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 157-168 of 184 item(s)
TRANSDUCERS AND INSTRUMENTATION UNIT - SAIT
  • SAIT
Available
6.1.2.1.- SENSORS AND ELECTRONIC INSTRUMENTATION

SAIT

Transducers and Instrumentation Unit

The Transducers and Instrumentation Unit, "SAIT", has been designed by EDIBON to show most of the devices used in the industry that allow the electronic systems to communicate with the real world, to measure physical variables and to control...
PID CONTROL AND REGULATION FUNDAMENTALS UNIT - RYC/B
  • RYC/B
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC/B

PID Control and Regulation Fundamentals Unit

The regulation of dynamic systems is a fundamental component of engineering, as it allows process variables to be maintained within desired limits despite external disturbances or internal changes. To achieve this, control strategies such as the...
COMPUTER CONTROLLED MODULAR CONTROL AND REGULATION UNIT - RYC/T
  • RYC/T
Available
10.1.- THEORETICAL - PRACTICAL FUNDAMENTALS

RYC/T

Computer Controlled Modular Control and Regulation Unit

Regulation and control theory is divided into two major divisions in, namely, classical and modern. The implementation of classical controller designs as compared to systems designed using modern control theory is easier and these controllers are...
PID CONTROL AND REGULATION OF A DC SERVOMOTOR UNIT - RYC-SM
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-SM

PID Control and Regulation of a DC Servomotor Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of a DC Servomotor Unit, "RYC-SM", designed by EDIBON, enables the practical study of automatic control systems through the precise regulation of position and speed in a DC servomotor.This unit allows students and...
PID TEMPERATURE CONTROL AND REGULATION OF AIR FLOW UNIT - RYC-TAR
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-TAR

PID Temperature Control and Regulation of Air Flow Unit

Accessory of RYC, RYC/T
The PID Temperature Control and Regulation of Air Flow Unit, "RYC-TAR", designed by EDIBON, enables the practical study of automatic control systems through the precise regulation of the temperature of an air stream at different points in the...
PID CONTROL AND REGULATION OF AN INVERTED PENDULUM UNIT - RYC-PI
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-PI

PID Control and Regulation of an Inverted Pendulum Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of an Inverted Pendulum Unit, "RYC-PI", de­signed by EDIBON, enables the practical study of automatic control systems through the control of the linear position of a moving cart and the stabilization of a pendulum in...
PID MAGNETIC LEVITATION CONTROL AND REGULATION UNIT - RYC-CLM
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-CLM

PID Magnetic Levitation Control and Regulation Unit

Accessory of RYC, RYC/T
The PID Magnetic Levitation Control and Regulation Unit, "RYC-CLM", desig­ned by EDIBON, enables the practical study of automatic control systems throu­gh the regulation of the vertical position of a magnetically levitated metal ball.This unit...
PID TEMPERATURE CONTROL AND REGULATION UNIT - RYC-TE
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-TE

PID Temperature Control and Regulation Unit

Accessory of RYC, RYC/T
The PID Temperature Control and Regulation Unit, "RYC-TE", designed by EDI­BON, enables the practical study of automatic control systems through the regulation of water temperature in a tank.This unit allows students and technicians to understand...
PID CONTROL AND REGULATION OF PRESSURE LEVEL UNIT - RYC-P
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-P

PID Control and Regulation of Pressure Level Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of Pressure Level Unit, "RYC-P", designed by EDIBON, enables the practical study of automatic control systems through the regulation of air pressure level in a tank.This unit allows students and technicians to...
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