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http://www.jhu.edu/

Johns Hopkins University is private research university in Baltimore, Maryland. Founded in 1876, university was named for its first benefactor, American entrepreneur, abolitionist, and philanthropist Johns Hopkins.

Proper citation: Johns Hopkins University; Maryland; USA (RRID:SCR_010247) Copy   


  • RRID:SCR_008214

    This resource has 1+ mentions.

http://www.hopkins-abxguide.org/

Concise, clinically useful information for diagnosing, managing and treating infectious diseases in adults; however it does cover some pediatric topics including vaccines. It is designed for primary care providers and other non-infectious disease specialists as a tool that can be used at the point of care to assist in prescribing antibiotics.

Proper citation: ABX Guide (RRID:SCR_008214) Copy   


http://www.adgenetics.org/

Consortium to conduct genome-wide association studies (GWAS) to identify genes associated with an increased risk of developing late-onset Alzheimer''''s disease (LOAD). The goal of the ADGC is to identify genetic variants associated with risk for AD. It plans to do this through the following collaborative goals: # Identify genes responsible for AD susceptibility # Identify AD sub-phenotype genes rate-of-progression plaque / tangle load / distribution biomarker variability # Generate a genetic data resource for the AD research community Data generated by ADGC is available at the following website: https://www.niagads.org/content/alzheimers-disease-genetics-consortium-adgc-collection

Proper citation: Alzheimers Disease Genetics Consortium (RRID:SCR_004004) Copy   


http://eaglep.case.edu/iamdgc_web/

Consortium aiming to identify the remaining genetic risk variants for Age-related Macular Degeneration (AMD). To increase the statistical power needed to identify genes that have small, yet significant contributions to AMD, the consortium is conducting a meta-analysis on 15 Genome Wide Association Studies (GWAS) pooled from consortium members representing over 8,000 patients with advanced AMD (dry type, neovascular, or both) and 50,000 controls. In addition to verifying known genes, the consortium identified 19 new gene variants. The genes identified in these studies function in the immune system, cholesterol transport and metabolism, and formation and maintenance of connective tissue. This study provides a nearly complete picture of genetic heritability for AMD.

Proper citation: International AMD Genetics Consortium (RRID:SCR_004009) Copy   


https://www.ctsacentral.org/

National consortium of medical research institutions working together to transform the local, regional, and national environment to increase the efficiency and speed of clinical and translational research across the country. Consortium members share a common vision to reduce the time it takes for laboratory discoveries to become treatments for patients, to engage communities in clinical research efforts and to train clinical and translational researchers. This consortium includes 60 medical research institutions located throughout the nation, linking them together to energize the discipline of clinical and translational science. The CTSA consortium has five Strategic Goals: * National Clinical and Translational Research Capability * The Training and Career Development of Clinical and Translational Scientists * Consortium-Wide Collaborations * The Health of our Communities and the Nation * T1 Translational Research

Proper citation: Clinical and Translational Science Awards Consortium (RRID:SCR_008339) Copy   


  • RRID:SCR_001479

    This resource has 10+ mentions.

http://www.bioconductor.org/packages/release/bioc/html/CoGAPS.html

Software that infers biological processes which are active in individual gene sets from corresponding microarray measurements. It achieves this inference by combining a MCMC matrix decomposition algorithm (GAPS) with a novel statistic inferring activity on gene sets.

Proper citation: CoGAPS (RRID:SCR_001479) Copy   


  • RRID:SCR_001833

    This resource has 10+ mentions.

http://ccb.jhu.edu/software/ASprofile/

A suite of programs for extracting, quantifying and comparing alternative splicing (AS) events from RNA-seq data.

Proper citation: ASprofile (RRID:SCR_001833) Copy   


https://mcp.bs.jhmi.edu/

Provides leadership in biomedical research on animal and human diseases and assists with the health and humane care of research animals within the institution.

Proper citation: Johns Hopkins School of Medicine Department of Molecular and Comparative Pathobiology (RRID:SCR_008297) Copy   


  • RRID:SCR_006667

    This resource has 1+ mentions.

http://sourceforge.net/projects/blox/

A quantitative medical imaging and visualization program for use on brain MR, DTI, and MRS data. Programming Language: Java, JavaScript, Scheme

Proper citation: Blox (RRID:SCR_006667) Copy   


https://jhuccs1.us/gpcrc/

Perform clinical, epidemiological, and therapeutic research in gastroparesis and provide an infrastructure that can rapidly and efficiently design and conduct clinical trials for effective medical, surgical, or other interventions to improve treatment of patients with gastroparesis. The GpCRC studies comprise well characterized individuals with diabetic, surgical, and idiopathic gastroparesis.

Proper citation: Gastroparesis Clinical Research Consortium (RRID:SCR_006673) Copy   


  • RRID:SCR_005531

    This resource has 1000+ mentions.

http://ccb.jhu.edu/software/FLASH/

Open source software tool to merge paired-end reads from next-generation sequencing experiments. Designed to merge pairs of reads when original DNA fragments are shorter than twice length of reads. Can improve genome assemblies and transcriptome assembly by merging RNA-seq data.

Proper citation: FLASH (RRID:SCR_005531) Copy   


  • RRID:SCR_009459

    This resource has 100+ mentions.

http://www.nitrc.org/projects/dots/

A fast, scalable tool developed at the Johns Hopkins University to automatically segment the major anatomical fiber tracts within the human brain from clinical quality diffusion tensor MR imaging. With an atlas-based Markov Random Field representation, DOTS directly estimates the tract probabilities, bypassing tractography and associated issues. Overlapping and crossing fibers are modeled and DOTS can also handle white matter lesions. DOTS is released as a plug-in for the MIPAV software package and as a module for the JIST pipeline environment. They are therefore cross-platform and compatible with a wide variety of file formats.

Proper citation: DOTS WM tract segmentation (RRID:SCR_009459) Copy   


http://www.nitrc.org/projects/jist/

A native Java-based imaging processing environment similar to the ITK/VTK paradigm. Initially developed as an extension to MIPAV (CIT, NIH, Bethesda, MD), the JIST processing infrastructure provides automated GUI generation for application plug-ins, graphical layout tools, and command line interfaces. This repository maintains the current multi-institutional JIST development tree and is recommended for public use and extension. JIST was originally developed at IACL and MedIC (Johns Hopkins University) and is now also supported by MASI (Vanderbilt University).

Proper citation: JIST: Java Image Science Toolkit (RRID:SCR_008887) Copy   


http://altweb.jhsph.edu/

It was created to serve as a gateway to alternatives news, information, and resources on the Internet and beyond. Altweb now is the U.S. home of the journal ALTEX: Alternatives to Animal Experimentation, which is the official publication of the Johns Hopkins Center for Alternatives to Animal Testing (CAAT). Altweb is intended to serve: *Biomedical researchers *Industry *The international alternatives community *The international regulatory community(ies) *IACUCs and other institutional groups that review animal protocols *The animal welfare community *Individuals and groups who work with laboratory animals (technicians, veterinarians, etc.) *Educators *Students *The general public Altweb has five practical goals: 1. To assist scientists and others seeking to conduct a search for alternatives methods. 2. To serve as a CRPcentral reference pointfor alternatives information, publications, databases, calendars, and other resources. 3. To support the creation and maintenance of new alternative resources as needed, when no other organization can/will do so. 4. To promote the use of alternatives resources by publicizing them on the site and through e-mail or other outreach. 5. To facilitate communication and collaboration among members of the alternatives community, in particular those who work in database or information management.

Proper citation: Atlweb: Alternatives to Animal Testing (RRID:SCR_007265) Copy   


http://www.jhu.edu/lschramm/spinalindex.htm

Serial histological sections of rat spinal cord at the lumbar and thoracic levels. Serial sections of rat spinal cord cut in the horizontal and sagittal planes. Also transverse and sagittal section series of the postnatal thoracic spinal cord immunolabeled for SMI-32.

Proper citation: Schramm Lab Spinal Cord Atlases (RRID:SCR_003265) Copy   


http://www.ccb.jhu.edu/

Center for Computational Biology as a joint research center in the McKusick-Nathans Institute of Genetic Medicine, spanning the School of Medicine, the Whiting School of Engineering, the Bloomberg School of Public Health, and the Krieger School of Arts & Sciences. Multidisciplinary center dedicated to research on genomics, genetics, DNA sequencing technology, and computational methods for DNA and RNA sequence analysis.

Proper citation: Center for Computational Biology at JHU (RRID:SCR_016680) Copy   


http://www.nitrc.org/projects/longitudinal_ms/

The Longitudinal MS Lesion Imaging Archive provides Training data consisting of longitudinal images from five patients and Testing data consisting of 15 patients. Each longitudinal dataset includes T1-weighted, T2-weighted, PD-weighted, and T2-weighted FLAIR MRI with 3-5 time points acquired on a 3T MR scanner. T1-weighted images have approximately a 1mm cubic voxel resolution, while the other scans are 1mm in plane with 3mm sections. Accounting for the multiple time points, this constitutes approximately 80 individual data sets. The Training data contains manual segmentations of the MS lesions from two different raters for each of the time points provided.

Proper citation: Longitudinal MS Lesion Imaging Archive (RRID:SCR_014136) Copy   


  • RRID:SCR_000157

http://psychiatry.igm.jhmi.edu/SynaptomeDB/

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. Ontology-based knowledgebase for synaptic genes. These genes encode components of the synapse including neurotransmitters and their receptors, adhesion / cytoskeletal proteins, scaffold proteins, transporters, and others. It integrates various and complex data sources for synaptic genes and proteins., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.

Proper citation: SynaptomeDB (RRID:SCR_000157) Copy   


  • RRID:SCR_011931

    This resource has 500+ mentions.

http://ccb.jhu.edu/software/glimmer/index.shtml

A software system for finding genes in microbial DNA, especially the genomes of bacteria, archaea, and viruses.

Proper citation: Glimmer (RRID:SCR_011931) Copy   


http://www.scienceexchange.com/facilities/johns-hopkins-university

An Portal, Core facility

Proper citation: Johns Hopkins University Labs and Facilities (RRID:SCR_012375) Copy   



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