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Researchers develop automated MRI system to strengthen stroke treatment studies

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Researchers develop automated MRI system to strengthen stroke treatment studies

Researchers develop automated MRI system to strengthen stroke treatment studies. Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments.

O que aconteceu

Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments.

By reducing variability among thousands of preclinical research scans from different sources, the automated system has the potential to improve the early-stage evaluation of new therapies.

Por que importa

A pauta interessa a quem acompanha Fitness porque altera expectativas e decisões práticas.

Consequência prática

Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

By reducing variability among thousands of preclinical research scans from different sources, the automated system has the potential to improve the early-stage evaluation of new therapies. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

By reducing variability among thousands of preclinical research scans from different sources, the automated system has the potential to improve the early-stage evaluation of new therapies. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Researchers from the Mark and Mary Stevens Neuroimaging and Informatics Institute (Stevens INI) at the Keck School of Medicine of USC have developed an automated system that uses MRI to measure brain tissue changes in animal models for large, multicenter studies of experimental stroke treatments. o movimento reforça a leitura de que decisões em Fitness precisam ser acompanhadas com atenção aos dados e ao desfecho concreto.

Artigo originalmente publicado em medicalxpress.com
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