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Every day, biology researchers at academic and non-profit institutions everywhere spend hours inputting data into computational analysis platforms and yet more hours double-checking their inputs, waiting on computations, and interpreting data for their team. Anyone in the industry can tell you that there are multiple standards for computation, and any literature review will encounter dozens of different computational platforms and strategies.
MiLaboratories sees all this lost time and these confusing complexities as a problem to be solved, and its solution is here: the Platforma.bio computational biology platform. The goal of this new platform is to streamline and simplify the task of biological analysis and make it more accessible to researchers who need it.
The UI-First Design
“At MiLaboratories, our focus is on creating sufficiently flexible yet user-friendly tools that facilitate the analysis of next-generation sequencing data,” says Stan Poslavsky, CEO of MiLaboratories, which is the leader in developing best-in-class software specifically for immunological data analysis. “Platforma.bio represents a major leap forward in achieving this goal, offering a UI-first approach that transforms complex processes into manageable, easy-to-combine blocks.”
Designed to be perfect for any research project that requires biological analysis, the simple, intuitive UI of the Platforma.bio platform is the real game-changer. It makes entering data simpler, easier, and less time-consuming, and the outcomes of the analysis are likewise rendered with easy interpretation in mind. The people at MiLaboratories feel like researchers have enough on their plate trying to detangle the mysteries of life and the universe without also having to decode the inscrutable results of their own analysis.
Essential Computational Features
Platforma.bio emphasizes every essential feature that researchers need in their computational platforms. The list highlights their intuitive interface first and foremost, of course, but there are a host of other industry-leading features. These include efficient iterative analysis capabilities, flexible deployments across diverse computational environments, and more advanced features such as online deduplication and reliable recovery of cached analysis results.
Another standout feature is the initial analysis blocks for T-cell and antibody analysis, which are meant for specialized research. MiLaboraties promises that they are working on numerous additional blocks for multiple NGS data analysis fields.
Future-Forward Technology
Platforma.bio includes comprehensive groundwork for AI-driven solutions that will help researchers navigate the complexities of data analysis and interpretation. This future-focused groundwork leaves room for the platform to develop as technology advances, setting it up to repeatedly revolutionize how biological analysis is done.
This kind of future thinking is a hallmark of how MiLaboratories operates. Among its developmental assets are partnerships with industry leaders who will invent the next most important technologies in the computational biology market. MiLaboratories is committed to staying on the cutting edge of development.
MiLaboratoreis is the same team behind MiXCR, which has established a strong reputation in the field of immunology research through its adoption top-tier institutions like Stanford, MIT, and Johns Hopkins University, embarks on the development of new solutions with a certain level of market anticipation and expectations. Here’s why the expectations from the broader community are high.
The Most Accessible Computational Platform
To ensure that the research community can begin to see the benefits of Platforma.bio right away, MiLaboratories is releasing the platform for free to academic and non-profit organizations. They are also making sure that comprehensive customer support, including extended options, is accessible to users. They want all users to leverage fully the platform’s capabilities. The goal is to change how computational biological analysis is done, starting now.
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