplasm clinical trials

View clinical trials related to Thoracic Neoplasm.

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NCT ID: NCT03903991 Completed - Anesthesia Clinical Trials

Evaluation of the Reliability of Oesophageal Temperature in THOracic Surgery

ThoTem
Start date: July 18, 2019
Phase:
Study type: Observational

Controlling hypothermia is essential in anesthesia to limit postoperative complications. Temperature monitoring is therefore essential. However, the reliability of esophageal temperature during open chest lung surgery is discussed and not accurately assessed in the literature.

NCT ID: NCT03890640 Completed - Thoracic Neoplasm Clinical Trials

Ultrasound-assisted Thoracic Epidural Catheter Insertion

Start date: July 4, 2019
Phase: N/A
Study type: Interventional

The aim of the present study is to access the success rate of ultrasound-guided thoracic epidural catheter insertion, using fluoroscopy.

NCT ID: NCT03331588 Completed - Clinical trials for Carcinoma, Non-Small-Cell Lung

Comparison of Post-operative Pain and Quality of Life Between Subxiphoid and Intercostal VATS for Lung Cancer

Start date: November 10, 2017
Phase: Phase 3
Study type: Interventional

One-thirds of patients underwent video-assisted thorascopic surgery (VATS) still have severe pain.Uniportal lobectomy or segmentectomies emerged as a promising and exciting approach for minimally invasive thoracic surgery. However, nearly all reported uniportal VATS lobectomies have been performed via the intercostal route, and chest wall trauma has still occurred. Here,the investigators undertook novel uniportal VATS technique involving a subxiphoid route for pulmonary lobectomies or segmentectomies.We would like to evaluate the post-operative pain and quality of life between Subxiphoid and Intercostal VATS for Lung Cancer.

NCT ID: NCT03226925 Completed - Liver Cancer Clinical Trials

Mechanically-assisted Ventilation in the Treatment of Moving Tumours With Photon and Proton Therapies

Start date: June 30, 2017
Phase: N/A
Study type: Interventional

Mechanical ventilation can be used to impose a completely regular pattern of breathing frequency and inflation volume on the patient for as long as required. This would considerably improve the reproducibility of the internal motion parameters, and thus facilitate the implementation of respiratory-synchronized techniques such as gating, tracking and four-digital optimization.

NCT ID: NCT02204761 Completed - Recurrent Disease Clinical Trials

Proton Beam Re-Irradiation in Thoracic Cancers

Start date: September 9, 2014
Phase: N/A
Study type: Interventional

This pilot clinical trial studies proton beam radiation therapy in treating patients with thoracic cancer that has come back and have received prior radiation therapy. Proton beam radiation therapy uses high energy protons to kill tumor cells and may cause less damage to normal tissue.