View clinical trials related to Stage II Lung Cancer AJCC v8.
Filter by:This clinical trial compares the use of a shared decision-making communication tool during a clinical encounter to standard care for improving the quality of the shared decision-making process among patients with non-small cell lung cancer. Lung cancer patients are faced with many decisions about their treatment options. Studies have found that patients are most satisfied if they perceive an effort by their physician to share decision making and are afforded sufficient time to make their decision. Shared decision-making tools can help physicians guide the conversation, offer tailored estimates of the potential benefits, harms, and practical inconveniences of the available options, and support deliberations that take into account patient biological and biographical circumstances, goals, and priorities. Incorporating a shared decision-making communication tool into standard clinical encounters may improve the shared-decision making process as well as patient satisfaction with their treatment choice.
This phase II trial tests the effectiveness and safety of artificial intelligence (AI) to determine dose recommendation during stereotactic body radiation therapy (SBRT) planning in patients with primary lung cancer or tumors that has spread from another primary site to the lung (metastatic). SBRT uses special equipment to position a patient and deliver radiation to tumors with high precision. This method may kill tumor cells with fewer doses over a shorter period and cause less damage to normal tissue. Even with the high precision of SBRT, disease persistence or reappearance (local recurrence) can still occur, which could be attributed to the radiation dose. AI has been used in other areas of healthcare to automate and improve various aspects of medical science. Because the relationship of dose and local recurrence indicates that dose prescriptions matter, decision support systems to help guide dose based on personalized prediction AI algorithms could better assist providers in prescribing the radiation dose of lung stereotactic body radiation therapy treatment.
This clinical trial compares the effect of pulmonary vein-first surgical technique to pulmonary artery-first surgical technique in decreasing circulating tumor cell deoxyribonucleic acid (ctDNA) in patients with stage I-III non-small cell lung cancer. Pulmonary vein first and pulmonary artery first surgical techniques are standard surgical techniques for the division of the blood vessels during lung resection surgery. Pulmonary vein-first surgical technique may reduce the risk of shedding tumor cells during surgery and influence long term overall survival.
This clinical trial investigates the acceptability of electronic cigarettes (JUUL) for smoking cessation (quitting smoking) and the reduction of surgery-related complications in patients with newly diagnosed head, neck, or lung cancer. Smoking before surgery is associated with increased risk of complications during and after surgery. Electronic cigarettes are a type of special product that gives small, steady doses of nicotine to help stop cravings and relieve symptoms that occur when a person is trying to quit smoking. Stopping cigarette smoking before surgery may reduce the risk of complications during and after surgery in patients with head, neck, or lung cancer.
This phase II trial tests whether oral iloprost works in preventing lung cancer (chemoprevention) in former smokers. Oral iloprost has previously been shown to reduce abnormal lung cells in former smokers, suggesting a clinically significant impact on lung cancer risk. The use of oral iloprost may help keep cancer from forming and reduce abnormal cells in the lung in order to lower the risk of developing lung cancer in former smokers.
This phase II trial tests whether subcutaneous atezolizumab can be effectively given at home with medical care provided primarily using telemedicine in patients with non-small cell lung cancer. Immunotherapy with monoclonal antibodies, such as atezolizumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. This study may help determine if a telemedicine based approach that gives atezolizumab at home using a version of the drug designed for subcutaneous injection under the skin is safe and feasible.
This clinical trial studies the effect of a quality of life intervention on decision-making in patients with early-stage lung cancer who are undergoing standard of care surgery or stereotactic body radiation therapy (SBRT). Providing quality of life outcome data to patients deciding between surgery and SBRT may help decrease decision regret and increase patient satisfaction with their care.
This clinical trial develops and tests a model of family caregiver education focused on the role of underserved family caregivers as providers of complex care in the home. Cancer patients have symptoms from their cancer or treatment and are then supported by family caregivers at home with tasks requiring technical skill. Family caregivers are often asked to provide complex care whether it involves decisions about managing symptoms or providing technical care for ports/pumps, tubes, or devices. Family caregivers often are not given enough information on how to provide care for patients at home needing complex care. The results from this study may help researchers refine and improve the intervention for caregivers through future research for caregivers on a much larger scale.
This phase I trial finds out the best dose, possible benefits and/or side effects of papaverine when given together with chemoradiation intreating patients with stage II-III non-small cell lung cancer. Papaverine targets mitochondrial metabolism to decrease the cancer growth process. Giving papaverine with chemoradiation may work best to treat patients with non-small cell lung cancer.
This phase I/II trial studies the side effects of sapanisertib and nivolumab and to see how well they work in treating patients with stage I-IV non-small cell lung cancer whose disease got worse on previous PD-1/PD-L1 inhibitor therapy. Sapanisertib may stop the growth of tumor cells by blocking some of the enzymes needed for cell growth. Immunotherapy with monoclonal antibodies, such as nivolumab, may help the body's immune system attack the cancer, and may interfere with the ability of tumor cells to grow and spread. Giving sapanisertib and nivolumab may help to control the disease.