A. M. Gassel
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Also affiliated: University of Würzburg (1994–2004); University of Arkansas Medical Center (2026); Hochschule für Angewandte Wissenschaften Kiel (1989); Christian-Albrechts-Universität zu Kiel (1989–1991); Evangelisches Krankenhaus Oberhausen (2008); Universitätsklinikum Würzburg (1998); Chirurgische Universitätsklinik Heidelberg (1996)
Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
A. M. Gassel's research has focused on prognostic markers in various cancers and medical conditions. Publications include work on the predictive value of galactographic patterns for breast neoplasms, the use of lamivudine for preventing hepatitis B flare-ups during chemotherapy, and heat-shock proteins as prognostic markers in node-negative breast cancer. Additional research areas include the association of heat shock protein 27 with decreased survival in breast cancer patients, neurofibromatosis presenting as systemic vasculopathy, and the utility of microcalcifications on mammography for predicting malignancy grade in ductal carcinoma in situ. Gassel has also investigated proliferation index as a prognosticator for endometrial carcinoma and the coexistence of renal cell carcinoma with pituitary adenoma. With an h-index of 14 and 678 total citations across 45 publications, Gassel has collaborated with researchers such as Maegan Calvert, Tatiana Wolfe, Lee Isaac, and Clint Kilts at the University of Arkansas for Medical Sciences.
Metrics
- h-index: 14
- Publications: 45
- Citations: 678
Selected Publications
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Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain (2026)
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Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain (2024)
Collaboration Network
Top Collaborators
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
- Population-Level Age Effects on the White Matter Structure Subserving Cognitive Flexibility in the Human Brain
- Population-level age effects on the white matter structure subserving cognitive flexibility in the human brain
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