Introduction to the Program

Delving into the current state of the art of the central dogma in bioinformatics and computing in a 100% online way is now a possible and plausible academic option thanks to this Postgraduate certificate”

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The automation of processes, as well as the development of increasingly specific and effective computational strategies have been two of the major achievements of bioinformatics and from which others have emerged, such as the digitization of resources and technologies and the massive processing of clinical data. Thanks to this, it is now possible to carry out research with a greater guarantee of success in fields such as genetics, pharmacology or medicine, resulting in the increasingly real personalization of treatments.

In all these processes, computer scientists have played a leading role, not only in developing the tools to carry them out, but also in adapting them to the health care sector. For this reason, and in view of the incessant growth of technology, TECH and its team of experts have considered it necessary to develop a program that allows professionals in this field to specialize on the basis of exhaustive knowledge of the central dogma of bioinformatics and computing. In this way, this Postgraduate Certificate in question arises, through which the graduate will be able to delve into the innovations of clinical databases, as well as networks and information search engines in E-Health. Additionally, they will be able to work on genetic pattern matching, as well as on the main modeling and simulation strategies.

For this purpose, 150 hours of the best material will be available, which will be presented in different formats and 100% online. All the content will be available on the Virtual Campus from the beginning of the academic activity and can be downloaded to any device with an Internet connection. Therefore, the computer scientist will be able to organize the program course in a personalized way, attending a training adapted to their needs and to the demands of the current labor market.

Would you like to include in your skills catalog the mastery of the main databases for bioinformatics computing? Enroll in this program and get it in less than 6 weeks"

This Postgraduate certificate in Bioinformatics Computing: Medical Process Digitization and Automation contains the most complete and up-to-date educational program on the market. The most important features include:

  • The development of case studies presented by experts in Bioinformatics Computing
  • The graphic, schematic, and practical contents with which they are created, provide scientific and practical information on the disciplines that are essential for professional practice
  • The practical exercises where the self-evaluation process can be carried out to improve learning
  • Its special emphasis on innovative methodologies
  • Theoretical lessons, questions to the expert, debate forums on controversial topics, and individual reflection assignments
  • Content that is accessible from any fixed or portable device with an Internet connection

The perfect opportunity to work on LAN, WAN, MAN and PAN communication models, their protocols and topologies, as well
as hardwares in datacenters for computing"

The program’s teaching staff includes professionals from the sector who contribute their work experience to this educational program, as well as renowned specialists from leading societies and prestigious universities.

Its multimedia content, developed with the latest educational technology, will allow the professional a situated and contextual learning, that is, a simulated environment that will provide an immersive training programmed to train in real situations.

The design of this program focuses on Problem-Based Learning, in which the professional will have to try to solve the different professional practice situations
that will arise throughout the academic course. For this purpose, the student will be assisted by an innovative interactive video system created by renowned experts.

The best program in the current academic market to delve into the intricacies of the most used search engines in bioinformatics and E-Health"

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You will have absolute freedom to connect whenever you need to, without schedules or face-to-face classes, but through an experience in which you decide when and from where to take it"

Syllabus

The main objective of TECH is to develop complete, dynamic and multidisciplinary programs. For this reason, for each of them, TECH selects the best theoretical and practical material, which is then complemented with a variety of high quality additional content: detailed videos, research articles, readings, news, dynamic summaries... In this way, the graduate has the possibility to deepen in a personalized way in the different aspects of the syllabus, attending a training tailored to their needs and adapted to their requirements.

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You will also work on the use of the most innovative and effective visualization and rendering tools in the IT and biotechnology sector"

Module 1. Computation in Bioinformatics

1.1. Central Tenet in Bioinformatics and Computing. Current State 

1.1.1. The Ideal Application in Bioinformatics 
1.1.2. Parallel Developments in Molecular Biology and Computing 
1.1.3. Dogma in Biology and Information Theory 
1.1.4. Information Flows 

1.2. Databases for Bioinformatics Computing 

1.2.1. Database 
1.2.2. Data management 
1.2.3. Data Life Cycle in Bioinformatics 

1.2.3.1. Use 
1.2.3.2. Modifications 
1.2.3.3. Archive 
1.2.3.4. Reuse 
1.2.3.5. Discarded 

1.2.4. Database Technology in Bioinformatics 

1.2.4.1. Architecture 
1.2.4.2. Database Management 

1.2.5. Interfaces for Bioinformatics Databases 

1.3. Networks for Bioinformatics Computing 

1.3.1. Communication Models. LAN, WAN, MAN and PAN Networks 
1.3.2. Protocols and Data Transmission 
1.3.3. Network Topologies 
1.3.4. Datacenter Hardware for Computing 
1.3.5. Security, Management and Implementation 

1.4. Search Engines in Bioinformatics 

1.4.1.  Search Engines in Bioinformatics 
1.4.2. Search Engine Processes and Technologies in Bioinformatics 
1.4.3. Computational Models: Search and Approximation Algorithms 

1.5. Data Display in Bioinformatics 

1.5.1. Displaying Biological Sequences 
1.5.2. Displaying Biological Structures 

1.5.2.1. Visualization Tools 
1.5.2.2. Rendering Tools 

1.5.3. User Interface in Bioinformatics Applications 
1.5.4. Information Architectures for Displays in Bioinformatics 

1.6. Statistics for Computing 

1.6.1. Statistical Concepts for Computing in Bioinformatics 
1.6.2. Use Case: MARN Microarrays 
1.6.3. Imperfect Data. Statistical Errors: Randomness, Approximation, Noise and Assumptions 
1.6.4. Error Quantification: Precision and Sensitivity 
1.6.5. Clustering and Classification 

1.7. Data Mining 

1.7.1. Mining and Data Computing Methods 
1.7.2. Infrastructure for Data Mining and Computing 
1.7.3. Pattern Discovery and Recognition 
1.7.4.  Machine Learning and New Tools 

1.8. Genetic Pattern Matching 

1.8.1.  Genetic Pattern Matching 
1.8.2.  Computational Methods for Sequence Alignments 
1.8.3   Pattern Matching Tools 

1.9. Modelling and Simulation 

1.9.1. Use in the Pharmaceutical Field: Drug Discovery 
1.9.2.  Protein Structure and Systems Biology 
1.9.3. Available Tools and Future 

1.10. Collaboration and Online Computing Projects 

1.10.1. Grid Computing 
1.10.2. Standards and Rules Uniformity, Consistency and Interoperability 
1.10.3. Collaborative Computing Projects

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Delve into computing and Bioinformatics and explore all the professional possibilities of this field"

Postgraduate Certificate in Bioinformatics Computing: Medical Process Digitization and Automation

TECH's School of Informatics offers the Postgraduate Certificate in Bioinformatics Computing: Digitization and Automation of Medical Processes, a high-quality specialization aimed at professionals in the field of informatics who seek to acquire advanced knowledge about the digitization and automation of medical processes. Taught by experts in bioinformatics and medical technologies, the course focuses on the practical application of theoretical knowledge, providing students with tools that allow them to apply research in real situations. Among the topics covered are the digitization of medical records, diagnostic automation, artificial intelligence applied to medicine and bioinformatics. Digitization and automation of medical processes is a constantly evolving field, and this Postgraduate Certificate provides comprehensive and up-to-date academic instruction on the latest developments in the area. Students will acquire advanced skills in bioinformatics, medical technologies and data analytics for the management and automation of medical processes, enabling them to make informed decisions and contribute to the advancement of medicine.

Direct your career towards bioinformatics

Students will have access to state-of-the-art facilities and resources, as well as highly qualified faculty with extensive experience in the field of bioinformatics and medical technologies. The Postgraduate Certificate in Bioinformatics Computing is of particular interest to professionals and students in the field of informatics and medicine who are looking to specialize in the digitization and automation of medical processes, as well as those interested in research in bioinformatics and medical technologies. The update provided will enable students to develop advanced skills in the field, allowing them to contribute to the advancement of medicine and improve the quality of life of patients. In conclusion, the Postgraduate Certificate in Bioinformatics Computing: Digitization and Automation of Medical Processes is an essential specialization for those interested in the digitization and automation of medical processes. With this postgraduate course, students will have the necessary skills to plan and execute high quality projects in bioinformatics and medical technologies, and thus contribute to the advancement of medicine.