Biography and Research Information
OverviewAI-generated summary
Madison P. Lee's research focuses on the application of tumor organoid modeling and comparative transcriptomics to develop precision medicine strategies for glioblastoma. Lee's work investigates the use of patient-derived organoids from biobanked samples as models for studying glioblastoma invasion and treatment responses. This approach aims to identify personalized therapeutic options for patients with this aggressive brain tumor. Collaborations include work with Analiz Rodriguez at the University of Arkansas for Fayetteville, and with colleagues at the University of Arkansas for Medical Sciences such as Annick De Loose, Murat Gökden, and Emilie Darrigues. Lee has a h-index of 4 with 4 total publications and 71 total citations.
Metrics
- h-index: 4
- Publications: 4
- Citations: 72
Selected Publications
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A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma (2021)
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Genomic and Transcriptomic Profiling of Brain Metastases (2021)
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Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion (2021)
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Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon (2021)
Collaboration Network
Top Collaborators
- A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Genomic and Transcriptomic Profiling of Brain Metastases
- A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Genomic and Transcriptomic Profiling of Brain Metastases
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Genomic and Transcriptomic Profiling of Brain Metastases
- A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Genomic and Transcriptomic Profiling of Brain Metastases
- A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- A Functional Precision Medicine Pipeline Combines Comparative Transcriptomics and Tumor Organoid Modeling to Identify Bespoke Treatment Strategies for Glioblastoma
- Genomic and Transcriptomic Profiling of Brain Metastases
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Brain Tumor Biobank Development for Precision Medicine: Role of the Neurosurgeon
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
- Biobanked Glioblastoma Patient-Derived Organoids as a Precision Medicine Model to Study Inhibition of Invasion
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