Microvessels may Confound the "Swallow Tail Sign" in Normal Aged Midbrains: A Postmortem 7 T SW-MRI Study.

Thomas Kau, Simon Hametner, Verena Endmayr, Andreas Deistung, Max Prihoda, Evelin Haimburger, Christian Menard, Thomas Haider, Romana Höftberger, Simon Robinson, Jürgen R Reichenbach, Hans Lassmann, Hannes Traxler, Siegfried Trattnig, Günther Grabner

Journal: Journal of neuroimaging : official journal of the American Society of Neuroimaging 2020;29(1):65-69

PMID: 30407679

Abstract

BACKGROUND AND PURPOSE

Susceptibility weighted imaging (SWI) plays a role in the differential diagnosis of Parkinson's disease, but lacks widespread acceptance in clinical routine. In a descriptive pilot study, we assessed hypointense microstructures of the normal substantia nigra pars compacta at ultrahigh-field strength for interpretation of the "swallow tail sign."

METHODS

Magnetic resonance imaging at 7 Tesla was performed in five postmortem samples obtained from subjects not affected by Parkinson's disease. Susceptibility weighted images, including minimum intensity projections, were created followed by consensus assessment for microvascular confound. Histological workup in this case-control study included iron and myelin staining. Seven Tesla SWI images from the reference cohort of nine living subjects, all of which showed a positive "swallow tail sign" in their midbrains, were assessed visually.

RESULTS

All specimens showed microvessels running through the dorsal pars compacta and along the caudolateral circumference of the red nucleus. Hypointense imaging patterns in the medial part of the "swallow tail" were due to susceptibility effects of iron deposits and microvessels. In eight out of nine control subjects, one or more microvessels were detected medial to the dorsolateral nigral hyperintensity or at least unilaterally in the medial part of the "swallow tail." One microvessel crossing nigrosome 1 was found in two in-vivo cases.

CONCLUSION

Both iron deposits and microvessels contribute to the hyposignal surrounding nigrosome 1 in susceptibility weighted imaging of normal aged midbrains at ultrahigh-field strength. When assessing the substantia nigra for the presence or absence of the "swallow tail sign," intrinsic vessels may be a sporadic confounder.

© 2018 by the American Society of Neuroimaging.

Address: Department of Radiologic Technology, Carinthia University of Applied Sciences, Klagenfurt, Austria.; Institute of Radiology, Villach General Hospital, Villach, Austria.; Center for Brain Research, Medical University of Vienna, Vienna, Austria.; Medical Physics Group, Institute for Diagnostic and Interventional Radiology, Jena University Hospital-Friedrich Schiller-University, Jena, Germany.; Section of Experimental Neurology, Department of Neurology, Essen University Hospital, Essen, Germany.; Department of Radiologic Technology, Carinthia University of Applied Sciences, Klagenfurt, Austria.; Department of Medical Engineering, Carinthia University of Applied Sciences, Klagenfurt, Austria.; Department of Orthopedics and Trauma Surgery, Medical University of Vienna, Vienna, Austria.; Institute of Neurology, Medical University of Vienna, Vienna, Austria.; Department of Biomedical Imaging and Image-guided Therapy, High Field Magnetic Resonance Centre, Medical University of Vienna, Vienna, Austria.; Medical Physics Group, Institute for Diagnostic and Interventional Radiology, Jena University Hospital-Friedrich Schiller-University, Jena, Germany.; Center of Anatomy and Cell Biology, Medical University of Vienna, Vienna, Austria.; Department of Biomedical Imaging and Image-guided Therapy, High Field Magnetic Resonance Centre, Medical University of Vienna, Vienna, Austria.; Institute for Applied Research on Ageing, Carinthia University of Applied Sciences, Klagenfurt, Austria.

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