diffusion weighted imaging dwi data (Bruker Corporation)
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Diffusion Weighted Imaging Dwi Data, supplied by Bruker Corporation, used in various techniques. Bioz Stars score: 97/100, based on 3085 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 97 stars, based on 3085 article reviews
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Diffusion-based Assay:Article Title: Evolution of the Rich Club Properties in Mouse, Macaque, and Human Brain Networks: A Study of Functional Integration, Segregation, and Balance. Article Snippet: The rich club, as a community of highly interconnected nodes, serves as the topological center of the network.. However, the similarities and differences in how the rich club supports functional integration and segregation in the brain across different species remain unknown.. In this study, we first detected and validated the rich club in the structural networks of mouse, monkey, and human brains using neuronal tracing or diffusion magnetic resonance imaging data. Article Title: The Effects of Connection Reconstruction Method on the Interregional Connectivity of Brain Networks via Diffusion Tractography Article Snippet: .. Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution. Article Snippet: .. Here, Article Title: Unbiased Population-Based Statistics to Obtain Pathologic Burden of Injury after Experimental TBI Article Snippet: .. Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution Article Snippet: .. Here, Article Title: Apolipoprotein ε4 exacerbates white matter impairment in a mouse model of Aβ amyloidosis by decreasing actively myelinating oligodendrocytes. Article Snippet: .. Structural and Article Title: Disrupted structural connectivity in ArcAβ mouse model of Aβ amyloidosis Article Snippet: .. We acquired Magnetic Resonance Imaging:Article Title: Evolution of the Rich Club Properties in Mouse, Macaque, and Human Brain Networks: A Study of Functional Integration, Segregation, and Balance. Article Snippet: The rich club, as a community of highly interconnected nodes, serves as the topological center of the network.. However, the similarities and differences in how the rich club supports functional integration and segregation in the brain across different species remain unknown.. In this study, we first detected and validated the rich club in the structural networks of mouse, monkey, and human brains using neuronal tracing or diffusion magnetic resonance imaging data. Article Title: The Effects of Connection Reconstruction Method on the Interregional Connectivity of Brain Networks via Diffusion Tractography Article Snippet: .. Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution. Article Snippet: .. Here, Article Title: Unbiased Population-Based Statistics to Obtain Pathologic Burden of Injury after Experimental TBI Article Snippet: .. Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution Article Snippet: .. Here, Article Title: Apolipoprotein ε4 exacerbates white matter impairment in a mouse model of Aβ amyloidosis by decreasing actively myelinating oligodendrocytes. Article Snippet: .. Structural and Article Title: Disrupted structural connectivity in ArcAβ mouse model of Aβ amyloidosis Article Snippet: .. We acquired Software:Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution. Article Snippet: .. Here, Article Title: Brain structure and function: a multidisciplinary pipeline to study hominoid brain evolution Article Snippet: .. Here, Imaging:Article Title: Unbiased Population-Based Statistics to Obtain Pathologic Burden of Injury after Experimental TBI Article Snippet: .. Neuroscience:Article Title: Apolipoprotein ε4 exacerbates white matter impairment in a mouse model of Aβ amyloidosis by decreasing actively myelinating oligodendrocytes Article Snippet: .. Structural and In Vivo Imaging:Article Title: Apolipoprotein ε4 exacerbates white matter impairment in a mouse model of Aβ amyloidosis by decreasing actively myelinating oligodendrocytes Article Snippet: .. Structural and Article Title: Apolipoprotein ε4 exacerbates white matter impairment in a mouse model of Aβ amyloidosis by decreasing actively myelinating oligodendrocytes. Article Snippet: .. Structural and |

![Use of selective excitation pulse and a 3D <t>diffusion-weighted</t> gradient spin-echo sequence (DW-GRASE) sequence for localized <t>diffusion</t> <t>MRI.</t> (A) Performance of the spatially selective excitation pulse was tested in an agarose gel phantom. The red box in the image of the phantom represents an 8 × 8 mm field of excitation. The yellow and blue curves in (B) show the excitation profile along the x-axis and y-axis, respectively. (C) A diagram of the 3D DW-GRASE sequence with spatially selective excitation pulse. The sequence can be extended to include two fields of excitation and acquisition. The diagram shows two localized imaging modules that target two separate embryos in an interleaved fashion. The localized imaging module is expanded to show the timing of the 2D selective excitation pulse together with the spiral gradient in the x–y plane, diffusion sensitization, the GRASE readout, and the twin-navigator echoes. Each GRASE readout acquires five double-sampled gradient and spin echoes and is repeated four times to achieve an acceleration factor of 20 compared to the conventional spin echo sequence. [Color figure can be viewed in the online issue, which is available at wileyonlinelibrary.com.]](https://pub-med-central-images-cdn.bioz.com/pub_med_central_ids_ending_with_3472/pmc04523472/pmc04523472__nihms671825f1.jpg)