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On page 169 showing 3361 ~ 3380 out of 26,862 results
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https://www.lums.edu.pk/

Private research university in Lahore, Punjab, Pakistan. Founded in 1985, it is ranked as one of the most prestigious modern universities in Pakistan. In 1984, Syed Babar Ali recognized the shortage of qualified managers in the country.

Proper citation: Lahore University of Management Sciences; Lahore; Pakistan (RRID:SCR_027828) Copy   


https://vpixx.com/hardware/research-grade-lcds/

Specialized monitor engineered for scientific rigor, replacing consumer displays with research-grade control and synchronization for visual experiments. Features high-performance industrial LCD glass, and a panel controller which has been custom designed to support vision research. Includes an array of peripherals which often need to be synchronized to video during an experiment, including stereo audio stimulator, button box port for precise reaction-time measurement, triggers for electrophysiology equipment, and complete analog I/O subsystem.

Proper citation: VPixx: VIEWPixx system (RRID:SCR_027888) Copy   


https://www.siemens-healthineers.com/laboratory-diagnostics/clinical-chemistry-and-immunoassay-systems/atellica-solution-analyzers#assay-menu-area

Mid-volume, automated immunoassay system used in clinical labs to perform a wide range of tests for diagnosing and monitoring diseases, detecting infections, checking hormone levels, and assessing cardiac health, by analyzing biological samples like blood for specific proteins, hormones, and other markers with high reliability and efficiency, often integrated into the larger, flexible Atellica Solution for automated workflows.

Proper citation: Siemens: Atellica IM 1300 Analyzer (RRID:SCR_027876) Copy   


https://www.rescienceinc.com/product-page/wallac-victor2-1420-multilabel-counter?srsltid=AfmBOopaLtIXIRdCNbjfiYC8GNdEmqN7MrwvDPOecOdFWYC88r-AzI4J

Microplate reader designed for academic, clinical, and industrial laboratories to detect light-emitting or absorbing markers with Manufacturer/Brand: PerkinElmer (formerly Wallac Oy). It supports over 10 non-radioactive technologies, including fluorescence, luminescence, time-resolved fluorometry, and absorbance in various plate formats (1-864 wells). Accepts microtitration plates (up to 1536 wells), Petri dishes, slides, and filters.Equipped with shaking, scanning, and optional temperature control/liquid dispensers for kinetic studies. Operates as a stand-alone unit or integrates with robotic systems for high-throughput screening.

Proper citation: Wallac: Victor2 1420 Multilabel Counter (RRID:SCR_027955) Copy   


https://azurebiosystems.com/products/azure-imaging-systems/azure-600/

Benchtop instrument designed for life science research, specifically for imaging, detecting, and quantifying protein and nucleic acids on gels and blots. It enables multi-channel analysis, including laser infrared (IR) fluorescence, RGB visible fluorescence, and chemiluminescence, allowing for multiplexed Western blots.

Proper citation: Azure Biosystems: c600 Imaging System (RRID:SCR_027952) Copy   


https://www.leica-microsystems.com/products/light-microscopes/p/leica-dm6000-b/

Upright microscope designed for histology and pathology. With motorized z-focus, motorized and coded 7x nosepiece, fully automated transmitted light axis, and fully automated 5x or 8x fluorescence axis, the automated Leica DM6000 B research microscope provides all transmitted light contrast methods including the world’s first fully automated Differential Interference Contrast (DIC).

Proper citation: Leica: DM6000 B histology microscope (RRID:SCR_027977) Copy   


https://www.integra-biosciences.com/switzerland/en/pipetting-robots/assist-plus

Pipetting Robot enables automated pipetting with mounted any of INTEGRA’s 25 multichannel electronic pipettes or D-ONE single channel pipetting modules onto the ASSIST PLUS pipette holder. Provides different pipetting programs.

Proper citation: Integra Biosciences: ASSIST PLUS Pipetting Robot (RRID:SCR_027988) Copy   


https://spectraservices.com/mm5/graphics/00000001/MZFLIII.pdf

Fluorescence stereomicroscope offers 3D image, larger panoramic field of view, more intense fluorescence, and longer working distances. Living objects can be observed spatially in large fields of view.

Proper citation: Leica: MZ FLIII fluorescence stereomicroscope (RRID:SCR_027907) Copy   


  • RRID:SCR_028027

https://www.seekgene.com/

Chinese biotechnology company based in Beijing that designs and manufactures single cell sequencing technology used in scientific research. Company specializing in high-throughput single-cell multi-omics technology, providing tools, kits, and platforms for single-cell DNA methylation, RNA sequencing, and immune repertoire profiling. Founded in 2018, it offers the SeekOne™ Digital Droplet System.

Proper citation: SeekGene (RRID:SCR_028027) Copy   


https://www.seekgene.com/Product/SeekMateTinitanFL.html

Fluorescence cell analyzer designed for cell counting and viability detection. It can analyze up to 6 samples per run and supports both bright-field and fluorescence counting modes.

Proper citation: SeekGene: SeekMate Tinitan Fluorescence Cell Counter (RRID:SCR_028028) Copy   


https://www.ontario.ca/page/ministry-research-innovation-and-science

Ministry that supports research, commercialization and innovation taking place across Ontario through a range of programs and services like the Ontario Research Fund, Innovation Demonstration Fund and Ontario Venture Capital Fund.

Proper citation: Ontario Ministry of Research and Innovation; Ontario; Canada (RRID:SCR_000989) Copy   


http://www.ceinet.org/node/67

The CEI Science & Technology Network (S&TN), launched at the beginning of 2004, is composed of sevenTrieste-based research centres and their partners in the CEI region. With the aim to strengthen scientific and technological cooperation, the S&TN provides financial support for the organization of seminars, conferences, workshops and training courses. Young scientists from CEI countries, especially non-EU member States, are offered the opportunity to attend such activities and carry out scientific research on various topics in one of the seven Lead Institutions (LIs). The area of cooperation of each Lead Institution is separately defined in a three-year Protocol complemented by an annual Work Programme. During 2004-2009, the Network''s Lead Institutions implemented a number of activities, some of which in partnership with other institutions from CEI countries. This cooperation started up the Secondary Network whose further enhancement will be the main challenge in the future years. The CEI Research Fellowship Programme The CEI Research Fellowship Programme was established in 2005 to enable mobility across the CEI region by giving selected scientists the possibility of carrying out research in one of the Network''s Lead Institutions. In the time-frame 2005 - 2009, the request for fellowships has constantly increased and witnessed the effectiveness of the Programme. Taking this into account, in 2008 the CEI-ES started to explore EU funding opportunities in order to develop its Research Fellowship Programme. A joint proposal named CERES (CEI Research Fellowship Programme) was submitted to the European Commission under the Seventh Framework Programme for Research and Technological Development (FP7). CERES was approved and is currently under implementation. EU Funding opportunities for the CEI Science & Technology Network Following the successful experience of CERES, the CEI-ES, along with the Network''s Lead Institutions, will continue to look into funding opportunities offered by the EU with the ultimate aim to support mobility of researchers across the CEI area and promote significant progress in the S&T sector.

Proper citation: CEI Science and Technology Network (RRID:SCR_005338) Copy   


http://www.pstnet.com/software.cfm?ID=96

Designed for use in an MRI simulator, MoTrak software uses Ascension Technology?s Flock of Birds. The sensor attaches to the subject?s head and determines the position of the head in space relative to the transmitter. The sensor records angular rotations as well as positional displacements from an initially calibrated position. This information is displayed and logged by the program in real-time, allowing observation of head motion in an MRI simulator. In the simulator, the participant can simultaneously be habituated to the MRI environment, while being trained to remain still via feedback from the MoTrak system.

Proper citation: MoTrak Head Motion Tracking System (RRID:SCR_009607) Copy   


  • RRID:SCR_004841

    This resource has 100+ mentions.

http://www.brain-connectivity-toolbox.net

A large selection of complex network measures in Matlab that are increasingly used to characterize structural and functional brain connectivity datasets. Several people have contributed to the toolbox, and if you wish to contribute with a new function or set of functions, please contact Olaf Sporns. All efforts have been made to avoid errors, but users are strongly urged to independently verify the accuracy and suitability of toolbox functions for the chosen application. Please report bugs or substantial improvements.

Proper citation: Brain Connectivity Toolbox (RRID:SCR_004841) Copy   


http://www.kcl.ac.uk/ioppn/depts/neuroimaging/research/imaginganalysis/Software/PIPR.aspx

Software toolbox designed to provide machine learning methods for pre-processed imaging data allowing for two (or more) class classification in the context of drug development. The Toolbox includes implementations of Gaussian Process Classification, Support Vector Machines, Ordinal Regression and Sparse Multinomial Logistic Regression for fMRI, Structural and ASL imaging data.

Proper citation: Pharmacological Imaging and Pattern Recognition toolbox (RRID:SCR_003874) Copy   


  • RRID:SCR_002414

    This resource has 1000+ mentions.

http://cran.r-project.org/web/packages/VennDiagram/

Software providing a set of functions to generate high-resolution Venn and Euler plots. Includes handling for several special cases, including two-case scaling, and extensive customization of plot shape and structure.

Proper citation: VennDiagram (RRID:SCR_002414) Copy   


  • RRID:SCR_003220

    This resource has 10+ mentions.

https://neuro-jena.github.io/software.html#tom

Software toolbox for creating customized pediatric templates. It provides reference data based on imaging data from the NIH study of normal brain development. Using the general linear model, they statistically isolate the influence of external variables of interest on brain structure, allowing us to generate high-quality matched templates for any given group of subjects. The toolbox offers two options: # to create pediatric templates (T1) and tissue maps (GM, WM, and CSF) based on the objective 1 NIH data (n = 404), in the age range of 5-18 years, or # to assess a new reference population with regard to your variables of interest. Of note, this approach is generally applicable and in no way restricted to analyzing pediatric imaging data: for example, if you aim at investigating the effects of aging in elderly subjects, the toolbox will also allow you to create more appropriate reference (if your group is large enough to isolate such effects).

Proper citation: Template-O-Matic Toolbox (RRID:SCR_003220) Copy   


  • RRID:SCR_000354

    This resource has 10+ mentions.

http://www.clcbio.com/products/clc-main-workbench/

A suite of software for DNA, RNA and protein sequence data analysis. The software allows for the analysis and visualization of Sanger sequencing data as well as gene expression analysis, molecular cloning, primer design, phylogenetic analyses, and sequence data management.

Proper citation: CLC Main Workbench (RRID:SCR_000354) Copy   


http://www.biochem.mpg.de/en/rd/baumeister/research/ContentCEM/Software_development

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. A software platform for low dose electron tomography (ET) for all processing steps: acquisition, alignment, reconstruction, and analysis. Requires: Matlab R2008a and Image Processing Toolbox (V6.1)

Proper citation: Acquisition and Analysis for Electron Tomography (RRID:SCR_000192) Copy   


https://omictools.com/prolinks-tool

THIS RESOURCE IS NO LONGER IN SERVICE, documented July 7, 2017. Collection of inference methods used to predict functional linkages between proteins. These methods include the Phylogenetic Profile method which uses the presence and absence of proteins across multiple genomes to detect functional linkages; the Gene Cluster method which uses genome proximity to predict functional linkage; Rosetta Stone which uses a gene fusion event in a second organism to infer functional relatedness; and the Gene Neighbor method which uses both gene proximity and phylogenetic distribution to infer linkage.

Proper citation: ProLinks Database of Functional Linkages (RRID:SCR_003185) Copy   



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