small animal magnetic resonance facility (Mallinckrodt)
86
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Mallinckrodt
small animal magnetic resonance facility
Small Animal Magnetic Resonance Facility, supplied by Mallinckrodt, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/small+animal+magnetic+resonance+facility/agents+imaging+inc+magnetic+medical+novel+resonance/pmc13188350-338-12-21
Average 86 stars, based on 1 article reviews
Small Animal Magnetic Resonance Facility, supplied by Mallinckrodt, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/small+animal+magnetic+resonance+facility/agents+imaging+inc+magnetic+medical+novel+resonance/pmc13188350-338-12-21
Average 86 stars, based on 1 article reviews
small animal magnetic resonance facility - by Bioz Stars,
2026-10
86/100 stars
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Biomarker Discovery:Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation. Article Snippet: STAR+METHODS Detailed methods are provided in the online version of this paper and include the following: d KEY RESOURCES TABLE d RESOURCE AVAILABILITY B Lead contact B Materials availability B Data and code availability d EXPERIMENTAL MODEL AND SUBJECT DETAILS B Human subjects B Animal models d METHOD DETAILS B Generation of MYT1L knockout mice B RNA extraction and RT-qPCR B Western blot B Immunofluorescence B Sanger sequencing Neuron 109, 3775–3792, December 1, 2021 3789 379 B Illumina sequencing B Nissl staining B In vivomagnetic resonance imaging (MRI): data acqui- sition B DTI data analysis B ATAC-seq B DAR analysis B RNA-seq B Differential gene expression analysis B GO analysis B GSEA analysis B Comparison between in vivo and in vitro RNA-seq B Disease models and human genetic datasets enrichment B EdU labeling B Slice preparation B Slice electrophysiology B Neuronal morphology analysis B Behavioral analysis d QUANTIFICATION AND STATISTICAL ANALYSIS SUPPLEMENTAL INFORMATION Supplemental information can be found online at https://doi.org/10.1016/j. neuron.2021.09.009. .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSCCenter (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen, Colin Florian, and Simona Sarafinovska for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation Article Snippet: .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSC Center (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen and Colin Florian for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Transgenic Assay:Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation. Article Snippet: STAR+METHODS Detailed methods are provided in the online version of this paper and include the following: d KEY RESOURCES TABLE d RESOURCE AVAILABILITY B Lead contact B Materials availability B Data and code availability d EXPERIMENTAL MODEL AND SUBJECT DETAILS B Human subjects B Animal models d METHOD DETAILS B Generation of MYT1L knockout mice B RNA extraction and RT-qPCR B Western blot B Immunofluorescence B Sanger sequencing Neuron 109, 3775–3792, December 1, 2021 3789 379 B Illumina sequencing B Nissl staining B In vivomagnetic resonance imaging (MRI): data acqui- sition B DTI data analysis B ATAC-seq B DAR analysis B RNA-seq B Differential gene expression analysis B GO analysis B GSEA analysis B Comparison between in vivo and in vitro RNA-seq B Disease models and human genetic datasets enrichment B EdU labeling B Slice preparation B Slice electrophysiology B Neuronal morphology analysis B Behavioral analysis d QUANTIFICATION AND STATISTICAL ANALYSIS SUPPLEMENTAL INFORMATION Supplemental information can be found online at https://doi.org/10.1016/j. neuron.2021.09.009. .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSCCenter (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen, Colin Florian, and Simona Sarafinovska for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation Article Snippet: .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSC Center (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen and Colin Florian for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Injection:Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation. Article Snippet: STAR+METHODS Detailed methods are provided in the online version of this paper and include the following: d KEY RESOURCES TABLE d RESOURCE AVAILABILITY B Lead contact B Materials availability B Data and code availability d EXPERIMENTAL MODEL AND SUBJECT DETAILS B Human subjects B Animal models d METHOD DETAILS B Generation of MYT1L knockout mice B RNA extraction and RT-qPCR B Western blot B Immunofluorescence B Sanger sequencing Neuron 109, 3775–3792, December 1, 2021 3789 379 B Illumina sequencing B Nissl staining B In vivomagnetic resonance imaging (MRI): data acqui- sition B DTI data analysis B ATAC-seq B DAR analysis B RNA-seq B Differential gene expression analysis B GO analysis B GSEA analysis B Comparison between in vivo and in vitro RNA-seq B Disease models and human genetic datasets enrichment B EdU labeling B Slice preparation B Slice electrophysiology B Neuronal morphology analysis B Behavioral analysis d QUANTIFICATION AND STATISTICAL ANALYSIS SUPPLEMENTAL INFORMATION Supplemental information can be found online at https://doi.org/10.1016/j. neuron.2021.09.009. .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSCCenter (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen, Colin Florian, and Simona Sarafinovska for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation Article Snippet: .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSC Center (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen and Colin Florian for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Imaging:Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation. Article Snippet: STAR+METHODS Detailed methods are provided in the online version of this paper and include the following: d KEY RESOURCES TABLE d RESOURCE AVAILABILITY B Lead contact B Materials availability B Data and code availability d EXPERIMENTAL MODEL AND SUBJECT DETAILS B Human subjects B Animal models d METHOD DETAILS B Generation of MYT1L knockout mice B RNA extraction and RT-qPCR B Western blot B Immunofluorescence B Sanger sequencing Neuron 109, 3775–3792, December 1, 2021 3789 379 B Illumina sequencing B Nissl staining B In vivomagnetic resonance imaging (MRI): data acqui- sition B DTI data analysis B ATAC-seq B DAR analysis B RNA-seq B Differential gene expression analysis B GO analysis B GSEA analysis B Comparison between in vivo and in vitro RNA-seq B Disease models and human genetic datasets enrichment B EdU labeling B Slice preparation B Slice electrophysiology B Neuronal morphology analysis B Behavioral analysis d QUANTIFICATION AND STATISTICAL ANALYSIS SUPPLEMENTAL INFORMATION Supplemental information can be found online at https://doi.org/10.1016/j. neuron.2021.09.009. .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSCCenter (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen, Colin Florian, and Simona Sarafinovska for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Article Title: Subcutaneous deuterated substrate administration in mice: An alternative to tail vein infusion. Article Snippet: 1Department of Radiology, Washington University School of Medicine, St. Louis, Missouri, USA 2Department of Neurology, Washington University School of Medicine, St. Louis, Missouri, USA 3Department of Chemistry, Washington University, St. Louis, Missouri, USA 4Department of Internal Medicine, Washington University School of Medicine, St. Louis, Missouri USA 5Department of the Alvin J Siteman Cancer Center, Washington University School of Medicine, St. Louis, Missouri, USA Article Title: A MYT1L syndrome mouse model recapitulates patient phenotypes and reveals altered brain development due to disrupted neuronal maturation Article Snippet: .. We thank Dr. Monica Sentamet and the Genome Engineering and iPSC Center (GEiC) at Washington University in St. Louis for gRNA design and validation; Dr. Michael White and the transgenic services core for oocyte injection; Dr. Cheng Cheng, Dr. Lingchun Kong, Dr. Xiaoying Chen, Dr. Adam Clemens, Weijia Cao, Brant Swiney, Nicole Fuhler, Rena Silverman, and Joelle Schneiderman for technical assistance; Allen Yen and Colin Florian for manuscript proofreading; Drs. Carla Yuede and David Wozniak for access to behavioral equipment; and the Mallinckrodt Institute of Radiology’s Magnetic Resonance Imaging:Article Title: The gain-of-function UBE3A Q588E variant causes Angelman-like neurodevelopmental phenotypes in mice. Article Snippet: .. The MRI studies presented in this work were carried out using the Article Title: Measuring nephron number in the healthy and diabetic rat kidney in vivo using MRI without contrast agents Article Snippet: .. The MRI studies presented in this work were carried out using the Article Title: Evaluation of gliovascular functions of AQP4 readthrough isoforms. Article Snippet: .. MRI experiments were performed in the Mallinckrodt Institute of Radiology’s Article Title: Rapamycin Perfluorocarbon Nanoparticle Mitigates Cisplatin-Induced Acute Kidney Injury. Article Snippet: .. Acknowledgments: The MRI studies presented in this work were carried out using the |