B.E - Biomedical Engineering

Overview :

B.E Biomedical Engineering (BME) deals with the diagnostic and therapeutic application of Engineering Techniques by doctors in their healthcare practices.  It is a 4-Year UG course dealing with software to run medical equipment.  

B.E Biomedical Engineering is a fascinating field that combines principles of Engineering with Medical and Biological Sciences to solve medical and biological problems to improve healthcare.  Biomedical Engineering (BME) focuses on the advances that improve human health and health care at all levels and is the application of the principles and problem-solving techniques of engineering to biology and medicine.

Candidates who pursue this course are not only trained in the principles of Biomedical Engineering but also in Medical Sciences. They are trained to develop biomedical solutions through designing and manufacturing devices, apparatus, and medical equipment.  Biomedical engineering in India is a growing field with many opportunities for professionals to work in a variety of sectors.

Biomedical engineers use their knowledge of Engineering, Biology, and Healthcare to design Medical Equipment, processes, and therapeutic solutions.   Some examples of biomedical engineering applications include:

·         Artificial limbs

·         Blood glucose monitors

·         Pacemakers

·         Medical X-ray imaging

·         MRI and PET scans

·         Artificial hearts

·         Prenatal ultrasound

·         Arthroscopic surgery

Biomedical engineers work in a variety of settings, including:

·         Industry: Innovating, designing, and developing new technologies

·         Academia: Researching and developing new diagnostic tools and medical equipment

·         Government: Establishing safety standards for medical devices

To be qualified for this course, students must have finished 10+2 from a perceived Board/University with Physics, Chemistry, Biology, and Mathematics as subjects. Admission is based on Entrance or Merit Basis.

 

Some Highlights of B.E Biomedical Engineering:

Name Of The Course 

B.E - Biomedical Engineering

Full Form

Biomedical Engineering

Level

Undergraduate

Duration

4 Years 

Examination Type

Semester 

Eligibility                     

(10+2) 60% AND ABOVE for B.Tech and Lateral Entry diploma with 50% in all semesters.

Admission Procedure

10+2 with maths, biology, and chemistry

Average Course Fees   

₹ 40 K To ₹ 2.5 L

Average Annual Salary 

₹ 4.0 LPA To ₹ 5.0 LPA

Job Profiles/Roles

biomedical instrumentation; drug delivery, design and metabolism; biomaterials; computational and systems biology; and medical biomechanics.

Top Recruiters

Johnson & Johnson.,KLS Martin.,Maquet.,Philips Healthcare.,Samsung Healthcare.,Siemens Healthineers.,Skanray Healthcare.,Stryker













Top Colleges Offering B.E Biomedical Engineering  In India :

  • IIT Madras
  • IIT Kanpur
  • IIT Hyderabad
  • IIT BHU
  • Jawaharlal Nehru Technological University
  • Hyderabad (JNTUH)





Why Choose B.E Biomedical Engineering?

Choosing a B.E. in Biomedical Engineering in India offers several compelling reasons for pursuing a career in this fast-evolving field. Here’s why it’s an excellent choice:

  • Booming Healthcare Sector: India’s Healthcare sector is rapidly growing, creating a significant demand for Biomedical Engineers who can design and develop innovative products to enhance Healthcare delivery.
  • Government Investment & Research Opportunities: The Indian government is heavily investing in Research and Development in the Biomedical field, which increases opportunities for graduates to contribute to cutting-edge advancements in Healthcare Technologies.
  • Technological Advancements: Biomedical Engineering is one of the fastest-growing Engineering fields due to continuous technological innovations in Medicine, such as Medical Devices, Imaging, and Health Monitoring Systems.
  • Lucrative Career & Growth Potential: Biomedical Engineering offers high earning potential and a promising career trajectory, with opportunities to advance into leadership and specialized roles in both the private and public sectors.
  • Diverse Career Opportunities: Biomedical Engineers can work in a range of sectors, including Medical Device Companies, Pharmaceutical Firms, Research Institutions, Hospitals, Clinics, Healthcare IT Companies, and Government Agencies.
  • Exciting Job Roles: The field offers a variety of exciting career options, such as Biomedical Engineer, Biomaterials Engineer, Clinical Engineer, Medical Imaging Specialist, Biomedical Research Scientist, and more.
  • Impactful Work in Healthcare: Biomedical Engineers are at the forefront of designing and developing innovative Medical Devices and Implants, such as Artificial Limbs, Pacemakers, Prosthetics, and Diagnostic Tools that are essential for diagnosis, treatment, and rehabilitation.
  • Interdisciplinary Knowledge: The program combines Engineering principles with Biology, Medicine, and Technology, allowing students to gain a broad, interdisciplinary skill set that is highly applicable in modern healthcare.

In summary, a B.E. in Biomedical Engineering offers significant career opportunities in a growing industry with a focus on Innovation and Healthcare advancement. With Technological growth, government support, and diverse job options, Biomedical Engineers play a crucial role in improving global Healthcare outcomes while enjoying a rewarding career path.


Admission Procedure For B.E Biomedical Engineering:

  • The admissions BE Biomedical Engineering program depends on both selection tests and legitimacy put together depending upon the University or school. Various schools have an alternate point of view for assessment, yet generally, it is if an understudy score above 45% to half in a selection test or legitimacy based then the odds to get induction into the ideal University or universities are very high.
  • The Candidates who are applying for the Bachelor of engineering or BE Biomedical Engineering program must be having their graduation results from the particular board/colleges. There are certain colleges where Entrance Exams are required.
  • Candidates can fill the affirmation structure online through the school site or offline by visiting the school grounds.
  • Candidates have required fill subtleties alongside the existing archives.
  • Candidates are exceptionally encouraged to view the rundown of Entrance Exams which are relevant for Bachelor of engineering or BE Biomedical Engineering as referenced on sites of various Universities.
  • Candidates ought to qualify in the selection test with the necessary qualification of imprints for the specific college/school.


Eligibility For B.E Biomedical Engineering:

The qualification measures for the Bachelor of engineering or BE Biomedical Engineering program are referenced below:

  • The applicant is more likely than not finished graduating with business or expressions with a minimum of 45% to half total imprints from a perceived college or board. The qualification rate shifts according to various colleges and universities. In this manner, candidates are profoundly encouraged to visit the individual school site for additional subtleties.
  • Some Institutions take direct confirmation dependent on imprints obtained at graduation level yet the vast majority of the institutions take placement tests of their specific college or school.

Career Opportunities for B.E Biomedical Engineering:

The scope of Biomedical Engineering in India is indeed expanding, driven by technological advancements and increasing healthcare needs. Here’s a more detailed look at the various aspects of this field:

  • With the rise in diseases and health issues, the role of Biomedical Engineers becomes crucial in developing solutions to diagnose, treat, and manage these conditions.
  • As they design and develop innovative medical devices and technologies, Biomedical Engineers are in high demand to collaborate with healthcare professionals, ensuring that new solutions meet clinical needs.
  • Laboratories and Research Institutions require Biomedical Engineers for studies on human physiology, biomaterials, and the interaction between artificial devices and biological systems. This research is essential for developing new treatments and technologies.
  • Graduates can pursue various roles in different sectors, including Biomedical Engineer, Instrument Engineer, Installation and Maintenance Engineer, Manufacturing Engineer, Software Engineer, Quality Engineer, Consultancy, etc.
  • Many Biomedical Engineers choose to pursue advanced degrees (Ph.D. or postdoctoral programs), allowing them to specialize further, engage in research, and contribute to academic fields.
  • They often work in multidisciplinary teams, combining expertise from Engineering, Medicine, Biology, and IT to create comprehensive solutions for healthcare challenges.

The future for Biomedical Engineers in India looks promising, with numerous opportunities for growth in both the private and public sectors. As healthcare continues to evolve, the contributions of Biomedical Engineers will be vital in shaping the future of medical technology and patient care.

Jobs Opportunities After B.E Biomedical Engineering:

  • Installation Engineer
  • Biomedical Engineer
  • Researcher
  • Maintenance Engineer
  • Instrument Engineer
  • Clinical Engineer
  • Medical Device
  • Clinical Biomedical Engineer
  • Biomaterial Engineer
  • Orthopedic Engineer
  • Rehabilitation Engineer


Top Recruiters of B.E Biomedical Engineering:

  • Siemens Healthcare
  • Johnson and Johnson
  • GE Healthcare
  • Medtronic
  • Drager
  • Fresenius Medical Care AG and Co
  • Maquet
  • Philips Healthcare
  • B.Brau

Syllabus For B.E Biomedical Engineering:

Semester I 

Engineering Mathematics-1
Engineering Physics
Engineering Chemistry
Fundamentals of Civil and Mechanical Engineering
manufacturing Mechanics
English
Practical Lab Session

Semester II

Engineering Mathematics- 2
Fundamentals of Material Science
Environment Science and Surroundings
Fundamentals of Electrical and Electronics Engineering
Basic Thermodynamics
Computer Programming languages
Practical Lab Session

Semester III

Engineering Mathematics-3
Fundamentals of Electric circuits and analysis
Basics of Electronic devices and circuits
Introduction to Switching Theory and logical design
Computer programming
Strength of Materials
Practical Lab Session

Semester IV


Engineering Mathematics-4
Practical in Electronic Circuits and analysis
Introduction to Human Anatomy and Physiology
Fundamentals to Electrical and Electronic Instruments
Dynamics of Biofluids
Engineering and Medical Instrumentation-1
Practical Lab Session

Semester V

Control System and Engineering
Introduction to Microprocessor and its applications
Fundamentals to Integrated Circuits
Signals and Systems Engineering
Introduction to Biomechanics
Engineering and Medical Instrumentation-2
Practical Lab Session

Semester VI

Embedded systems in Medicine
Principles of Diagnostic and Therapeutic equipment
Medical Informatics and expert systems
Basics of Digital Image Processing
Introduction to Biomedical signal processing
optional Subject 1
Practical Lab Session

Semester VII

Introduction to Radiological equipment
Engineering and Biomaterials
Hospital safety, Guidelines, and management
optional subject 2
optional Subject 3
Practical Lab Session

Semester VIII

Advanced Biomedical Engineering and Instrumentation
Engineering Economics and sociology
Introduction to Bio-Telemetry and analysis
optional Subject 4
optional Subject 5
Practical Lab Session


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