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Resolution Of 16 April 2013, Of The University Of Valencia, Which Publishes Curriculum Of Master In Biomedical Engineering (Joint Master Of The Universities Universidad Politécnica De Valencia And Valencia).

Original Language Title: Resolución de 16 de abril de 2013, de la Universidad de Valencia, por la que se publica el plan de estudios de Máster en Ingeniería Biomédica (Máster conjunto de las universidades Politècnica de València y Valencia).

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TEXT

Obtained the verification of the curriculum by the Council of Universities, prior to the positive report of the National Agency for the Evaluation of Quality and Accreditation, and agreed on the official character of the title by the Council of Ministers of 1 July 2011 (published in BOE of 4 August 2011),

This Rectorate, in accordance with the provisions of Article 35.4 of the Organic Law 6/2001, of 21 December, of Universities, in the wording given by the Organic Law 4/2007, of 12 April, has resolved to publish the plan of studies leading to the obtaining of the official degree of Master's Degree in Biomedical Engineering by the Polytechnic University of Valencia and the Universitat de Valencia (General Estudi), which is structured according to what is shown in the Annex to This Resolution.

Valencia, April 16, 2013. -Rector, Esteban Jesus Morcillo Sanchez.

ANNEX

Plan of Studies of the degree of Master's degree in Biomedical Engineering by the Polytechnic University of Valencia and the Universitat de Valencia (General Estudi)

Knowledge Branch: Engineering and Architecture

1. Distribution of the plan of studies by type of Matter in ECTS credits:

of subjects

56

Optives

44

End Job

20

Credits totals

120

2. Description of the modules that the curriculum consists of:

Module I: Required Module

Assigns

5

conferences I

Character

7

Bioelectricity and bioelectromagnetism

Required

Medical Fundamentals

Required

7

and simulation of physiological systems

Required

5

Information Systems and Communication Networks in Medicine

5

instrumentation

biomedical devices

5

5

Required

Required

5

models: regulation, rules and management

Required

6

engineering: technology assessment and security

Required

5

diagnostic help methods

5

1

1

Required

1

credits to be cured

56

Module II: Optional Module: Intensification in Bioelectronics and Biomedical Instrumentation

Assigns

electrocedic

Character

5

Optional

5

Optional

5

5

5

5

and simulation of cell and tissue behavior

Optional

5

Total credits to be cured

20

Module III: Optional Module: Intensification in Biomechanics and Rehabilitation Technique

Assigns

Character

Biomechanical body of orthoprosthetic techniques and technical aids for people with functional limitations

Optional

5

techniques Biomechanics

biomechanical analysis techniques for functions and activities

5

Ergonomics and Disability

Optional

Optional

5

Total credits to be cured

20

Module IV: Optional Module: Intensification in Healthcare Information and Communication Techniques

Assigns

5

Character

Optional

5

5

5

5

Optional

5

-assisted surgery

Optional

5

5

Total Credits to cursing

20

Module V: Foundations of Biomedical Engineering

Assigns

circuits

Character

Optional

3

3

Optional

3

Mathematics applied to the IB

Optional

6

Optional

3

Physical applied to IB

Optional

3

3

applied to the IB

Optional

3

Introduction to human pathology

5

5

3

Morphology structure and

Optional

6

morphology, structure and function of the human body. Molecular, cellular and tissue levels

Optional

4

credits to cursing

24

Each student will make a total of 44 credits by completing the Itinerary Chosen (Modules II, III or IV) with 24 credits from Module V of "Foundations of Biomedical Engineering".

Module III: Master End Job

Assigning

Required

Character

Required

20

totals to be cured

20