View clinical trials related to Breast Neoplasms.
Filter by:The primary purpose of the Dose Optimization (Part 1) of this study is to assess the safety and tolerability of BB-1701 and to determine the recommended dose (RD) of BB-1701 for Dose Expansion (Part 2). The primary purpose of Dose Expansion (Part 2) is to assess the antitumor activity of BB-1701 at RD in the selected population(s) of breast cancer (BC).
The overall aim of the project is to investigate how artificial intelligence (AI) can be used to streamline and at the same time increase diagnostic safety in breast cancer screening with mammography. AI has been shown in a number of studies to have great potential for both increasing diagnostic certainty (e.g. reduced occurrence of interval cancers) and at the same time reducing the workload for doctors. However, much research remains to clinically validate these new tools and to increase the understanding of how they affect the work of doctors. The specific goal of the project is to investigate whether the implementation of AI in breast cancer screening in Östergötland, Sweden, can increase the sensitivity (the mammography examination's ability to find breast cancer) and the specificity (that is, the right case is selected for further investigation: a minimum of healthy women are recalled but so many breast cancer cases that are possible are selected for further investigation) and at the same time make screening more efficient through reduced workload. AI will be implemented in the clinical routine and performance metrics such as cancer detection rate etc will be closely monitored. The study do not assign specific interventions to the study participants.
The regional lymph node status is considered to be an important prognostic factor regarding the long-term survival of breast cancer (BC) patients (Cetin IA, et al . 2020). The knowledge of whether lymph nodes are tumor-infiltrated or not is essential since nodal involvement has decisive therapeutic consequences such as axillary lymph node dissection (ALND), axillary radiotherapy, and neoadjuvant or adjuvant systemic chemotherapy (Diessner J et al . 2023). To provide individualized therapeutic options and optimized therapy.
The aim of this study is to assess the clinical outcomes in real-life setting of early breast cancer RH+ HER2- patients with systemic therapy guided by Oncotype DX (ODX) Breast Recurrence Score®.
The purpose of this study is to compare any good and bad effects of giving radiation treatment for breast cancer in 3 treatments over about 2 days.
To evaluate the effects of aromatase inhibitors on lower extremity ultrasonographic measurements, static and dynamic balance scores in breast cancer patients using aromatase inhibitors
Implementation of awareness-based stress reduction program in breast cancer patients receiving chemotherapy and examining its effects on psychological resilience, symptom management and quality of life.
Pear Bio has developed an organ-on-a-chip device together with a computer vision pipeline through which the response of an individual patient's tumor to different systemic therapy regimens can be tested simultaneously ex vivo. This study will recruit patients with advanced or metastatic triple negative breast cancer who are due to start a clinically-indicated new line of therapy. The oncologist will be blinded to the response on the Pear Bio tool (the assay will be run in parallel with the patient's treatment). The primary objective of this study is to establish the sensitivity and specificity of Pear Bio's test against patient outcomes (response, progression-free survival, overall survival)
After 1 year, more than 50% experience upper limb (UL) complaints after treatment for breast cancer. These complaints are disabling and cause limitations in daily life and this leads to a decrease in the patient's quality of life. The cause of these UL complaints is complex and multifactorial. Due to breast cancer treatment, the structural (tissue composition and volume) and mechanical (tissue stiffness) properties of the soft tissue may change. These changes can occur in the muscle, skin and surrounding fascia and especially in the soft tissue around the breast and axilla where that treatment is localised. Ultrasound with specific 'add-on' techniques can objectively assess these features and provide a picture of their role in UL function after breast cancer. The first aim in this study is to investigate the reliability and validity of conventional 2D ultrasound for 1) soft tissue composition and 2) soft tissue thickness at the level of the breast and upper limb. The reliability and validity of shear wave elastography, a specific complement to conventional 2D ultrasound, to assess tissue stiffness will also be examined.
The purpose of this study is to evaluate the efficacy and safety of Disitamab Vedotin in combination with Pertuzumab with or without Toripalimab neoadjuvant therapy in patients with HER2-positive breast cancer.