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Discontinued
https://github.com/PacificBiosciences/blasr
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on February 28,2023. C++ long-read aligner for PacBio reads., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: BLASR (RRID:SCR_000764) Copy
http://sourceforge.net/projects/gmcloser/
Software that fills and closes the gaps present in scaffold assemblies, especially those generated by the de novo assembly of whole genomes with next-generation sequencing (NGS) reads. Unlike other gap-closing tools that use only NGS reads, GMcloser uses preassembled contig sets or long read sets as the sequences to close gaps and uses paired-end (PE) reads and a likelihood-based algorithm to improve the accuracy and efficiency of gap closure. The efficiency of gap closure can be increased by successive treatments with different contig sets.
Proper citation: GMcloser (RRID:SCR_000646) Copy
http://www.sciencemedicine-edu.org
SUPREP MODEL LEARNING is a standardized credit earning academic exchange program that enables a student from any third world countries or technologically deficient institutions around the world, to attend and earn credits from the best traditional recognized accredited institutions globally, in which the credits earned are transferred to the home institution or SUPREP agency for aggregation towards successful graduation. :The goal of this program is to facilitate bringing students from the third world to reputable undergraduate and graduate neuroscience programs. Additionally, this program also aims t o grant Third World Neuroscience students Academic exchange programs worldwide.
Proper citation: Syndicated Universities Preparatory Research Educational Program (RRID:SCR_000768) Copy
http://sourceforge.net/projects/detecttd/
Software tool to detect tandem duplications in sequencing reads. It is written in Python and requires NCBI Blast standalone.
Proper citation: detecttd (RRID:SCR_000681) Copy
http://sourceforge.net/projects/fastuniq/
A software tool for removal of de novo duplicates in paired short DNA sequences.
Proper citation: FastUniq (RRID:SCR_000682) Copy
http://www.cmelist.com/cdnlist.htm
Annotated list of online CME (continuing medical education) with links to, and descriptions of, Web Sites offering courses and CME credit specifically aimed at Canadian physicians. All Canadian Online CME offering MainPro-M1 credit includes an online group discussion format. You must participate in these discussions as well as go though the didactic material to earn credit.
Proper citation: Canadian Online CME Sites (RRID:SCR_000683) Copy
THIS RESOURCE IS NO LONGER IN SERVICE, documented on March 5, 2014. Keyose is a project designed and led by a family physician. We are not IT focused, but health-care focused. Technology is just a tool, not our purpose.
Proper citation: Keyose (RRID:SCR_000798) Copy
https://github.com/shinout/clipcrop
Software tool for detecting structural variations with single-base resolution using soft-clipping information from SAM files.
Proper citation: clipcrop (RRID:SCR_000678) Copy
http://sourceforge.net/projects/triagetools/
A collection of tools for partitioning raw data (fastq reads) from high-throughput sequencing projects. The tools are designed for basic data management as well for prioritizing analysis of certain subsets.
Proper citation: TriageTools (RRID:SCR_000675) Copy
http://ctri.nic.in/Clinicaltrials/login.php
Free, online public record system for registration of clinical trials being conducted in India. Initiated as a voluntary measure, trial registration in the CTRI has been made mandatory by the Drugs Controller General (India) (DCGI) (http://www.cdsco.nic.in/). Moreover, Editors of Biomedical Journals of 11 major journals of India declared that only registered trials would be considered for publication. Today, any researcher who plans to conduct a trial involving human participants, of any intervention such as drugs, surgical procedures, preventive measures, lifestyle modifications, devices, educational or behavioral treatment, rehabilitation strategies as well as trials being conducted in the purview of the Department of AYUSH (http://indianmedicine.nic.in/) is expected to register the trial in the CTRI before enrollment of the first participant. Trial registration involves public declaration and identification of trial investigators, sponsors, interventions, patient population etc before the enrollment of the first patient. Submission of Ethics approval and DCGI approval (if applicable) is essential for trial registration in the CTRI. Multi-country trials, where India is a participating country, which have been registered in an international registry, are also expected to be registered in the CTRI. In the CTRI, details of Indian investigators, trial sites, Indian target sample size and date of enrollment are captured. After a trial is registered, trialists are expected to regularly update the trial status or other aspects as the case may be. After a trial is registered, all updates and changes will be recorded and available for public display. The CTRI is working with the WHO ICTRP to ensure that results of all trials registered with the CTRI are adequately reported and publicly available.
Proper citation: Clinical Trials Registry - India (RRID:SCR_000679) Copy
http://software.markdpreston.com/varb
A variation browsing and analysis tool for variants derived from next-generation sequencing data.
Proper citation: VarB (RRID:SCR_000671) Copy
A lab organization which has bases in Munich, Germany and at Columbia University and focuses its research on protein structure and function using sequence and evolutionary information. They utilize machine learning and statistical methods to analyze genetic material and its gene products. Research goals of the lab involve using protein and DNA sequences along with evolutionary information to predict aspects of the proteins relevant to the advance of biomedical research.
Proper citation: ROSTLAB (RRID:SCR_000792) Copy
https://code.google.com/p/bamseek/
A Large File Viewer for BAM and SAM alignment files.
Proper citation: BAMseek (RRID:SCR_000672) Copy
A graduate program for pharmacology and toxicology that is a component of the Virginia Commonwealth University. This organization also performs studies on medical disorders, and new pharmacology agents and their effects on human health.
Proper citation: Virginia Commonwealth University, Department of Pharmacology (RRID:SCR_000666) Copy
International collaborative research project and database of annotated mammalian genome. Used to improve estimates of total number of genes and their alternative transcript isoforms in both human and mouse. Consortium to assign functional annotations to full length cDNAs that were collected during Mouse Encyclopedia Project at RIKEN.
Proper citation: Functional Annotation of the Mammalian Genome (RRID:SCR_000788) Copy
http://sourceforge.net/projects/ngs-toolbox/
A collection of simple Perl scripts adressed to scientists doing research that bases on high throughput genomic/transcriptomic data. It does not require any bioinformatic expertise. The scripts perform fundamental processing steps like sorting sequences by TAGs, FASTQ to FASTA conversion, filtering and counting of redundant sequences, individually adjustable FASTQ quality filtering or basic analyses like base count and analysis of sequence length distribution.
Proper citation: NGS tools for the novice (RRID:SCR_000664) Copy
http://sourceforge.net/projects/operasf/
A sequence assembly software program that uses information from paired-end reads to optimally order and orient contigs assembled from shotgun-sequencing reads.
Proper citation: Opera (RRID:SCR_000665) Copy
http://sysbio.harvard.edu/csb/
A group dedicated to combining a variety of experimental and theoretical approaches to find general principles that explain the structure, behavior and evolution of cells and organisms. The center hosts a variety of fellows and faculty from various backgrounds such as biology, physics, chemistry, mathematics, computer science and engineering.
Proper citation: FAS Center For Systems Biology (RRID:SCR_000789) Copy
http://www.w3.org/TR/hcls-swan/
The SWAN (Semantic Web Applications in Neuromedicine) ontology is an ontology for modeling scientific discourse and has been developed in the context of building a series of applications for biomedical researchers, as well as extensive discussions and collaborations with the larger bio-ontologies community. Developing cures for highly complex diseases, such as neurodegenerative disorders, requires extensive interdisciplinary collaboration and exchange of biomedical information in context. Our ability to exchange such information across sub-specialties today is limited by the current scientific knowledge ecosystem's inability to properly contextualize and integrate data and discourse in machine-interpretable form. This inherently limits the productivity of research and the progress toward cures for devastating diseases such as Alzheimer's and Parkinson's. The SWAN ontology is organized in three types of modules: * basic: basic modules represent the ontology building blocks. They cover topics that are general enough to be included in every ontology distribution. The current basic modules are: ** collections ** provenance, authoring and versioning (PAV) ** discourse relationships ** FOAF (in OWL-DL) ** SKOS (in OWL-DL) ** qualifiers ** scientific discourse * extension: extensions modules are covering topics (a) that can be related only to some fields of science (b) for which there could be more than one implementation (c) for which a temporary solution has been provided and it is possible to forecast its substitution. The current extensions modules are: ** life science entities ** citations ** qualifiers extension modules * distribution: distributions are modules that are including all the basic modules and extensions necessary for serving a specific domain (i.e. the SWAN ontology for the Alzheimer knowledge base or the generic distribution that is not binded to any specific scientific domain). The current available distributions are: ** swan-scientific-discourse ** swan-alzheimer
Proper citation: Semantic Web Applications in Neuromedicine (SWAN) Ontology (RRID:SCR_000697) Copy
http://www.psb.ugent.be/esb/PiNGO/
A Java-based tool to easily find unknown genes in a network that are significantly associated with user-defined target Gene Ontology (GO) categories. PiNGO is implemented as a plugin for Cytoscape, a popular open source software platform for visualizing and integrating molecular interaction networks. PiNGO predicts the categorization of a gene based on the annotations of its neighbors, using the enrichment statistics of its sister tool BiNGO. Networks can either be selected from the Cytoscape interface or uploaded from file. Platform: Windows compatible, Mac OS X compatible, Linux compatible, Unix compatible
Proper citation: PiNGO (RRID:SCR_000692) Copy
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