A continuación se enumeran ensayos clínicos actuales.
Filtrar esta lista de estudios según la ubicación, el estado del estudio y más.
Rochester, Minn.
The purpose of this study is to analyze genome-wide methylation patterns in DNA from patients with suspected hereditary disorders but for whom all previous genetic testing has been negative and/or equivocal.
Scottsdale/Phoenix, Ariz.
The purpose of this study is:
The purpose of this study is to evaluate the new QFT-Plus assay compared to the QFT-Gold assay and the tuberculin skin test results (as available) for the detection of tuberculosis without symptoms in high-risk patients.
Rochester, Minn., Jacksonville, Fla.
The aim of this study is to develop and bank organoids for collaborative use in subsequent etiological, biomarker and chemoprevention studies that will culminate in launching chemoprevention trials at Mayo.
The purpose of this research protocol is to systematically investigate the optimal conditions for isolating and culturing (referred to as manufacturing) of mononuclear cells (MNCs) from healthy volunteers collected via apheresis.
The purpose of this study is to monitor and better understand the health issues of people with bleeding disorders.
The purpose of this study is to study the structure and biochemistry of the brain and/or bodily fluid and tissue after death. Comparison of specimens from normal and diseased individuals provide essential clues that lead to a greater understanding of the diseased state which, in turn, will lead to new ideas for therapy.
This project will investigate whether the analysis of nucleic acids circulating in the blood from tumors can allow real-time monitoring of treatment response to targeted therapy and immunotherapy for patients who have stage IV metastatic melanoma.
The purpose of this study is to compare avian tendon healing spatial biology findings to human intrasynovial tendon tissue spatial gene expression. By correlating findings from our avian tendon repair model to human spatial gene expression findings, a comprehensive spatial molecular atlas or map of the zone II/intrasynovial tendon fibrotic niche could be synthesized. Additionally, by validating the biochemical findings in our avian model, we could further establish this preclinical model as a clinically relevant platform for investigating novel therapeutics to enhance intrinsic healing and mitigate peritendinous adhesions formation following zone II tendon injury.
The purpose of this study is to validate the use of ex-vivo confocal microscopy for the assessment of skin specimens derived from Mohs surgery compared to standard microscopy. To leverage deep learning models for classification, detection, and localization of tumor for extramammary Paget’s disease on ex-vivo confocal microscopy images. To leverage AI/ML to ex-vivo confocal microscopy imaging to facilitate microscopic-level imaging of extramammary Paget’s disease. To leverage deep learning models for classification, detection, and localization of tumor for extramammary Paget’s disease on frozen and permanent pathology WSIs.
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