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A novel automated morphological analysis of Iba1+ microglia using a deep learning assisted model.
Stetzik, Lucas; Mercado, Gabriela; Smith, Lindsey; George, Sonia; Quansah, Emmanuel; Luda, Katarzyna; Schulz, Emily; Meyerdirk, Lindsay; Lindquist, Allison; Bergsma, Alexis; Jones, Russell G; Brundin, Lena; Henderson, Michael X; Pospisilik, John Andrew; Brundin, Patrik.
Afiliación
  • Stetzik L; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Mercado G; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Smith L; Aiforia Inc, Cambridge Innovation Center, Cambridge, MA, United States.
  • George S; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Quansah E; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Luda K; Department of Metabolism and Nutritional Programming, Van Andel Institute, Grand Rapids, MI, United States.
  • Schulz E; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Meyerdirk L; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Lindquist A; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Bergsma A; Department of Epigenetics, Van Andel Institute, Grand Rapids, MI, United States.
  • Jones RG; Department of Metabolism and Nutritional Programming, Van Andel Institute, Grand Rapids, MI, United States.
  • Brundin L; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Henderson MX; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
  • Pospisilik JA; Department of Epigenetics, Van Andel Institute, Grand Rapids, MI, United States.
  • Brundin P; Parkinson's Disease Center, Department of Neurodegenerative Science, Van Andel Institute, Grand Rapids, MI, United States.
Front Cell Neurosci ; 16: 944875, 2022.
Article en En | MEDLINE | ID: mdl-36187297
ABSTRACT
There is growing evidence for the key role of microglial functional state in brain pathophysiology. Consequently, there is a need for efficient automated methods to measure the morphological changes distinctive of microglia functional states in research settings. Currently, many commonly used automated methods can be subject to sample representation bias, time consuming imaging, specific hardware requirements and difficulty in maintaining an accurate comparison across research environments. To overcome these issues, we use commercially available deep learning tools Aiforia® Cloud (Aifoira Inc., Cambridge, MA, United States) to quantify microglial morphology and cell counts from histopathological slides of Iba1 stained tissue sections. We provide evidence for the effective application of this method across a range of independently collected datasets in mouse models of viral infection and Parkinson's disease. Additionally, we provide a comprehensive workflow with training details and annotation strategies by feature layer that can be used as a guide to generate new models. In addition, all models described in this work are available within the Aiforia® platform for study-specific adaptation and validation.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Cell Neurosci Año: 2022 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Front Cell Neurosci Año: 2022 Tipo del documento: Article País de afiliación: Estados Unidos
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