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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
http://cbi.nyu.edu/software/niftimatlab.php
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on October 28, 2025. Software tool that allows the user to operate on NIfTI image files from Matlab.
Proper citation: NIfTImatlab (RRID:SCR_002230) Copy
http://ncmir.ucsd.edu/downloads/jinx.shtm
Jinx was developed to aid in the 3D reconstruction of tomographic datasets acquired with one of the various electron microscopes available at the resource. Tomographic datasets consist of a series of 2D images from which objects of interest are segmented out for the 3D reconstruction. Jinx offers the user a graphical interface to step through each image of the series and facilities to manually trace out objects of interest. It relies on JadeDisplay to support the display of large images with graphical overlays and the JAI libraries for histogram functionality and other types of image manipulations. Jinx is currently under active development and future releases will offer semi-automated segmentation algorithms based on fuzzy logic, level set, and watershed algorithm. This software is free; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or any later version. See the GNU General Public License for more details. For a copy of the GNU General Public License, write to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA. Sponsors: Jinx presented here was produced at the National Center for Microscopy and Imaging Research at San Diego, which is supported by the National Institutes of Health (NIH) through a National Center for Research Resources program grant P41 RR04050. open source license, GNU general public license
Proper citation: National Center for Microscopy and Imaging Research: Jinx (RRID:SCR_001939) Copy
https://www.nitrc.org/projects/uncbcp_4d_atlas/
Software package for constructing longitudinal atlases, which are the necessary steps for many brain-related applications.
Proper citation: 4D Atlases Construction (RRID:SCR_002227) Copy
https://neurograd.ucsd.edu/handbook/prog-requirement/comp-neuro/index.html
The Computational Neuroscience specialization is a new facet of the broader Neuroscience graduate program at UCSD. The goal of the specialization is to train the next generation of neuroscientists with the broad range of computational and analytical skills that are essential to understand the organization and function of complex neural systems. The specialization is intended for students with backgrounds in neuroscience, physics, chemistry, biology, psychology, computer science, engineering, and mathematics. This specialization allows Neuroscience students to concentrate on a focused program of rigorous course work in both the theoretical and experimental aspects of computational neuroscience. Students are encouraged to pursue thesis research that includes both an experimental and a computational component, often arranged by the student as a collaboration between two research groups. The program is focused on these major themes relevant for computational neuroscience research: - Neurobiology of Neural Systems - the anatomy, physiology, and behavior of systems of neurons, with emphasis on basic phenomenology. - Advanced Measurement Tools in Neuroscience - Advanced imaging and recording techniques reflecting the impact of experimental physics on neuroscience. - Algorithms for the Analysis of Neural Data - New algorithms and techniques for analyzing data obtained from physiological recording - Theoretical Basis for Collective Neural Dynamics - A synthesis of approaches from mathematics and physical sciences as well as biology will be used to explore the collective properties and nonlinear dynamics of neuronal systems. Sponsors: This program is supported by the University of California at San Diego.
Proper citation: University of California at San Diego Computational Neuroscience (RRID:SCR_001930) Copy
Original SAMTOOLS package has been split into three separate repositories including Samtools, BCFtools and HTSlib. Samtools for manipulating next generation sequencing data used for reading, writing, editing, indexing,viewing nucleotide alignments in SAM,BAM,CRAM format. BCFtools used for reading, writing BCF2,VCF, gVCF files and calling, filtering, summarising SNP and short indel sequence variants. HTSlib used for reading, writing high throughput sequencing data.
Proper citation: SAMTOOLS (RRID:SCR_002105) Copy
http://pfind.ict.ac.cn/se/plink/
Software dedicated for the analysis of chemically cross-linked proteins or protein complexes using mass spectrometry., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: pFind Studio: pLink (RRID:SCR_000084) Copy
http://www.tm4.org/spotfinder.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. Software designed for the rapid, reproducible and computer-aided analysis of microarray images and the quantification of gene expression.
Proper citation: Spotfinder (RRID:SCR_000085) Copy
http://bioinformatics.nyu.edu/Projects/GOALIE/
THIS RESOURCE IS NO LONGER IN SERVCE, documented September 2, 2016. Generalized Ontological Algorithmic Logical Invariants Extractor (GOALIE) is a tool for the construction of time-course dependent enrichments. Requires an ODBC connection to an instance of the GO database. Platform: Windows compatible, Mac OS X compatible, Linux compatible
Proper citation: GOALIE (RRID:SCR_000088) Copy
Scalable particle fluid simulation code for Lagrangian particle-based fluid simulation. This adaptive sampling strategy allows using smaller (and thus more) particles in geometrically complex regions, while less particles are used for thick flat fluid volumes. Additionally, a novel distance-based particle surface definition is implemented which hides the particle granularity and allows dynamic resampling near the fluid-air interface. The code is implemented in C++ and should compile on Linux.
Proper citation: Adaptively Sampled Particle Fluids (RRID:SCR_000083) Copy
http://www.bioconductor.org/packages/release/bioc/html/ReQON.html
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. Algorithm for recalibrating the base quality scores for aligned sequencing data in BAM format.
Proper citation: ReQON (RRID:SCR_000075) Copy
http://www.structbioinfor.org/cascleave2/
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. A novel tool developed using Java program for the high-throughput in silico identification of substrate cleavage sites for various caspases from the amino acid sequences of the substrates.
Proper citation: Cascleave (RRID:SCR_000197) Copy
http://www.iro.umontreal.ca/~csuros/quadgt/
Software package for calling single-nucleotide variants in four sequenced genomes comprising a normal-tumor pair and the two parents. Genotypes are inferred using a joint model of parental variant frequencies, de novo germline mutations, and somatic mutations. The model quantifies the descent-by-modification relationships between the unknown genotypes by using a set of parameters in a Bayesian inference setting. Note that you can use it on any subset of the four related genomes, including parent-offspring trios, and normal-tumor pairs without parental samples.
Proper citation: QuadGT (RRID:SCR_000073) Copy
http://www.bioconductor.org/packages/release/bioc/html/HEM.html
Software package that fits heterogeneous error models for analysis of microarray data
Proper citation: HEM (RRID:SCR_000194) Copy
http://soap.genomics.org.cn/soapfuse.html
THIS RESOURCE IS NO LONGER IN SERVICE.Documented on August 23,2022. An open source tool developed for genome-wide detection of fusion transcripts from human being paired-end RNA-Seq data. This tool is a part of a larger set of tools to efficiently align oligonucleotides onto reference sequences .
Proper citation: SOAPfuse (RRID:SCR_000078) Copy
http://molegro-virtual-docker.software.informer.com/
An integrated platform for predicting protein-ligand interactions, the visualization of new ideas and analyzing protein targets.
Proper citation: Molegro Virtual Docker (RRID:SCR_000190) Copy
A supplier of cancer and infectious disease diagnostic reagents. The company also provides services such as tissue-based and molecular diagnostics to their partners to accelerate their in vitro diagnostic device (IVD) product development and commercialization.
Proper citation: Genemed (RRID:SCR_000070) Copy
Chemical 2D structure editor and viewer application/applet based on the Chemistry Development Kit (CDK).
Proper citation: JChemPaint (RRID:SCR_000095) Copy
http://www.epilepsygenetics.eu/
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on August 16,2023. Group of clinical care and epilepsy research centers who are committed to improving the lives of people with epilepsy through an understanding of the genetics of epilepsy. The consoritum was in an effort to speed discovery to epilepsy genetics by pooling the resources of several research centres., THIS RESOURCE IS NO LONGER IN SERVICE. Documented on September 16,2025.
Proper citation: EPIGEN (RRID:SCR_000093) Copy
http://www.bioconductor.org/packages/release/data/annotation/html/RmiR.Hs.miRNA.html
Software package for various databases of microRNA Targets.
Proper citation: RmiR.Hs.miRNA (RRID:SCR_000101) Copy
http://acgt.cs.tau.ac.il/modent/
A computational tool that reconstructs gene regulatory networks from high throughput experimental data.
Proper citation: MODENT - A Tool For Reconstructing Gene Regulatory Networks (RRID:SCR_000220) Copy
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