Studying at the University of Verona
Here you can find information on the organisational aspects of the Programme, lecture timetables, learning activities and useful contact details for your time at the University, from enrolment to graduation.
Study Plan
This information is intended exclusively for students already enrolled in this course.If you are a new student interested in enrolling, you can find information about the course of study on the course page:
Laurea magistrale in Medical bioinformatics - Enrollment from 2025/2026The Study Plan includes all modules, teaching and learning activities that each student will need to undertake during their time at the University.
Please select your Study Plan based on your enrollment year.
1° Year
Modules | Credits | TAF | SSD |
---|
3 courses among the following
2° Year activated in the A.Y. 2022/2023
Modules | Credits | TAF | SSD |
---|
3 courses among the following
Modules | Credits | TAF | SSD |
---|
3 courses among the following
Modules | Credits | TAF | SSD |
---|
3 courses among the following
Modules | Credits | TAF | SSD |
---|
Legend | Type of training activity (TTA)
TAF (Type of Educational Activity) All courses and activities are classified into different types of educational activities, indicated by a letter.
Biomedicine and bioinformatics databases (2021/2022)
Teaching code
4S004549
Credits
12
Language
English
Scientific Disciplinary Sector (SSD)
ING-INF/05 - INFORMATION PROCESSING SYSTEMS
The teaching is organized as follows:
Biomedical and bioinformatic data management
Fundamentals of database systems Teoria
Fundamentals of database systems Lab.
Learning outcomes
Knowledge and understanding: The goal of this course is to provide the student with the knowledge and understanding of the theoretical, methodological and technological main concepts related to database systems and their use for the management of biomedical and bioinformatics data and information. Applying knowledge and understanding: The student will be able to a) define through a formal model the structure and the features of complex data collections; b) specify queries on complex data through different query languages; c) understand the advanced requirements for the management of biomedical information. Making judgements: The student will acquire the capability of autonomously evaluate different design options for complex systems, and of autonomously propose effective solutions in the application domain related to biomedicine and bioinformatics. Communication: The student will be also able to interact with different stakeholders in multidisciplinary teams, having different skills and backgrounds in biomedicine and bioinformatics. Lifelong learning skills: The student will acquire the capability of learning new methodologies and technologies related to data management and applying them in the biomedical/bioinformatics domain.
Program
------------------------
MM: Fundamentals of database systems - Theory
------------------------
- The relational data model: relational calculus, functional dependencies, normal forms and decompositions.
- Conceptual data modeling with ER and UML
- Object and object-relational databases: data model and query language of SQL 3, ER/UML for modeling object-oriented databases, mapping towards SQL3 3.
------------------------
MM: Fundamentals of database systems Lab.
------------------------
- training on SQL 3 with postgreSQL
------------------------
MM: Biomedical and bioinformatics data management
------------------------
* Electronic Medical Record systems
* Temporal databases: basic concepts, data models, query languages (TSQL2, SQL:2011).
* Temporal Clinical Databases
* Querying biomedical XML data: Xpath and Xquery
* Information retrieval techniques in Medicine
Examination Methods
------------------------
MM: Fundamentals of database systems Theory
------------------------
The exam for this module consists of a written test of up to 2.5 hours containing: (i) some exercises requiring the specification of queries and database design using one of the database models included in the program and (ii) open questions about the theory. A discussion with the candidate will follow, related to the written exam.
------------------------
MM: Fundamentals of database systems Lab.
------------------------
See the description of the theory module
------------------------
MM: Biomedical and bioinformatics data management
------------------------
The exam consists of oral exercises and questions related to the different parts of the module, intending to verify whether the student is aware of the theoretical content of the module and can apply it in real-world contexts.