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Optimizing clinical performance and geometrical robustness of a new electrode device for intracranial tumor electroporation
Faisal Mahmood,
Julie Gehl
Teaching
36
Citations (Scopus)
Overview
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Dive into the research topics of 'Optimizing clinical performance and geometrical robustness of a new electrode device for intracranial tumor electroporation'. Together they form a unique fingerprint.
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Chemical Compounds
Antineoplastic Agent
11%
Behavior as Electrode
31%
Compliance
30%
Displacement
10%
Electroporation
87%
Intracranial
100%
Reaction Yield
10%
Engineering & Materials Science
Compliance
21%
Electrodes
47%
Electroporation
98%
Genes
11%
Geometry
7%
Oncology
16%
Radiation
9%
Tumors
63%
Medicine & Life Sciences
Antineoplastic Agents
12%
Electrodes
53%
Electroporation
74%
Equipment and Supplies
37%
Genes
5%
Neoplasms
20%
Radiation Oncology
15%
Technology
8%
Physics & Astronomy
configurations
6%
deviation
8%
drugs
12%
electrodes
38%
genes
14%
geometry
6%
performance
27%
prototypes
19%
radiation
6%
tumors
59%