14.- BIOMEDICAL ENGINEERING

Biomedical Engineering studies the implementation of engineering knowledge in the field of biology and medicine. The combination of instrumentation and electronic control systems and the application of mathematical algorithms and physical and chemical principles allow Biomedical Engineering to investigate and develop new techniques and devices for the resolution of clinical problems. This discipline covers from the design of diagnostic elements and medical software tools to physiological analysis for the study of the heart or the nervous system.

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Biomedical Engineering has evolved over the years thanks to scientific and technological advances. At present, devices such as vital signs monitoring systems or diagnostic devices facilitate medical care work. The development of image analysis methods such as X-rays, ultrasounds and magnetic resonance allow the study of the human organism clearly and quickly. In addition, telemedicine and hospital management software are used.

The future of Biomedical Engineering has a long way to go, since today's society requires fast and efficient medical solutions. The electronic devices used day to day will allow remote patient monitoring, following the vital signs values to be able to analyze the symptoms before a health problem and, even, prevent that possible problem. Another trend of Biomedical Engineering is the simplification of laboratory tools. Systems, such as Lab On a Chip (LOC), integrate laboratory functions into a single chip. New robotic surgery techniques, new organic materials for the manufacture of artificial tissues and regenerative tissues or 3D printing of artificial organs will make it possible to resolve future medical needs.

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BIOMEDICAL ENGINEERING SUBCATEGORIES

14.1.- BIOMECHANICS

Biomechanics studies the mechanics of movement of the living beings organism, among them the human body movement. This study ranges from the simplest movements of daily life, such as work or sports activity, to the movement of some internal organs, such as the heart. To study the human body...
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14.2.- BIOMEDICAL ELECTRONICS

Biomedical Engineering studies the application of engineering knowledge in the field of biology and medicine. One of the most relevant areas of this engineering is the Biomedical Electronics, in which the concepts of electronics are applied for the development of medical instrumentation.Nowadays,...
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14.3.- BIOMEDICAL EQUIPMENT

Biomedical Equipment is the set of instruments used in the field of medicine, biology and pharmacology. The design of biomedical equipment is directly related to Biomedical Instrumentation, in which instruments are designed to obtain information, apply treatments or perform chemical and...
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BIOMEDICAL ENGINEERING EQUIPMENT

Showing 37-48 of 184 item(s)
CENTRIFUGAL FORCE UNIT  - MFCE
  • MFCE
Available
7.1.3.- STATICS AND DYNAMICS

MFCE

Centrifugal Force Unit

The Centrifugal Force Unit, "MFCE", designed by EDIBON, is used to demonstrate the relationship between centrifugal force, rotational speed, mass of a rotating body and distance from the axis.The unit consists of a vertical axis of rotation and a...
GYROSCOPE - MGI
  • MGI
Available
7.1.3.- STATICS AND DYNAMICS

MGI

Gyroscope

The Gyroscope, "MGI", designed by EDIBON, allows the experimental demonstration of the different rotation modes of a gyroscope and the moments generated by the gyroscopic effect.The rotor of the electric motor (rotating motor) shares a...
CENTRIFUGAL GOVERNOR UNIT - CGU
  • CGU
Available
7.1.3.- STATICS AND DYNAMICS

CGU

Centrifugal Governor Unit

The Centrifugal Governor Unit, "CGU", has been designed to study the operating mode of different centrifugal governors, including three interchangeable governors: Porter governor, Hartnell governor and Proell governor.Interchangeable governors...
STATIC AND DYNAMIC BALANCING UNIT - MED
  • MED
Available
7.1.3.- STATICS AND DYNAMICS

MED

Static and Dynamic Balancing Unit

The Static and Dynamic Balancing Unit, "MED", developed by EDIBON is a unit to study and analyze the oscillations and vibrations and how to eliminate or diminish them.Basically, the unit is formed by a shaft mounted on bearings. The shaft is...
SIMPLE BALANCING UNIT - MES
  • MES
Available
7.1.3.- STATICS AND DYNAMICS

MES

Simple Balancing Unit

The Simple Balancing Unit, "MES", developed by EDIBON is a unit to study and analyze the oscillations and vibrations and how to eliminate or diminish them.Basically, the unit is formed by a shaft mounted on bearings. The shaft is coupled by pulley...
INERTIA FLYWHEEL UNIT - MIF
  • MIF
Available
7.1.3.- STATICS AND DYNAMICS

MIF

Inertia Flywheel Unit

The Inertia Flywheel Unit, "MIF", consists of an inertia disc with a rotation shaft at the center of the disc.The shaft is supported at two points by bearings.A cord is attached by one of the ends to the shaft and wound around it. At the other end...
WHEEL AND AXLE UNIT  - MRYE1
  • MRYE1
Available
7.1.3.- STATICS AND DYNAMICS

MRYE1

Wheel and Axle Unit

The Wheel and Axle Unit, "MRYE1", has been designed by EDIBON to investigate the mechanics of a simple wheel and axle machine and to demonstrate the laws of the formation of equilibrium of moments in static systems.Two pulleys with different...
UNIT FOR STUDYING HOOKE´S LAW - MELH
  • MELH
Available
7.1.3.- STATICS AND DYNAMICS

MELH

Unit for studying Hooke´s Law

The Unit for studying Hooke's Law, "MELH", designed by EDIBON, demonstrates the application of Hooke's Law and allows the visualization of the deformation of tension springs under load and the performance of oscillation experiments on a spring –...
WHEEL AND DIFFERENTIAL AXLE UNIT  - MRYE2
  • MRYE2
Available
7.1.3.- STATICS AND DYNAMICS

MRYE2

Wheel and Differential Axle Unit

The Wheel and Differential Axle Unit, "MRYE2", has been designed by EDIBON to investigate the mechanics of a wheel and differential axle mechanism and demonstrating the force reduction on a differential pulley block.A wheel, consisting of a pulley...
COMPUTER CONTROLLED TORSIONAL VIBRATION UNIT - MEVTC
  • MEVTC
Available
7.1.4.- VIBRATIONS AND OSCILLATIONS

MEVTC

Computer Controlled Torsional Vibration Unit

The Computer Controlled Torsional Vibration Unit, "MEVTC", has been designed by EDIBON to study torsion suffered by some shafts with rotation motion, apart from studying the torsional rigidity and the behavior of a torsional vibration system with...
VIBRATION OF COIL SPRING UNIT - MVRE
  • MVRE
Available
7.1.4.- VIBRATIONS AND OSCILLATIONS

MVRE

Vibration of Coil Spring Unit

The Vibration of Coil Spring Unit, "MVRE", has been designed by EDIBON to study and understand a coil torsion spring, a mass-spring system and the fundamental properties of its characteristic periodic motion.In this sense, the unit consists of a...
FREE VIBRATION UNIT - MVL
  • MVL
Available
7.1.4.- VIBRATIONS AND OSCILLATIONS

MVL

Free Vibration Unit

The Free Vibration Unit, "MVL", has been designed by EDIBON to cover a range of demonstrations and experiments which provide the user with an understanding of the free vibrations of a simple spring-mass-damper system. Simple adjustments can be...
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