
QBench is a cloud-based Laboratory Information Management System (LIMS) designed to help laboratories manage samples, workflows, data, inventory, reporting, quality processes, and client interactions in one platform.
Labs use QBench to manage operations from order placement and sample processing through results and automated reporting. The platform is highly configurable, allowing laboratories to build workflows, define custom data fields, and automate processes around the way their lab operates.
QBench helps reduce manual work by connecting instruments, software, and other systems through file parsers and a robust API. These integrations can automate data transfer, reduce repetitive data entry, and lower the risk of transcription errors.
Key capabilities include sample and workflow management, configurable workflows and custom fields, workflow automation, instrument and system integrations, file parsing, API connectivity, inventory management, client portals, automated reporting, analytics, and integrated Quality Management System (QMS) capabilities.
QBench is designed to adapt as laboratory processes change. Teams can modify workflows, fields, and automations without relying heavily on custom development.
As a cloud-based platform, QBench brings laboratory data, workflows, automation, quality management, and reporting into one centralized system. Customers are also supported by a team that includes former bench scientists who understand laboratory workflows and provide guidance during implementation and ongoing use.
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RegDesk is the most comprehensive AI-enabled RIMS platform for Medical Devices, Pharmaceuticals, and IVD companies.
• Our proprietary Regulatory Intelligence for over 120+ countries is translated and accessible in a standard format. In addition, it provides alerts on evolving regulatory changes
• Our AI-powered Application Builder allows RA teams to prepare and publish global applications in 1/10th of the time
• Our Change Assessment capability helps RA teams understand the impact of the change(s) on an existing product(s) and the action required
• Our Distributor Collaboration provides seamless workflow solutions to interact, communicate, and share documents with external business partners
• Our Standards Management makes it easy for RA teams to search and manage not only international but also country-specific standards
• Our Tracking & Reporting functionality allows teams to track regulatory projects across the globe, receive renewal notifications, and generate reports on KPIs within seconds
For more information, visit our website.
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ESMC
ESMC represents the newest advancement in the ESM series of protein language models, pushing the boundaries of representation learning within the field of protein biology. With training on billions of evolutionary sequences, it adeptly captures representations that encapsulate a mechanistic understanding of protein structure and function. The model utilizes a transformer architecture, focusing on sequences as its primary modality, and is trained on a vast dataset comprising up to 6 billion proteins. ESMC is tailored for various protein science applications, such as predicting structures, annotating functions, designing proteins, and exploring evolutionary connections among proteins. Additionally, it possesses the capability to create novel proteins based on partial sequences, structures, or functional constraints, thereby enabling researchers to investigate innovative avenues in protein design and biological discovery. Accessible through the Biohub Platform, ESMC can be utilized via an API and the ESM Python package, which includes quickstart resources for installation, API key generation, and platform connectivity, ensuring a seamless experience for users. This comprehensive accessibility encourages a broader engagement with protein research and enhances collaborative efforts in the scientific community.
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Claude Mythos 5.1
Claude Mythos 5.1 represents Anthropic's latest advancement in the Mythos-class of models, tailored for sophisticated applications in cybersecurity, biology, scientific investigation, programming, and extensive knowledge-oriented tasks. While it shares the same foundational architecture as Claude Fable 5.1, it is differentiated by unique safety measures: Fable 5.1 is widely accessible, whereas Mythos 5.1 is limited to select trusted access programs designed with specific safeguards for cybersecurity and life sciences research. This model establishes a new benchmark in performance for autonomous coding and showcases unparalleled cyber capabilities among all Anthropic models released thus far. In the realm of scientific research, Mythos 5.1 can effectively handle specialized tools and intricate workflows related to molecular design, computational biology, and various technical fields. During testing by Anthropic, it successfully engineered high-affinity protein binders for multiple targets, achieving its highest recorded hit rate to date. Additionally, it demonstrated proficiency in optimizing seven different open-source deep learning models focused on protein and genomics. By pushing the boundaries of what is possible, Mythos 5.1 is positioned to make significant contributions to future research and development endeavors.
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