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 student practically involved in the   The projects will emphasize problem   Fourier domain representation,  US transducers and their different   BME 433 - Medical Mobile   BME 490 - Special Topics in
 day-to-day business events in a   definition, design conceptualization,   types, The design of imaging and   Applications  Biomedical Engineering
 relevant, modern and automated   modeling, fabrication and system   time domain sampling, aliasing, pre-  therapeutic transducers.  Credit Hours: 3  Credit Hours: 3
 organization. The student will follow a   integration in software and hardware   filtering, filter design, random signals,
 well-planned course of action during   aspects. The course is split into two   probability, noise modeling and   BME 420 - Medical Image   Prerequisite: CSC 201  Prerequisite: BME 325 + Department
 the period of training. The course   and is taken over two semesters   reduction, power spectral  Processing  This course teaches students   Approval
 of action is designed and approved   to allow students enough time and   analysis, and 1D-3D signal processing   Credit Hours: 3         cross-platform mobile application   The course will introduce a selected
 before the start of the internship   improve the quality of their design   for audio, sensor, image, and video   Prerequisite: BME 320 + CEN 330  development with a focus on   special topic in the Biomedical
 through a formal exchange between   project. BME491 is a pre-requisite   signals.  advanced topics including navigation,   Engineering area, includes any
 the site supervisor and assigned   to BME492. In this course students   This course introduces digital image   persistence both remote (Firebase   specialized topic in BME chosen by
 faculty supervisor culminating   identify a problem and propose a   CEN401L - Embedded and IoT   processing techniques as they apply   & Google Cloud Storage) and local,   a faculty who has experienced in
 in the signing of the internship   computer engineering solution to it.  Lab  to medical images. Topics covered   RESTful API integration, localization,   that particular area, but the topic is
 agreement. The plan will be devised   Credit Hours: 3 Prerequisite: EEN210L   include two-dimensional discrete   reverse-geocoding, and geofencing   not covered by other courses in the
 jointly by the site-supervisor and   EEN210L - Digital Circuits Lab  systems, two-dimensional Fourier   services on Google Maps API, device   curriculum.
 college-supervisor. The course will   Credit Hours: 1  Co-Prerequisite: CEN425  transform, design of two-dimensional   sensors for orientation, motion, and
 be a breakthrough in exposing the   This lab focuses on the practical   filters, human perception of   light, hardware control over the cloud   BME 401 – Introduction to
 students to the professional work   Co-Prerequisite: EEN210  applications of embedded systems   images, color models, corner and   using the mobile app as an interface,   Biotechnology
 culture and conduct of business   This lab focuses on the practical   and internet of things concepts,   line detection, segmentation,   and camera integration. It also
 complexities.  techniques, and designs. Lab   enhancement, restoration, object   provides students with an advanced   Credit Hours: 3
 applications of Digital Logic Circuit   detection, and the 2D wavelet
 BME 312 - Medical Device   concepts, techniques, and designs.   equipment includes Arduinos,   transform.  hands-on experience of recent   Prerequisite: BME 301
 Raspberry Pis, actuators, sensors,
 Design    Lab equipment includes Measuring   and the PyCharm software.  advancement in AI and Computer   This course focuses on practical
                                      Vision powered mobile and Internet
 Credit Hours: 3  and Testing Instruments, Logic   BME 431 - Bioinformatics     computing technologies and their   applications like recombinant DNA
 Gates, Combinational Logic Circuits,
 Prerequisite: BME 380  Sequential Logic Circuits, and   Students connect theoretical   Credit Hours: 3  applications. Application uses cases   technology, protein production,
                                                                     and biotechnological impacts on
 concepts learned in the course to
        Prerequisite: CSC 201 + BME 301
 This is a project based course for   Circuit Simulation. Students connect   practice using hands-on laboratory   covered include facial detection,   agriculture, forensic analysis, and
                                      visual tracking, segmentation, object
 the design of medical instruments   theoretical concepts learned in the   experiments covering Introduction   The course introduces the most   detection, text recognition, and   medicine. Topics include gene and
 to fulfill the needs of a predefined   course to practice using hands-on   to the Arduino and the Raspberry   important and basic methods, tools   landmark identification. It also gives   genome fundamentals, microbial,
 clinical case. It includes problem   laboratory experiments covering   Pi, State Machines Implementations   and concepts used in Bioinformatics.   a brief introduction to mobile game   plant, and animal biotechnology,
 definition, concept generation,   the use of Measuring and Testing   using Embedded C++ and Python,   The covered topics include   development.  DNA fingerprinting, bioremediation,
 design requirements, design   Equipment, LabView Multisim  TinkerCAD and TkCircuit Simulators,  bioinformatics databases, sequence   aquatic biotechnology, medical
 specifications, evaluation, design   and Data Acquisition, Logic Gates   Bash Programming and Linux, Digital   and structure alignment, protein   BME 440 - Magnetic Resonance   biotechnology, regulatory
 validation, medical equipment   Verification, Combinational Logic   Inputs and Outputs on Arduino,   folding, protein-protein interaction,   Imaging  frameworks, and ethical issues in
 regulations, liability, and safety.    Circuits including Multiplexers,   GPIO, Serial Communication,   protein structure prediction, Monte   Credit Hours: 3  biotechnology. Activities include
 The implementation of the project   Decoders, Adders, and Comparators,   Interfacing Motors and Sensors, Web   Carlo simulation, and molecular   designing a sequence alignment
 is based on the design principles   Sequential Logic Circuits including   and Mobile Interfaces for IoT Nodes,   dynamics. Emphasis will be put on   Prerequisite: BME 310  system using MATLAB, a midterm
 in solving biomedical problems   Flip-Flops and Latches, Introduction   and Back End Technologies.  the understanding and utilization   Introduces physics of magnetic   exam, a research paper, and a final
 using the student’s background   to VHDL on Quartus and the Altera   of these concepts and algorithms.   resonance. Covers magnetic field   project.
 in engineering and biomedicine   DE2 Board, and Combinational and   To solve the problems on their own   modalities, relaxation times, gradient   BME 405 – Introduction to
 with an emphasis on biomedical   Sequential Circuits in VHDL.  research.  and RF coils, pulse sequences,   Biomaterials
 instrumentation circuit design to    functional MRI, contrast agents,
 solve presented problems.  CEN464L - Signal Processing Lab  Major Elective   BME 432 - Healthcare   hardware, imaging techniques,   Credit Hours: 3
 BME 491 - Biomedical   Credit Hours: 1  Management Systems          artifacts, and applications.  Prerequisite: BME 403, CHE 205, BME
 Engineering Design Project I  Co-Prerequisite: CEN464  Credit Hours: 3                                          BME 460 - Therapeutic Devices   381
 Credit Hour: 1  BME 445 - Biomedical   Prerequisite: CSC 201  Credit Hours: 3  This course introduces the
 Ultrasound
 Prerequisite: Senior Level + BME 312   This lab focuses on the practical   This course covers key principles,   Prerequisite: BME 310  fundamental principles and
 applications of Digital Signal
 + BME 425  Processing concepts, techniques, and   Credit Hours: 3  practices, and personalities of   biomedical applications of
 The objective of this course is to   designs. Lab equipment includes a   Prerequisite: BME 310  healthcare management including   Invasive and non-invasive therapeutic   biomaterials used in modern
                                      devices used in medical applications
                                                                     medicine. The course covers the
 provide guided experience in wide   PC and Matlab software. Students   Fundamentals of acoustic   leadership, organizational behavior,   including: Artificial Kidney, artificial   following main topics: (1) classes
 areas of biomedical engineering to   connect theoretical concepts learned   propagation, plane wave and acoustic   strategic planning, quality control,   oxygenators (heart lung machine),   of materials used in medicine and
 student teams working on design   in the course to practice using hands-   impedance, wave propagation in   marketing, hospital information   artificial liver, pacemakers, syringe   general concepts in biomaterials
 projects. The projects will integrate   on laboratory experiments covering   oblique and normal cases, Doppler   systems. The content is broadly   pumps and infusion bumps,   science, (2) mechanical and chemical
 various engineering skills into   signal operations, convolution,   effect circular piston and near and far   applicable to healthcare facilities of   ventilators and bio-artificial organs   properties of biomaterials relevant
 operational engineering prototypes.   Fourier and Laplace transforms,   field approximation, imaging modes,   every kind.  such as bio-artificial pancreases.

 Abu Dhabi University | Undergraduate Catalog 2026 - 2027  Abu Dhabi University | Undergraduate Catalog 2026 - 2027
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