2011FigshareOpen access

Expression of in brain

Anja Kolb‐Kokocinski, Mehrle Alexander, Stephanie Bechtel, Simpson, Jeremy C, Petra Kioschis, Wiemann Stefan, Ruth Wellenreuther, Poustka Annemarie

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Abstract

Copyright information:Taken from "The systematic functional characterisation of Xq28 genes prioritises candidate disease genes"BMC Genomics 2006;7():29-29.Published online 17 Feb 2006PMCID:PMC1431524.Copyright © 2006 Kolb-Kokocinski et al; licensee BioMed Central Ltd. All sections are sagittal and from adult NMRI mice. Upper panel: antisense probe, lower panel: sense probe. 1 hippocampal formation with signal in CA1-CA3 pyramidal cells, 2 cerebellum with signal in purkinje cell layer, 3 olfactory bulb with signal in mitral cells.

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What this paper is about

Copyright information:Taken from "The systematic functional characterisation of Xq28 genes prioritises candidate disease genes"BMC Genomics 2006;7():29-29.Published online 17 Feb 2006PMCID:PMC1431524.Copyright © 2006 Kolb-Kokocinski et al; licensee BioMed Central Ltd. All sections are sagittal and from adult NMRI mice. Upper panel: antisense probe, lower panel: sense probe. 1 hippocampal formation with signal in CA1-CA3 pyramidal cells, 2 cerebellum with signal in purkinje cell layer, 3 olfactory bulb with signal in mitral cells.

Why it matters

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Method / approach

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Available abstract

Copyright information:Taken from "The systematic functional characterisation of Xq28 genes prioritises candidate disease genes"BMC Genomics 2006;7():29-29.Published online 17 Feb 2006PMCID:PMC1431524.Copyright © 2006 Kolb-Kokocinski et al; licensee BioMed Central Ltd. All sections are sagittal and from adult NMRI mice. Upper panel: antisense probe, lower panel: sense probe. 1 hippocampal formation with signal in CA1-CA3 pyramidal cells, 2 cerebellum with signal in purkinje cell layer, 3 olfactory bulb with signal in mitral cells.

Key concepts: Expression (computer science), Computer science, Neuroscience, Biology, Programming language

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