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.

Academic calendar

The academic calendar shows the deadlines and scheduled events that are relevant to students, teaching and technical-administrative staff of the University. Public holidays and University closures are also indicated. The academic year normally begins on 1 October each year and ends on 30 September of the following year.

Academic calendar

Course calendar

The Academic Calendar sets out the degree programme lecture and exam timetables, as well as the relevant university closure dates..

Definition of lesson periods
Period From To
1° e 2° semestre (corsi annuali) PROFESSIONI SANITARIE Oct 1, 2021 Sep 30, 2022
1 SEMESTRE PROFESSIONI SANITARIE Oct 1, 2021 Dec 23, 2021
2 SEMESTRE PROFESSIONI SANITARIE Jan 10, 2022 Sep 30, 2022
Exam sessions
Session From To
TERP SESSIONE INVERNALE 2 ANNO Dec 13, 2021 Jan 28, 2022
TERP SESSIONE INVERNALE 1-3 ANNO Jan 10, 2022 Feb 4, 2022
TERP SESSIONE ESTIVA 2 ANNO May 23, 2022 Jun 24, 2022
TERP SESSIONE ESTIVA 1-3 ANNO Jul 4, 2022 Jul 29, 2022
TERP SESSIONE AUTUNNALE Sep 1, 2022 Sep 30, 2022
Degree sessions
Session From To
TERP SESSIONE AUTUNNALE Nov 1, 2022 Dec 23, 2022
TERP SESSIONE PRIMAVERILE Mar 1, 2023 Apr 30, 2023
Holidays
Period From To
Festa di Tutti i Santi Nov 1, 2021 Nov 1, 2021
Festa dell'Immacolata Concezione Dec 8, 2021 Dec 8, 2021
Festività natalizie Dec 24, 2021 Jan 2, 2022
Festività pasquali Apr 15, 2022 Apr 19, 2022
Festa della Liberazione Apr 25, 2022 Apr 25, 2022
FESTA DEL LAVORO May 1, 2022 May 1, 2022
Festa della Repubblica Jun 2, 2022 Jun 2, 2022
Santo Patrono - Rovereto Aug 5, 2022 Aug 5, 2022
Chiusura estiva Aug 15, 2022 Aug 20, 2022
Other Periods
Description Period From To
TIR TERP 3 ANNO 1 SEM 1 PERIODO TIR TERP 3 ANNO 1 SEM 1 PERIODO Nov 15, 2021 Dec 22, 2021
TIR TERP 2 ANNO 1 SEM TIR TERP 2 ANNO 1 SEM Jan 31, 2022 Mar 11, 2022
TIR TERP 1 ANNO 2 SEMESTRE 1 PERIODO TIR TERP 1 ANNO 2 SEMESTRE 1 PERIODO Mar 14, 2022 Apr 8, 2022
TIR TERP 3 ANNO 1 SEM 2 PERIODO TIR TERP 3 ANNO 1 SEM 2 PERIODO Mar 21, 2022 May 3, 2022
TIR TERP 3 ANNO 2 SEM TIR TERP 3 ANNO 2 SEM May 16, 2022 Jun 24, 2022
TIR TERP 1 ANNO 2 SEMESTRE 2 PERIODO TIR TERP 1 ANNO 2 SEMESTRE 2 PERIODO May 26, 2022 Jun 24, 2022
TIR TERP 2 ANNO 2 SEM 1 PERIODO TIR TERP 2 ANNO 2 SEM 1 PERIODO Jun 27, 2022 Jul 29, 2022
TIR TERP 2 ANNO 2 SEM 2 PERIODO TIR TERP 2 ANNO 2 SEM 2 PERIODO Aug 29, 2022 Sep 28, 2022

Exam calendar

Exam dates and rounds are managed by the relevant Medicine Teaching and Student Services Unit.
To view all the exam sessions available, please use the Exam dashboard on ESSE3.
If you forgot your login details or have problems logging in, please contact the relevant IT HelpDesk, or check the login details recovery web page.

Exam calendar

Should you have any doubts or questions, please check the Enrolment FAQs

Academic staff

A B C D E F G L M N P R S T V Z

Aleotti Renata

symbol email renata.aleotti@apss.tn.it symbol phone-number 0461-364187 364174 o 0464 582475

Amaddeo Francesco

symbol email francesco.amaddeo@univr.it symbol phone-number 045 8124930

Barbui Corrado

symbol email corrado.barbui@univr.it symbol phone-number +39 0458126418

Bellani Marcella

symbol email marcella.bellani@univr.it symbol phone-number 045 8126691

Berti Loretta

symbol email loretta.berti@univr.it symbol phone-number +39 0458127442

Cazzoletti Lucia

symbol email lucia.cazzoletti@univr.it symbol phone-number 045 8027656

Chiesa Silvia

symbol email silvia.chiesa@apss.tn.it

Dal Prà Ilaria Pierpaola

symbol email ilaria.dalpra@univr.it symbol phone-number +39 045 802 7161

Girelli Massimo

symbol email massimo.girelli@univr.it symbol phone-number +39 0458027106

Gotte Giovanni

symbol email giovanni.gotte@univr.it symbol phone-number 0458027694

Lasalvia Antonio

symbol email antonio.lasalvia@univr.it symbol phone-number 045 8283901

Latterini Enrica

symbol email enrica.latterini@apss.tn.it

Laudanna Carlo

symbol email carlo.laudanna@univr.it symbol phone-number 045-8027689

Meyer Anja

symbol email anja.meyer@univr.it

Micciolo Rocco

symbol email rocco.micciolo@economia.unitn.it

Pertile Riccardo

symbol email riccardo.pertile@apss.tn.it symbol phone-number 0461 904694

Ruggeri Mirella

symbol email mirella.ruggeri@univr.it symbol phone-number 0458124953

Tagliaro Franco

symbol email franco.tagliaro@univr.it symbol phone-number 045 8124618-045 8124246

Tam Enrico

symbol email enrico.tam@univr.it symbol phone-number +39 045 8425149

Tamburin Stefano

symbol email stefano.tamburin@univr.it symbol phone-number +39 0458124285 (segreteria)

Trabetti Elisabetta

symbol email elisabetta.trabetti@univr.it symbol phone-number 045/8027209

Zamboni Giulia

symbol email giulia.zamboni@univr.it symbol phone-number 0458124301

Zancanaro Carlo

symbol email carlo.zancanaro@univr.it symbol phone-number 045 802 7157 (Medicina) - 8425115 (Scienze Motorie)

Zoccante Leonardo

symbol email leonardo.zoccante@aovr.veneto.it symbol phone-number 045 812 4773

Study Plan

The 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 enrolment year.

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.




S Placements in companies, public or private institutions and professional associations

Teaching code

4S000089

Credits

4

Coordinatore

Elisabetta Trabetti

Language

Italian

Also offered in courses:

The teaching is organized as follows:

BIOLOGIA APPLICATA E GENETICA

Credits

2

Period

1 SEMESTRE PROFESSIONI SANITARIE

Academic staff

Elisabetta Trabetti

BIOCHIMICA

Credits

2

Period

1 SEMESTRE PROFESSIONI SANITARIE

Academic staff

Giovanni Gotte

Learning outcomes

The course aims to provide the knowledge of biology, biochemistry and genetics necessary for understanding the physiological and pathological processes related to the health and disease of individuals in different age groups. Biological and biochemical knowledge will contribute to the acquisition of skills aimed at promoting the adoption of practices that improve the health status of the person and nursing assistance To complete the course the student will have acquired: basic knowledge of organic chemistry and biochemistry on the structure-function relationships of the main classes of macromolecules biological, on the metabolic regulation at the molecular level and the energy transformations of the biochemical processes; knowledge of cellular and genetic biology related to the structural, functional and molecular characteristics of the cell; understanding of the applications of genomic knowledge to medicine. to understand cellular processes common to all living organisms and in particular the basic mechanisms that regulate metabolic activity, reproduction and cellular interactions and the mechanisms of transmission of genetic diseases in humans. BIOCHEMISTRY MODULE: The course aims to provide: - basic knowledge of general and organic chemistry preparatory to biochemistry. - knowledge on the structure-function relationships of the main classes of biological macromolecules and on metabolic regulation at the molecular level. - knowledge on the interconnections existing between the different biochemical processes and the energy transformations connected to them. At the end of the course the student / student must demonstrate to have acquired terminologies and notions useful for a critical analysis of the vital biochemical processes in order to achieve autonomy of critical and global evaluation of the processes themselves. APPLIED BIOLOGY MODULE: The course aims to provide the basic knowledge of biology and human genetics describing in particular the basic principles on which the biology is based, the structural, functional and molecular characteristics of the cellular processes common to all living organisms, the transmission of hereditary traits and the molecular basis of genetic diseases, while developing an appropriate language. In particular, aspects of human biology of particular biomedical interest will be highlighted during the course. At the end of the course the student will be able to understand the mechanisms that regulate life, cell reproduction, interactions between cells and to recognize the different modes of transmission of Mendelian characters and genetic diseases in humans. Essential information to deal with the subsequent teachings that the student will meet during the course of study.The course aims to provide the knowledge of biology, biochemistry and genetics necessary for understanding the physiological and pathological processes related to the health and disease of individuals in different age groups. Biological and biochemical knowledge will contribute to the acquisition of skills aimed at promoting the adoption of practices that improve the health status of the person and nursing assistance To complete the course the student will have acquired: basic knowledge of organic chemistry and biochemistry on the structure-function relationships of the main classes of macromolecules biological, on the metabolic regulation at the molecular level and the energy transformations of the biochemical processes; knowledge of cellular and genetic biology related to the structural, functional and molecular characteristics of the cell; understanding of the applications of genomic knowledge to medicine. to understand cellular processes common to all living organisms and in particular the basic mechanisms that regulate metabolic activity, reproduction and cellular interactions and the mechanisms of transmission of genetic diseases in humans. BIOCHEMISTRY MODULE: The course aims to provide: - basic knowledge of general and organic chemistry preparatory to biochemistry. - knowledge on the structure-function relationships of the main classes of biological macromolecules and on metabolic regulation at the molecular level. - knowledge on the interconnections existing between the different biochemical processes and the energy transformations connected to them. At the end of the course the student / student must demonstrate to have acquired terminologies and notions useful for a critical analysis of the vital biochemical processes in order to achieve autonomy of critical and global evaluation of the processes themselves. APPLIED BIOLOGY MODULE: The course aims to provide the basic knowledge of biology and human genetics describing in particular the basic principles on which the biology is based, the structural, functional and molecular characteristics of the cellular processes common to all living organisms, the transmission of hereditary traits and the molecular basis of genetic diseases, while developing an appropriate language. In particular, aspects of human biology of particular biomedical interest will be highlighted during the course. At the end of the course the student will be able to understand the mechanisms that regulate life, cell reproduction, interactions between cells and to recognize the different modes of transmission of Mendelian characters and genetic diseases in humans. Essential information to deal with the subsequent teachings that the student will meet during the course of study.

Program

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MM: BIOLOGIA APPLICATA E GENETICA
------------------------
• Characteristics of the living beings
• Chemistry of living organisms and biological molecules
• prokaryotic and eukaryotic cell: organization of the cell; internal membranes and compartmentalization; organelles, characteristics and functions: nucleus, ribosomes, RER, REL, Golgi, lysosomes, peroxisomes, cytoskeleton, cell wall, extracellular matrix. Animal and plant cells. Mitochondria and plastids (chloroplasts, amyloplasts, chromoplasts) and endosymbiont theory.
• Biological membranes: structure and proposed models; passage of materials across cell membranes: passive transport (facilitated diffusion and simple), osmosis, directly and indirectly active transport, co-transport. Exocytosis and endocytosis. Anchoring, tight and gap cell junctions in animal and plant cells.
• Cell communication: types of cellular communication: endocrine, paracrine, autocrine and iuxtacrine. Sending and receiving the signal.
• Organization of DNA in chromosomes, mitosis and meiosis. DNA and proteins, nucleosomes, heterochromatin, euchromatin, chromosome condensation. The cell cycle and its regulation. Mitosis, meiosis and sexual reproduction
• DNA and its role in heredity. DNA structure and replication.
• Gene expression: transcription, genetic code and translation. Gene definition.
• DNA mutations and mutagenesis
• Hereditary character transmission and Mendel’s laws; definition of phenotype, genotype, locus, gene, dominant and recessive allele, homozygosity and heterozygosity. Segregation and independent assortment. Independence and association. Crossing-over and recombination. Genetic determination of sex. Gene interactions. Incomplete dominance, condominance, multiple alleles, epistasis and polygeny.
• The human genome: karyotype analysis and pedigrees; autosomal recessive, autosomal dominant, X-linked diseases.
------------------------
MM: BIOCHIMICA
------------------------
PREPARATORY CHEMISTRY (several notions are included in the basic knowledge required)
1. Atomic structure and periodic properties of the elements: matter composition, atom, atomic particles; atomic theory; quantum numbers, and orbitals; electronic configuration, periodic table and chemical reactivity of the elements; electronic affinity, electronegativity.
2. The chemical bond: molecules and ions; ionic and covalent bond; intermolecular forces; hydrogen bond.
3. Solutions and acid-base reactions: concentration of the solutions, acid-base theories of Arrhenius and Brőnsted-Lowry; hydracids, hydroxides, oxyacids; acid-base reactions; pH and buffer solutions.
4. Organic chemistry notions: carbon atom properties; hybrid orbitals; organic compounds classification: functional groups; hydrocarbons; alcohols, ethers, thiols, amines, aldehydes and ketones; carboxylic acids, esters, anhydrides.

BIOCHEMISTRY
1. Constitutive elements of the living matter: polymeric structure of the biological macromolecules.
2. Protein structure and function: aminoacid classification, buffering power, peptide bond, levels of protein structure; fibrous and globular proteins; hemoglobin and myoglobin: structure, function, factors influencing the oxygen bond; hemoglobin variants; enzymes: classification, role in the chemical reactions, regulation of the enzymatic activity.
3. Vitamins: hydro- and lypo-soluble vitamins; co-enzymes.
4. Bio-energetics: metabolism; chemical transformations in the cell; spontaneous and non-spontaneous reactions of the metabolic reactions; ATP as “energy exchange coin”; biologically relevant redox reactions.
5. Carbohydrates structure and metabolism: mono- and disaccharides; polysaccharides; glycoconjugates; glycolysis and its regulation; gluconeogenesis; hints of the penthose phosphate pathway; synthesis of the glycogen.
6. Citric acid cycle and oxidative phosphorylation: mitochondria; acetyl-CoA synthesis; citric acid cycle control; respiratory chain and electron transport; ATP synthesis.
7. Lipids structure and metabolism: structural lipids and biological membranes; cholesterol; stock-reserve lipids; lipids digestion and fatty acid β-oxydation; keton bodies formation; hints of fatty acids biosynthesis.
8. Aminoacid metabolism: hints of gluco- and keto-forming aminoacids; transamination and oxidative deamination; the urea cycle.

Students are invited to choose a textbook of Biochemistry and Biology among those indicated in each module form.

Bibliography

Visualizza la bibliografia con Leganto, strumento che il Sistema Bibliotecario mette a disposizione per recuperare i testi in programma d'esame in modo semplice e innovativo.

Examination Methods

Goal of the exam for the Course of Biomolecular fondamentals of Life: to verify students' advanced comprehension of the whole program topics and their capability to expose their reasoning in a critical and precise manner using appropriate scientific terms.

6 examination sessions are foreseen in the whole Academic Year: 2 in the Winter Session after the Course ending, 2 in the Summer Session, and 2 in the Autumn session.
Students will undertake both modules (written test made of multiple choice quizzes and open questions) if they have attended at least 75% of the frontal teaching activity of the entire Course; further information about exam organization is available in each module form.

The final mark (/out of 30) will derive from the evaluation of both modules. Students will pass the examination if the overall rating of both modules, based on the weighted average of credits, is greater than or equal to 18/30. Students can retire or refuse the proposed mark.
Students who do not pass both exam modules in the same session will have to take the missing/insufficient module in one of the subsequent sessions, if only within the extra winter session of the next Academic Year. From the next summer session, students will need to take both modules.

Career prospects


Module/Programme news

News for students

There you will find information, resources and services useful during your time at the University (Student’s exam record, your study plan on ESSE3, Distance Learning courses, university email account, office forms, administrative procedures, etc.). You can log into MyUnivr with your GIA login details.

Graduation


Gestione carriere


Area riservata studenti


Orario lezioni

Si pubblicano gli orari delle lezioni relativi 1° semestre.

Gli orari potrebbero subire alcune modifiche; pertanto si consiglia di consultare l'orario delle lezioni giornalmente nell‘area riservata MyUnivr e/o ORARIO LEZIONI e la bacheca del corso presente nella sede didattica

Attachments

Title Info File
Doc_Univr_pdf TRP 1 ANNO - 1 SEMESTRE 63 KB, 28/09/22 
Doc_Univr_pdf TRP 2 ANNO - 1 SEMESTRE agg. 30.09 53 KB, 04/10/22 
Doc_Univr_pdf TRP 3 ANNO - 1 SEMESTRE 48 KB, 28/09/22 

Appelli d'esame

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