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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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On page 291 showing 5801 ~ 5820 out of 16,813 results
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  • RRID:SCR_015775

    This resource has 1000+ mentions.

https://genome.tugraz.at/genesisclient/genesisclient_description.shtml

Software for cluster analysis of microarray data. Genesis is a platform independent Java package of tools to simultaneously visualize and analyze a whole set of gene expression experiments.

Proper citation: Genesis (RRID:SCR_015775) Copy   


  • RRID:SCR_001101

    This resource has 10+ mentions.

http://www.seagis.com.au

Commercial company that specializes in measurement science software, hardware and services. Their software products include a range of photogrammetric camera calibration, measurement and event logging software. Their hardware products include calibration cubes and underwater camera housings. Services include design, construction and calibration of vision measurement systems, software development and GIS consulting.

Proper citation: SeaGIS (RRID:SCR_001101) Copy   


http://www.wuxiapptec.com

A commercial organization for pharmaceutical, biopharmaceutical, and medical device open-access capability and technology platform with global operations.

Proper citation: WuXi AppTec Laboratory Services (RRID:SCR_001217) Copy   


  • RRID:SCR_001456

    This resource has 5000+ mentions.

http://www.bdbiosciences.com/instruments/software/facsdiva/index.jsp

A collection of tools for flow cytometer and application setup, data acquisition, and data analysis that help streamline flow cytometry workflows. It provides features to help users integrate flow systems into new application areas, including index sorting for stem cell and single-cell applications, as well as automation protocols for high-throughput and robotic laboratories.

Proper citation: BD FACSDiva Software (RRID:SCR_001456) Copy   


  • RRID:SCR_002304

    This resource has 1+ mentions.

http://www.codoncode.com/TraceViewer/index.htm

A Java program that allows you to see, print, and edit DNA sequencing traces.

Proper citation: CodonCodes TraceViewer (RRID:SCR_002304) Copy   


  • RRID:SCR_001977

    This resource has 10+ mentions.

http://www.immundiagnostik.com

Commercial company that develops and provides laboratory diagnostics and other medical research products.

Proper citation: Immundiagnostik (RRID:SCR_001977) Copy   


  • RRID:SCR_002062

    This resource has 1+ mentions.

http://eitechnologygroup.com/products/amorphium-3-0/

Graphics software for a real-time approach to creating 3D graphics that offers a variety of intuitive, powerful design tools to create your 3D masterpiece. The graphics engine allows for a completely interactive environment, where all operations occur on solid objects in real time. A rendering engine allows you to produce stunning 3D imagery at virtually any resolution for Web, print, digital video, and film. Advanced capabilities include Radiosity rendering for photo-realistic scenes, Raytracing for true-to-life surface reflections and refractions, as well as variable smoke and lighting effects.

Proper citation: Amorphium (RRID:SCR_002062) Copy   


https://bli.uci.edu/laser-microbeam-program/

Biomedical technology research center dedicated to the use of lasers and optics in biology and medicine with activities in technological research and development, collaborative research, service, training, and dissemination. One of the primary goals of LAMMP is to facilitate translational research by rapidly moving basic science and technology discoveries from blackboard to benchtop to bedside. This is accomplished by combining state of the art optical technologies with specialized resource facilities for cell and tissue engineering, histopathology, pre-clinical animal models, and clinical care. The resource center has been organized into 3 cores: * Microscopy and Microbeam Technologies (MMT) for high-resolution functional imaging and manipulation of living cells and tissues * Medical Translational Technologies (MTT) for non- and minimally-invasive monitoring, treating, and imaging pre-clinical animal models and human subjects, and * Virtual Photonics Technologies (VPT) for developing computational models and methods that advance the performance of biophotonic technologies, and enhance the information content derived from optical measurements. LAMMP cores contain complementary technologies that are capable of quantitatively characterizing, imaging, and perturbing structure and biochemical function in cells and tissues with scalable resolution and depth sensitivity ranging from micrometers to centimeters.

Proper citation: Laser Microbeam and Medical Program (RRID:SCR_001409) Copy   


  • RRID:SCR_001529

    This resource has 1+ mentions.

https://clinicaltrials.gov/study/NCT01885559

Consortium established to design and implement clinical trials of treatments that might slow the progressive loss of renal function in Polycystic Kidney Disease (PKD). Two multicenter randomized, double-blind, placebo controlled clinical trials are running concurrently to study the efficacy of renin-angiotensin-aldosterone system blockade on the progression of cystic disease (kidney volume) and on the decline in renal function in autosomal dominant polycystic kidney disease (ADPKD). Study A is to study whether intensive ACE-I/ARB blockade decrease the progression of cystic disease compared to ACE-I monotherapy patients with early disease, relatively preserved renal function, and high-normal BP or hypertension. Study B is to study whether intensive ACE-I/ARB blockade as compared to ACE-I monotherapy slow the decline in kidney function, end-stage of renal disease, or death in the setting of standard blood pressure control in hypertensive patients with moderately advanced disease.

Proper citation: HALT PKD (RRID:SCR_001529) Copy   


https://www.nitrc.org/projects/nitrc_es

An on-demand, cloud based computational virtual machine pre-installed with popular NITRC neuroimaging tools built using NeuroDebian. For a listing of current NITRC-CE packages visit: http://www.nitrc.org/ce-packages. You can also use the "public Amazon Machine Interface (AMI)" to conduct your analyses on the Amazon EC2 platform.

Proper citation: NITRC Computational Environment (RRID:SCR_002171) Copy   


http://www.isletstudy.org/

Network of centers to conduct studies of islet transplantation in patients with type 1 diabetes to improve the safety and long-term success of methods for transplanting islets. It is the aim of this trial to improve methods of isolating islets, to improve techniques for the administering those transplanted islets; and to develop approaches to minimize the toxic effects of immunosuppressive drugs required for transplantation.

Proper citation: Clinical Islet Transplantation Study (RRID:SCR_001515) Copy   


http://www.ibgm.med.uva.es/files/upload/manual/casyoperatormanual.pdf

Tool for the qualitative and quantitative assessment of cell cultures including standardized cell counting methods, viability checks, aggregation correction, volumetric measurement with high measuring range dynamics. It enables to create optimal settings for measuring certain cell population numbers (based on size and gating strategies).

Proper citation: CASY Cell Counter and Analyser System Model TT (RRID:SCR_002080) Copy   


http://www.raraf.org/

Biomedical technology research center dedicated for radiobiological research with available ionizing radiations such as protons, alpha particles, and neutrons. RARAF is well-established and highly user-friendly. The focus of RARAF is the development of high-throughput single-cell/single-particle microbeams, which can deliver defined amounts of ionizing radiation into individual cells with a spatial resolution of a few microns or better. The ability of a microbeam to put double strand break damage at any specific known location in a given cell has allowed new approaches to the study of damage signaling.

Proper citation: Radiological Research Accelerator Facility (RRID:SCR_001425) Copy   


https://pubmed.ncbi.nlm.nih.gov/21129402/

Source code that allows you to calculate the different measures used in Kreuz T, Chicharro D, Greschner M, Andrzejak RG (2011): Time-resolved and time-scale adaptive measures of spike train synchrony, http://www.sciencedirect.com/science/article/pii/S0165027010006564. Journal of Neuroscience Methods,195, 92-106 & Kreuz T, Chicharro D, Andrzejak RG, Haas JS, and Abarbanel HDI (2009) Measuring multiple spike train synchrony. Journal of Neuroscience Methods 183:287-299 http://www.sciencedirect.com/science/article/pii/S0165027009003616

Proper citation: Time-resolved and time-scale adaptive measures of spike train synchrony (RRID:SCR_001667) Copy   


http://www.civm.duhs.duke.edu/

Biomedical technology research center dedicated to the development of novel imaging methods for the basic scientist and the application of the methods to important biomedical questions. The CIVM has played a major role in the development of magnetic resonance microscopy with specialized MR imaging systems capable of imaging at more than 500,000x higher resolution than is common in the clinical domain. The CIVM was the first to demonstrate MR images using hyperpolarized 3He which has been moved from mouse to man with recent clinical trials performed at Duke in collaboration with GE. More recently the CIVM has developed the molecular imaging workbench---a system dedicated to multimodality cardiopulmonary imaging in the rodent. Their collaborators are employing these unique imaging systems in an extraordinary range of mouse and rat models of neurologic disease, cardiopulmonary disease and cancer to illuminate the underlying biology and explore new therapies.

Proper citation: Center for In Vivo Microscopy (RRID:SCR_001426) Copy   


  • RRID:SCR_001424

    This resource has 1+ mentions.

http://www.njbiomaterials.org/resbio_main.htm

Biomedical technology research center that works to develop integrated tools and technologies that advance the discovery of polymeric biomaterials for regenerative medicine, the delivery of biological agents, and the next generation of medical implants. To achieve its mission, RESBIO's research is focused on the development of combinatorial and computational approaches to biomaterials design and optimization. Within this framework, RESBIO employs and uses: * Advanced multi-photon confocal laser microscopy to explore, understand, and control the response of cells in contact with artificial surfaces * Electron microscopy techniques to study the effect of nano-scale surface morphological features on cell behavior RESBIO research emphasizes the integration of a strong synthetic effort to create new biomaterial candidates with the development of rapid screening techniques for key material and biological properties relevant to the performance of a biomaterial in a given medical application.

Proper citation: RESBIO (RRID:SCR_001424) Copy   


  • RRID:SCR_001820

    This resource has 100+ mentions.

http://www.ks.uiuc.edu/Research/vmd/

A molecular visualization program for displaying, animating, and analyzing large biomolecular systems using 3-D graphics and built-in scripting. VMD supports computers running MacOS X, Unix, or Windows, is distributed free of charge, and includes source code.

Proper citation: Visual Molecular Dynamics (RRID:SCR_001820) Copy   


https://www.med.upenn.edu/CAMIPM/

Biomedical technology research center dedicated to the development and application of innovative, novel magnetic resonance and optical imaging techniques. The facility's core sections provide research and computing resources for numerous user, collaborative, and training projects. The focus of this resource is on developing instrumentation, methodologies, and data analysis techniques for the quantitative assessment of functional, structural, and metabolic parameters in humans with the use of multinuclear magnetic resonance, novel spectral, perfusion, functional, and optical imaging techniques. These technological developments are driven by collaboration with scientists from within and outside University of Pennsylvania, the primary institution. Specifically, the Resource is focused on the development of quantitative, noninvasive MR and optical imaging based biomarkers for studying tissue metabolism and function, with an eye towards clinical translation through early diagnosis. The Center also provides support in the development and evaluation of new therapies in a variety of diseases.

Proper citation: Center for Magnetic Resonance and Optical Imaging (RRID:SCR_001428) Copy   


https://journals.aps.org/pre/abstract/10.1103/PhysRevE.80.026217

Source code that allows you to calculate the different measures used in Chicharro D, Andrzejak RG (2009): Reliable detection of directional couplings using rank statistics. Physical Review E, 80, 026217.

Proper citation: Reliable detection of directional couplings using rank statistics (RRID:SCR_001662) Copy   


  • RRID:SCR_001539

    This resource has 1+ mentions.

https://sites.cscc.unc.edu/cscc/projects/RIVUR%20

Multicenter, randomized, double-blind, placebo-controlled trial is designed to determine whether daily antimicrobial prophylaxis is superior to placebo in preventing recurrence of urinary tract infection (UTI) in children with vesicoureteral reflux (VUR). The basic eligibility criteria are: (1) age at randomization of at least 2 months, but less than 6 years, (2) a diagnosed first febrile or symptomatic UTI within 42 days prior to randomization that was appropriately treated, and (3) presence of Grade I-IV VUR based on voiding cystourethrogram (VCUG). Patients will be randomly assigned to treatment for 2 years with daily antimicrobial prophylaxis (trimethoprim-sulfamethoxazole) or placebo. The study is designed to recruit 600 children (approximately 300 in each treatment group) over an 18-24 month period. The primary endpoint is recurrence of UTI. In addition, patients will be evaluated for secondary endpoints related to renal scarring and antimicrobial resistance. Scarring will be determined based on renal scintigraphy by 99mTc dimercaptosuccinic (DMSA) scan. Quality of life, compliance, safety parameters, utilization of health resources, and change in VUR will be assessed periodically throughout the study.

Proper citation: RiVuR (RRID:SCR_001539) Copy   



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