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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.

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  • RRID:SCR_013556

    This resource has 10+ mentions.

http://www.angiobio.com/

An Antibody supplier

Proper citation: AngioBio (RRID:SCR_013556) Copy   


  • RRID:SCR_013559

    This resource has 1+ mentions.

http://www.b-bridge.com/

An Antibody supplier

Proper citation: B-Bridge International (RRID:SCR_013559) Copy   


http://www-sequence.stanford.edu/group/candida/

The Stanford Genome Technology Center began a whole genome shotgun sequencing of strain SC5314 of Candida albicans. After reaching its original goal of 1.5X mean coverage of the haploid genome (16Mb) in summer, 1998, Stanford was awarded a supplemental grant to continue sequencing up to a coverage of 10X, performing as much assembly of the sequence as possible, using recognizable genes as nucleation points. Candida albicans is one of the most commonly encountered human pathogens, causing a wide variety of infections ranging from mucosal infections in generally healthy persons to life-threatening systemic infections in individuals with impaired immunity. Oral and esophogeal Candida infections are frequently seen in AIDS patients. Few classes of drugs are effective against these fungal infections, and all of them have limitations with regard to efficacy and side-effects.

Proper citation: Sequencing of Candida Albicans (RRID:SCR_013437) Copy   


  • RRID:SCR_013439

http://ncmir.ucsd.edu/downloads/montage_rts2000.shtm

Software program for creating montages from multiphoton microscopy.

Proper citation: Montage RTS2000 (RRID:SCR_013439) Copy   


  • RRID:SCR_013560

    This resource has 1+ mentions.

https://www.avivasysbio.com/

An Antibody supplier

Proper citation: Aviva Systems Biology (RRID:SCR_013560) Copy   


https://omictools.com/l2l-tool

THIS RESOURCE IS NO LONGER IN SERVICE, documented May 10, 2017. A pilot effort that has developed a centralized, web-based biospecimen locator that presents biospecimens collected and stored at participating Arizona hospitals and biospecimen banks, which are available for acquisition and use by researchers. Researchers may use this site to browse, search and request biospecimens to use in qualified studies. The development of the ABL was guided by the Arizona Biospecimen Consortium (ABC), a consortium of hospitals and medical centers in the Phoenix area, and is now being piloted by this Consortium under the direction of ABRC. You may browse by type (cells, fluid, molecular, tissue) or disease. Common data elements decided by the ABC Standards Committee, based on data elements on the National Cancer Institute''s (NCI''s) Common Biorepository Model (CBM), are displayed. These describe the minimum set of data elements that the NCI determined were most important for a researcher to see about a biospecimen. The ABL currently does not display information on whether or not clinical data is available to accompany the biospecimens. However, a requester has the ability to solicit clinical data in the request. Once a request is approved, the biospecimen provider will contact the requester to discuss the request (and the requester''s questions) before finalizing the invoice and shipment. The ABL is available to the public to browse. In order to request biospecimens from the ABL, the researcher will be required to submit the requested required information. Upon submission of the information, shipment of the requested biospecimen(s) will be dependent on the scientific and institutional review approval. Account required. Registration is open to everyone.. Documented on August 26, 2019.

Database of published microarray gene expression data, and a software tool for comparing that published data to a user''''s own microarray results. It is very simple to use - all you need is a web browser and a list of the probes that went up or down in your experiment. If you find L2L useful please consider contributing your published data to the L2L Microarray Database in the form of list files. L2L finds true biological patterns in gene expression data by systematically comparing your own list of genes to lists of genes that have been experimentally determined to be co-expressed in response to a particular stimulus - in other words, published lists of microarray results. The patterns it finds can point to the underlying disease process or affected molecular function that actually generated the observed changed in gene expression. Its insights are far more systematic than critical gene analyses, and more biologically relevant than pure Gene Ontology-based analyses. The publications included in the L2L MDB initially reflected topics thought to be related to Cockayne syndrome: aging, cancer, and DNA damage. Since then, the scope of the publications included has expanded considerably, to include chromatin structure, immune and inflammatory mediators, the hypoxic response, adipogenesis, growth factors, hormones, cell cycle regulators, and others. Despite the parochial origins of the database, the wide range of topics covered will make L2L of general interest to any investigator using microarrays to study human biology. In addition to the L2L Microarray Database, L2L contains three sets of lists derived from Gene Ontology categories: Biological Process, Cellular Component, and Molecular Function. As with the L2L MDB, each GO sub-category is represented by a text file that contains annotation information and a list of the HUGO symbols of the genes assigned to that sub-category or any of its descendants. You don''''t need to download L2L to use it to analyze your microarray data. There is an easy-to-use web-based analysis tool, and you have the option of downloading your results so you can view them at any time on your own computer, using any web browser. However, if you prefer, the entire L2L project, and all of its components, can be downloaded from the download page. Platform: Online tool, Windows compatible, Mac OS X compatible, Linux compatible, Unix compatible

Proper citation: L2L Microarray Analysis Tool (RRID:SCR_013440) Copy   


  • RRID:SCR_013443

http://www.kokusan-chem.co.jp/

An Antibody supplier

Proper citation: Kokusan Chemical (RRID:SCR_013443) Copy   


  • RRID:SCR_013564

http://www.astrabiotech.de/

An Antibody supplier

Proper citation: Astra Biotech GmbH (RRID:SCR_013564) Copy   


  • RRID:SCR_013566

    This resource has 50+ mentions.

http://www.gelifesciences.com/webapp/wcs/stores/servlet/catalog/en/GELifeSciences/brands/amersham/

An Antibody supplier

Proper citation: Amersham Biosciences (RRID:SCR_013566) Copy   


  • RRID:SCR_013609

    This resource has 1+ mentions.

http://www.idoimaging.com/program/160

A tool for visualization of structural and functional MRI volumes. Features include structural and functional overlay display of volume sections, volume annotation, ROI analysis, interfacing with FSL''s brain extraction, and 3D rendering. mri3dX should run on most unix workstations, but requires Motif and OpenGL/Mesa graphics libraries.

Proper citation: mri3dX (RRID:SCR_013609) Copy   


http://www.4adi.com/

An Antibody supplier

Proper citation: Alpha Diagnostic International (RRID:SCR_013568) Copy   


  • RRID:SCR_013573

    This resource has 10+ mentions.

http://www.alexis-corp.com/

An Antibody supplier

Proper citation: Alexis (RRID:SCR_013573) Copy   


  • RRID:SCR_013572

http://www.physci.ucla.edu/research/GomezPinilla/

We are interested on the mechanisms by which environmental factors affect neuronal health. We have found that trophic factors endogenous to the brain and spinal cord can be induced by the practice of select behaviors. We have recently reported that physical activity, learning, and nutritional factors control neurotrophins in the brain. These findings opened the exciting possibility that regulation of trophic factors by behavior can be a pivotal mechanism by which specific experiences can impact the structure and function of the CNS. It may account for the improvement of CNS function after trauma provided by rehabilitative therapies. On the contrary, it may explain the decay in function in aging or degenerative diseases following a lack of stimulation. These two avenues provide direction for my research program: 1) How trophic factors induced by activity can help functional recovery following brain and spinal cord trauma. We are using several exercise models to boost the production of trophic factors in the brain and spinal cord. Our goal is to provide critical information to guide the design of behavioral therapies for the reduction of the severity of insult or disease, and to increase CNS function. 2) We are evaluating the effects of lifestyle on trophic factor production, with resulting effects on circuit remodeling, synaptic function, and cognition. We believe that changes in trophic factor as a result of select experiences can affect neuronal health with profound consequences for cognitive function. :lab :

Proper citation: Neurotrophic Lab (RRID:SCR_013572) Copy   


  • RRID:SCR_013576

http://vhp.med.umich.edu/edgewarpss.html

Edgewarp3D is a sophisticated workstation package for manipulation of 2D and 3D biomedical images and related data structures by a combination of landmark location, thin-plate spline, and image unwarping and averaging. Utilizes NLM Visible Human data set

Proper citation: Edgewarp3D (RRID:SCR_013576) Copy   


http://lifesci.com/

An Antibody supplier

Proper citation: Life Sciences Advanced Technologies inc (RRID:SCR_013415) Copy   


  • RRID:SCR_013539

    This resource has 50+ mentions.

https://www.biossusa.com/

An Antibody supplier

Proper citation: Bioss Inc (RRID:SCR_013539) Copy   


  • RRID:SCR_013383

    This resource has 1+ mentions.

http://www.mdbiosciences.com/

An Antibody supplier

Proper citation: MD Biosciences (RRID:SCR_013383) Copy   


  • RRID:SCR_013542

    This resource has 1000+ mentions.

http://www.biorbyt.com/

An Antibody supplier

Proper citation: Biorbyt (RRID:SCR_013542) Copy   


http://www.nibb.ac.jp/cortex/

The Cortical box method is an analytical method that standardizes the serial coronal sections of rodent cortex for quantitative analysis (details are written in the manual document). There are several tools necessary for this analysis. Currently, a program CxStand which is a core program of Cortical Box method is available for download. It standardizes a set of serial sections of rat cortex into standard rectangulars. Cortical box method was developed by Dr. Junya Hirokawa in the Yamamori Lab to map c-fos immunoreactivity in the rat cortex. This method was now applied to analyze the in situ data. From the original image, the cortical region is taken out and transformed, then normalized. You do this to a set of coronal sections of a rat cortex. Then, the cortex becomes a box. You can now slice the cortical box at desired lamina positions for layer maps. For more information, please refer to, http://www.nibb.ac.jp/brish/Gallery/corticalboxE.html. Requirements Cortical Box Method software is written in Labview and requires Labview version 7.0 (or later) and Vision development version 7.0 (or later). Labview and Vision are products of National Instruments (http://www.ni.com/ ). I confirmed (*) the Cortical box software works in the latest versions of Labview (ver.8.6) and Vision development (ver. 8.6), which can be downloaded without charge in the National Instruments web site (http://www.ni.com/ ) and can be used as evaluation softwares for 30 days. I tested the programs on PCs running the Windows family of operating systems. *A VI called image to image does not exist in Labview 8.6, please replace it into image to image 2. Programs CxStand ver 1.01 - (English, 680KB, Latest Version (2008/09/25 Update)) Standardization of a part of cortex into a rectangular. CBanalysis - construct 3D cortical box and create specific layer maps. DensityMap - Creating denisty map of staining signals. Copyright (c) 2008 Junya Hirokawa. All rights reserved. This program is free software; you can redistribute it and/or modify it.

Proper citation: Cortical Box Method: Quantitative analysis for gene expressions in rodent cortex (RRID:SCR_013387) Copy   


http://www.cma.mgh.harvard.edu/iatr/display.php?spec=id&ids=1

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on June 1, 2023. Cardviews is a CARDinal plane VIEWing System developed at the Center for Morphometric Analysis at the Massachusetts General Hospital. It is a tool for brain morphometry (including volumetric analysis using xvol) and this program emerged as a product of our methodological development. While some of its functionality is specifically tailored for our general segmentation and neocortical parcellation routines, the imaging interface, segmentation tools, and localization capacity have utility extending beyond the specific aims motivating its initial conception. :

Proper citation: CARDinal Plane VIEWing System (RRID:SCR_013422) Copy   



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