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Showing 20 out of 27,007 Resources on page 804

Macquarie University Fauna Park

Situated on the corner of Culloden Rd and Tallavera Rd, Marsfield and originally farmed as market gardens, the Macquarie University Fauna Park stretches over 11Ha; 3.5Ha of which is protected Sydney Turpentine Ironbark Forest. The area is committed to non-intrusive research, e.g. learning to avoid predation, and other natural animal behaviours. Vertebrates (birds, fish, reptiles) or invertebrates (bees, flies, spiders) are observed in natural settings with minimal disruption to their normal environment. This allows the researchers to verify findings they have documented in the field. Other areas of investigation are water ecology and the competitive abilities of native trees.

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  • SciCrunch
  • 14 years ago - by Anonymous

Macquarie University Seawater Core Facility

Operating since August 2004, Seawater Facility supports academic research and undergraduate teaching in Division of Environmental Life Sciences. Facility is used by marine scientists at Macquarie and their collaborative partners, to conduct controlled experiments and to temporarily house marine specimens.

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  • 14 years ago - by Anonymous

MQ ARC Centre of Excellence for Engineered Quantum Systems

The ARC Centre of Excellence for Engineered Quantum Systems seeks to engineer complex, multi-component, quantum systems for new science and new applications. Cross-disciplinary scientific advances will link quantum physics with engineering, chemistry, and biology; and sophisticated technologies will be developed for 21st Century Australian industries. The EQuS collaboration possesses experimental capabilities in all major successful quantum technologies including spins in semiconductors, superconducting circuits, opto- and nano-mechanics, trapped atoms, and quantum photonics.

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  • SciCrunch
  • 13 years ago - by Anonymous

MQ BioFocus Research Centre

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 16,2024. We develop and apply new analytical, microscopic, molecular, multiplexed, cellular, tomographic and related technologies for biomedical diagnosis, suitable for live cells or tissues or whole body. These will enable significantly increased sensitivity, resolution, speed, accuracy, penetration, and photostability , combined with reduced toxicity and risks to health.

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  • SciCrunch
  • 13 years ago - by Anonymous

MQ Ramaciotti Centre for Gene Function Analysis

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on April 22, 2024. Ramaciotti Centre for Gene Function Analysis was established in August 2000 as a focus for the development and application of Functional Genomics in New South Wales. The Centre is consortium of five universities and five medical research centres in the Sydney-Newcastle region.

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  • SciCrunch
  • 13 years ago - by Anonymous

Beaumont Hospital; Dublin; Ireland

Hospital in Dublin.

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  • SciCrunch
  • 14 years ago - submitted by Andrea Stagg

Beaumont Health System; Michigan; USA

Medical school in Michigan, USA.

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  • SciCrunch
  • 16 years ago - submitted by Andrea Stagg

Macquarie University Photonics Research Centre

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 2,2024. We undertake fundamental and applied research in the general area of lasers and photonics, with particular focus on the following seven frontiers of optical science: astrophotonics; biophotonics; microphotonic optical systems; nano-optics and nanophotonics; photonic sources; optical sensing and imaging; ultrafast laser applications.

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  • SciCrunch
  • 14 years ago - by Anonymous

MQ Animal Behaviour Laboratory

Exploring the mechanisms responsible for behaviour of clear functional importance.

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  • SciCrunch
  • 13 years ago - by Anonymous

Velesco Pharmaceutical Services

Company mission is to consistently deliver quality, scientifically based, GMP compliant early drug development services. With our top-tier pharmaceutical industry talent, we will treat your compound as if it were our own.

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  • SciCrunch
  • 13 years ago - by Anonymous

Idaho State University Labs and Facilities

ISU has many facilities that are available for educational and research use. These include Idaho Accelerator Center in Physics Department and Nuclear Science research laboratory in Nuclear Engineering and Health Physics Department.

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  • SciCrunch
  • 13 years ago - by Anonymous

MSKCC Organic Synthesis Core Facility

GMP compliant Organic Synthesis Core Facility (OSCF) mission is to provide chemical synthesis work.

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  • SciCrunch
  • 14 years ago - by Anonymous

UChicago IGSB Next Generation Sequencing Core

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 15,2024. Laboratory: The Institute for Genomics and Systems Biology''''s Next Generation Sequencing Core (IGSB-NGS) is a state-of-the-art facility for ultra-high throughput sequencing. The core was established in 2007 at Argonne National Laboratory and is housed in Argonne''''s Computing, Environment and Life Sciences (CELS) directorate, providing world class computation power, software, and expertise critical to the acquisition, analysis, and interpretation of the unprecedented volume of genetic information being generated on next generation DNA sequencing platforms. The core provides resources and services to Argonne National Laboratory users, University of Chicago users, and to the broader scientific community. NGS is involved in a broad range of scientific research from the sequencing of metagenomic samples to both 16S and 18S rRNA amplicon sequencing for microbial community analysis using next generation sequencing. The NGS laboratory space at Argonne is approximately 1,200 square feet and is supplemented by 140 square feet of office space for the technical director, Ms. Sarah Owens, as well as two additional 140 square foot spaces for technicians. Equipment: The NGS maintains the following workflows: Illumina HiSeq2000 and MiSeq next generation DNA sequencing. The Illumina HiSeq2000 generates over 6 billion reads at 150 bp in length per read resulting in over 600 Gb worth of data across sixteen lanes available per run. The Illumina MiSeq generates over 24 million reads at 150 bp in length per read resulting in over 4.5 Gb worth of data available per run (over a single lane). Applications on both the Illumina HiSeq2000 and MiSeq include: shotgun metagenome sequencing; rRNA-based amplicon library sequencing; and genome sequencing and resequencing. All major equipment is housed within the main laboratory space including three 96-well PCR machines (Applied Biosystems), water baths, analytical balances, refrigerator/freezers (including a large-capacity -80 degree C freezer), incubators, and high and low speed centrifuges (table-top and floor models). Basic equipment and supplies for all advanced molecular techniques (deionized water (Millipore Milli-Q Advantage A10 system), multiple electrophoresis units and digital photographic documentation system) are housed here including equipment for high precision quantitation of nucleic acids (Agilent Bioanalyzer, NanoDrop, and Invitrogen Qubit). The facility also has a Covaris for sample shearing. Any additional equipment needed is located in or near by the NGS laboratory space including a real-time PCR machine (Roche LightCycler 480 with capabilities for both 96-well and 384-well plates) and a liquid handler, the Eppendorf epMotion 5075 robot. Some equipment (autoclaves, ice machine) is located in a common equipment room. Various instruments and methods have been implemented in the NGS''''s standard procedures to maximize quality. These include the use of the Roche Lightcycler 480 II, Agilent Bioanalyzer 2100, Invitrogen Qubit Fluorometer, and barcoding of libraries destined for sequencing. (The latter allows for a test sequencing run of each library to be performed to optimize sequencing lane loading density prior to each library''''s final sequencing run). Personnel overview. NGS operations are managed by Technical Director Sarah Owens. Ms. Owens has a Masters in Molecular Biology and Genetics, and 2 years experience working in high throughput facilities, with over 6 years of molecular biology experience. Ms. Owens was instrumental in trouble-shooting the application of rRNA-based amplicon sequencing for the Illumina HiSeq2000 and MiSeq, developing reproducible protocols in collaboration with Illumina. Under the guidance of the Technical Director, the NGS team helps users to determine the most efficient and cost effective approach to meet their research needs.

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  • 14 years ago - by Anonymous

Argonne National Laboratory Labs and Facilities

Argonne National Laboratory, located just outside of Chicago, is one of the U.S. Department of Energy''s largest national laboratories for scientific and engineering research to solve most important challenges in energy, environment and national security. Programmatic activities cover all aspects of innovation ecology including basic research, technology development and prototype development and testing. We regularly work with industry through exclusive licensing, joint research and variety of other mechanisms to transfer our inventions to marketplace.

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  • SciCrunch
  • 13 years ago - by Anonymous

University of Pennsylvania Genomics Analysis Core

Core facility that provides the following services: Large sequencing project support, Sanger sequencing service, High throughput DNA sequencing, Ion Torrent Personal Genome Machine sequencing, Template preparation and purification, Roche 454 sequencing, Sequence analysis and database search support, Construction of targeting vector for gene targeting, Genotyping and Fragment Analysis service, Molecular biology services, Mouse genotyping, and Ion Personal Genome Machine sequencing data analysis. The DNA Sequencing Facility provides long read, automated Sanger sequencing; microsatellite-based genotyping and fragment analysis; plasmid and BAC DNA preparation and purification; and related molecular biological services including PCR, cloning, sub-cloning, site-directed mutagenesis, and preparation of targeting vectors for gene targeting in mice. Core also provides services and support for analysis and interpretation of sequence data as well as the design of approaches to complex sequencing projects. For the last four years the facility has been providing Roche 454 sequencing service that includes library preparation, emulsion PCR and pyrosequencing for both genomic DNA and amplicons.

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  • 14 years ago - by Anonymous

Macquarie University Centre for Analytical Biotechnology

The Centre manages substantial instrumentation resources appropriate for the contemporary study of biomolecules and natural products.

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  • 14 years ago - by Anonymous

Flow Contract Site Laboratory

Contract research organization that offers non-GLP and GLP contract flow cytometry services for all drug development stages from the research and development phase to nonclinical testing and finally into the clinic.

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  • 13 years ago - by Anonymous

UMass Medical School Genomics Core Facility

A Resource for UMass Medical School and the entire UMass system, UMass Memorial Medical Center, and the research community.

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  • 14 years ago - by Anonymous

USF Lisa Muma Weitz Laboratory for Advanced Microscopy and Cell Imaging

This Imaging Core Facility provides the USF Health community with access to state-of-the-art instrumentation for biological imaging. The facility is a focal point for research involving microscopy and cell imaging at USF and a broad range of research applications are supported. A dedicated facility staff is available to provide training in instrument use, sample preparation, software applications and data analysis.

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  • 13 years ago - by Anonymous

MobileWorks

THIS RESOURCE IS OUT OF SERVICE, documented on February 3rd,2022. Experiments generate millions of datapoints, hours of video, or terabytes of images. Manually coding or classifying large datasets can require thousands of hours of time that are better spent elsewhere. MobileWorks uses a crowd of thousands of trained individuals worldwide to carry out accurate data classification, labeling, and coding on demand. We can process images, audio and video data reliably according to your criteria. We use strict filtering and testing algorithms to verify that your labeling processes are followed precisely. Each label is produced through agreement by two or more individuals working in parallel and algorithmically verified.

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  • SciCrunch
  • 13 years ago - by Anonymous