Literature DB >> 30239258

Lesional and perilesional tissue characterization by automated image processing in a novel gyrencephalic animal model of peracute intracerebral hemorrhage.

Johannes Boltze1,2, Fabienne Ferrara3, Atticus H Hainsworth4, Leslie R Bridges4,5, Marietta Zille1,2,6, Donald Lobsien7, Henryk Barthel8, Damian D McLeod9,10, Felix Gräßer11, Sören Pietsch1, Ann-Kathrin Schatzl12, Antje Y Dreyer12, Björn Nitzsche8,13.   

Abstract

Intracerebral hemorrhage (ICH) is an important stroke subtype, but preclinical research is limited by a lack of translational animal models. Large animal models are useful to comparatively investigate key pathophysiological parameters in human ICH. To (i) establish an acute model of moderate ICH in adult sheep and (ii) an advanced neuroimage processing pipeline for automatic brain tissue and hemorrhagic lesion determination; 14 adult sheep were assigned for stereotactically induced ICH into cerebral white matter under physiological monitoring. Six hours after ICH neuroimaging using 1.5T MRI including structural as well as perfusion and diffusion, weighted imaging was performed before scarification and subsequent neuropathological investigation including immunohistological staining. Controlled, stereotactic application of autologous blood caused a space-occupying intracerebral hematoma of moderate severity, predominantly affecting white matter at 5 h post-injection. Neuroimage post-processing including lesion probability maps enabled automatic quantification of structural alterations including perilesional diffusion and perfusion restrictions. Neuropathological and immunohistological investigation confirmed perilesional vacuolation, axonal damage, and perivascular blood as seen after human ICH. The model and imaging platform reflects key aspects of human ICH and enables future translational research on hematoma expansion/evacuation, white matter changes, hematoma evacuation, and other aspects.

Entities:  

Keywords:  Brain; hemorrhage; large animal; perfusion; segmentation

Mesh:

Year:  2018        PMID: 30239258      PMCID: PMC6893983          DOI: 10.1177/0271678X18802119

Source DB:  PubMed          Journal:  J Cereb Blood Flow Metab        ISSN: 0271-678X            Impact factor:   6.200


  43 in total

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3.  An automated tool for detection of FLAIR-hyperintense white-matter lesions in Multiple Sclerosis.

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10.  Safety and efficacy of minimally invasive surgery plus alteplase in intracerebral haemorrhage evacuation (MISTIE): a randomised, controlled, open-label, phase 2 trial.

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Journal:  Lancet Neurol       Date:  2016-10-11       Impact factor: 44.182

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  8 in total

Review 1.  A Multi-Model Pipeline for Translational Intracerebral Haemorrhage Research.

Authors:  Sarah E Withers; Adrian R Parry-Jones; Stuart M Allan; Paul R Kasher
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2.  Quality and validity of large animal experiments in stroke: A systematic review.

Authors:  Leona Kringe; Emily S Sena; Edith Motschall; Zsanett Bahor; Qianying Wang; Andrea M Herrmann; Christoph Mülling; Stephan Meckel; Johannes Boltze
Journal:  J Cereb Blood Flow Metab       Date:  2020-06-23       Impact factor: 6.200

3.  RAB7L1 Participates in Secondary Brain Injury Induced by Experimental Intracerebral Hemorrhage in Rats.

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4.  Equine Stereotaxtic Population Average Brain Atlas With Neuroanatomic Correlation.

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Review 5.  Mesenchymal Stem Cell Application and Its Therapeutic Mechanisms in Intracerebral Hemorrhage.

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8.  Iron chelation suppresses secondary bleeding after intracerebral hemorrhage in angiotensin II-infused mice.

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