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http://ribopicker.sourceforge.net/
Software to automatically identify and efficiently remove rRNA-like sequences from metatranscriptomic and metagenomic datasets.
Proper citation: riboPicker (RRID:SCR_000360) Copy
A software for genome assembly, and is specifically designed to analyze long Sanger-chemistry reads.
Proper citation: ARACHNE (RRID:SCR_000351) Copy
http://parsecnv.sourceforge.net/
Software that takes CNV calls as input and creates SNP based statistics for CNV occurrence in cases and controls then calls CNVRs based on neighboring SNPs of similar significance.
Proper citation: ParseCNV (RRID:SCR_000355) Copy
http://sourceforge.net/projects/kinannote/
Software that identifies and classifies protein kinases in a user-provided fasta file using an HMM derived from serine / threonine protein kinases, a position specific scoring matrix derived from the HMM, and comparison with a local version of the curated kinase database from kinase.com.
Proper citation: Kinannote (RRID:SCR_000352) Copy
http://www.scienceexchange.com/facilities/genomics-services-lab
A lab that offers genetic research tools such as RNA sequencing and a variety of arrays.
Proper citation: HudsonAlpha Genomics Services Lab (RRID:SCR_000353) Copy
http://sourceforge.net/projects/jnomics/
A collection of cloud-scale DNA sequence analysis tools.
Proper citation: Jnomics (RRID:SCR_000348) Copy
A genome browser framework which gives an open browsing experience, open data access, collaborative work support, and a framework to import annotations. Multiple data access approaches are supported for external platforms to retrieve data from ABrowse. This resource also contains an online user-space in which users can create, store and share comments, annotations and landmarks.
Proper citation: ABrowse (RRID:SCR_000345) Copy
http://icbi.at/software/gpviz/gpviz.shtml
A versatile Java-based software used for dynamic gene-centered visualization of genomic regions and/or variants.
Proper citation: GPViz (RRID:SCR_000346) Copy
International consortium of six centers assembled to participate in the development and implementation of studies to identify infectious agents, dietary factors, or other environmental agents, including psychosocial factors, that trigger type 1 diabetes in genetically susceptible people. The coordinating centers recruit and enroll subjects, obtaining informed consent from parents prior to or shortly after birth, genetic and other types of samples from neonates and parents, and prospectively following selected neonates throughout childhood or until development of islet autoimmunity or T1DM. The study tracks child diet, illnesses, allergies and other life experiences. A blood sample is taken from children every 3 months for 4 years. After 4 years, children will be seen every 6 months until the age of 15 years. Children are tested for 3 different autoantibodies. The study will compare the life experiences and blood and stool tests of the children who get autoantibodies and diabetes with some of those children who do not get autoantibodies or diabetes. In this way the study hopes to find the triggers of T1DM in children with higher risk genes.
Proper citation: TEDDY (RRID:SCR_000383) Copy
Trans-NIH program encouraging and facilitating the study of the underlying mechanisms controlling blood vessel growth and development. Other aims include: to identify specific targets and to develop therapeutics against pathologic angiogenesis in order to reduce the morbidity due to abnormal blood vessel proliferation in a variety of disease states; to better understand the process of angiogenesis and vascularization to improve states of decreased vascularization; to encourage and facilitate the study of the processes of lymphangiogenesis; and to achieve these goals through a multidisciplinary approach, bringing together investigators with varied backgrounds and varied interests.
Proper citation: Trans-Institute Angiogenesis Research Program (RRID:SCR_000384) Copy
https://sunnylab.wordpress.com/about/
An antibody supplier that provides a range of human antigens, serum and plasma, and cell culture reagents.
Proper citation: SunnyLab (RRID:SCR_000382) Copy
http://www.bioconductor.org/packages/release/bioc/html/iASeq.html
Software that uses a Bayesian hierarchical mixture model to learn correlation patterns of allele-specificity among multiple proteins.
Proper citation: iASeq (RRID:SCR_000420) Copy
http://www.massachusetts.edu/index.html
A five-campus public university system in Massachusetts. The system includes four universities, a medical school, and a satellite campus.
Proper citation: University of Massachusetts; Massachusetts; USA (RRID:SCR_000379) Copy
http://www.nitrc.org/projects/mri_lbptop/
The packaged tools perform Local Binary Pattern on Three Orthogonal Planes (LBP-TOP) analysis on MR brain images. One can use them to extract LBP texture features for machine learning applications or other advance analysis. Bash scripts performing simple preprocessing with FSL and AFNI as well as LBP mapping programs written by Java are both including in this package. The output is the histogram describing the brain morphology.
Proper citation: Local Binary Pattern Analysis Tools for MR Brain Images (RRID:SCR_000412) Copy
http://cran.r-project.org/web/packages/PSCBS/
Software R package for segmentation of allele-specific DNA copy number data and detection of regions with abnormal copy number within each parental chromosome. Both tumor-normal paired and tumor-only analyses are supported.
Proper citation: PSCBS (RRID:SCR_000417) Copy
http://www.opencolleges.edu.au/
A resource for online accredited courses in a wide variety of areas, including accounting, animal care, beauty, building and construction, business, education, design and writing. This resource is based in Australia.
Proper citation: Open Colleges (RRID:SCR_000418) Copy
Software package for control of automated microscopes. Cross-platform desktop application, to control motorized microscopes, scientific cameras, stages, illuminators, and other microscope accessories.
Proper citation: uManager (RRID:SCR_000415) Copy
Understanding the mechanisms underlying the expression and perception of auditory communication in nonhuman primates provides important insights for understanding the neural systems that mediate nonverbal auditory communication in humans. Our research is devoted to understanding the changes in vocal behavior that are associated with maturation and social experience under normative conditions, and to investigating neural systems to define their roles in auditory communication. The anterior cingulate gyrus, in the frontal cerebral cortex, is an essential neural system for the expression of the primate isolation call, a structural and functional equivalent of the cry sounds of humans. Bilateral removal of this structure in adult squirrel monkeys resulted in a long-lasting inability to emit isolation calls. Partial recovery, often over many weeks, initially took the form of production of short, faint and uninflected versions of the typical isolation call. Humans suffering infarct damage to this region likewise show an initial recovery in the form of short, faint, monosyllabic sounds, suggesting that the anterior cingulate gyrus of nonhuman primates is the evolutionary precursor of a neural structure involved in human affective expression and speech. Our working model of isolation call production is that the anterior cingulate gyrus is the site where the command to produce this vocalization is initiated. Since the anterior cingulate region also has reciprocal connections with temporal lobe auditory cortex, a presumptive feedback pathway exists for registering commands to initiate vocalization with the temporal lobe cortex, which plays a major role in perceiving and decoding the acoustic details of species-specific vocalizations. At present, we do not know the role of the anterior cingulate gyrus in the production of infant vocalizations. However, we have found that neonatal removal of the amygdala, an important forebrain component of the limbic system, or portions of the inferotemporal gyrus, which sends projections to the amygdala, result in significant changes in the vocal behavior of infant rhesus macaques. Vocal development is a dynamic process, and a pattern shared by several nonhuman primates has emerged regarding the nature of this process. Infants are highly vocal during periods of brief separation from their caregiver, and we take advantage of this to document the range of vocalizations produced by infants of different ages. In the neonatal period, infants of 3 species of nonhuman primate (rhesus macaque, squirrel monkey and common marmoset) all produce sounds that vary widely in their acoustic structure. Many of these bear a striking similarity to sounds used in a variety of social settings by adults, suggesting that neural systems responsible for generating adult vocalizations are already in place during early infancy. As infants mature, their vocal behavior during brief periods of social separation becomes much more stereotyped. It isn't until much later in development, as individuals engage in a variety of social interactions with peers and adults, that the sounds expressed in early infancy begin to re-appear in adult contexts. The role of individual experience during development is currently being explored to determine the mechanisms leading to the acquisition of adult vocal skills.
Proper citation: NICHD Developmental Neuroethology - Laboratory of Comparative Ethology (RRID:SCR_000416) Copy
A national university in China with degree programs that include engineering, economics, humanities, law and art at the undergraduate, graduate and doctoral level.
Proper citation: Tianjin University; Tianjin; China (RRID:SCR_000372) Copy
A private, historically black university that offers degree programs at the undergraduate, graduate, doctoral and professional levels. The university has programs that include veterinarian studies, allied health, nursing, education
Proper citation: Tuskegee University; Alabama; USA (RRID:SCR_000373) Copy
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