BMRIT (Bachelor in Medical Radio Imaging and Technology)
Duration
3 year + 6 months internship
Eligibility Criteria
B.Sc. in Medical radiology and imaging technology (3 Years and 6 months Internship)
Passed 10+2 examination with 50% marks in aggregate with Physics, Chemistry and Biology as mandatory subjects.
Secured 50% marks in PCB and should have pass in English as subject.
Medical Imaging, also known as Radiography or Radiology, involves operating imaging machines like X-ray, CT Scan, MRI, and Ultrasound to create images of the human body for clinical purposes or medical science. It also includes treating cancers and tumors with radiation.
Diagnostic Radiography examines internal organs, bones, cavities, and foreign objects, including cardiovascular imaging and interventional radiography. Sonography uses high-frequency sound for obstetrics, abdominal, pediatric, cardiac, vascular, and musculoskeletal imaging. Fluoroscopy provides live-motion radiography, typically for visualizing the digestive system and positioning devices within the body.
CT scans offer cross-sectional body views, and MRI creates 2D and 3D tissue maps. Nuclear Medicine uses radioactive tracers to examine organ function, while Radiotherapy uses radiation to treat cancer. Mammography produces images of the mammary glands using low-dose X-rays.
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Curriculum
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Human Anatomy I Theory
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Human Physiology I Theory
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Radiation Physics Theory
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Preventive Medicine Healthcare and Radiation Protection Theory
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Fundamental of Medical Imaging I Theory
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English Communication I Theory
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Human Anatomy II Theory
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Human Physiology II Theory
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MS Office and foundation of business skills Theory
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Basic Radiographic Positioning an technique Special Views Theory
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Medical Law& Ethics Theory, English Communication II Theory
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Conventional Radiographic Techniques I Theory
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Basics of USG and Mammography Theory
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General Pathology in Radio Diagnosis Department-I Theory
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Bio-Chemistry
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Basic Radio graphic Positioning an technique Special Views Theory
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Environmental Sciences
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Conventional Radiographic Techniques II Theory
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Special Radiographic Procedure Theory
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Radiation Protection and Quality Assurance Theory
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Computed Tomography Techniques Theory
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Basic Concepts and Recent Trends of Radiation Therapy Theory
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Nuclear Medicine Technology Theory
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Patient Care and Management Theory
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Interventional Procedure and Techniques Theory
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Magnetic Resonance Imaging and It’s Hardware Theory
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Clinical Aspects in Radio Imaging Theory
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Advance CT USG and MRI safety Theory
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Basic Bio-Statistics and Research Methodology Theory
Career Path
Unlock a promising career with a BMRIT degree: competitive salaries and growth opportunities in hospitals, clinics, imaging centers, and research labs as a
- Radiologic Technologists
- MRI Technologist
- CT Technologist
- Ultrasound Technologist
- Radiation Therapist
- Imaging Department Managert
Program Educational Objectives PEOS
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PEO1
Perform functional assessment of different musculoskeletal as well as neuromuscular impairments. Evaluate posture, postural problems and reeducation of posture.
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PEO2
Evaluate and recording of joint range of joint motion. Apply joint mobilization and different manipulative techniques on patients having joint disorders or derangements. Evaluate respiratory issues and application of retraining techniques. Strengthen muscles following a different range of musculoskeletal problems.
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PEO3
Evaluate and grading of muscle strength. Evaluation of work related problems and application of ergonomics.
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PEO4
Evaluate and training of muscle coordination. Evaluate and training of balance.
Program Outcomes PO’s
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PO1
Cooperation with other members of the health team.
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PO2
Sense of responsibility as a team member.
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PO3
Interpersonal communication skills.
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PO4
Empathetic attitude towards the patient.
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PO5
Positive behavioral approach towards patients as well as persons with disabilities.
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PO6
Decision making independently with respect to the treatment.
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PO7
Research attitude to rationalize the treatment options.
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PO8
Importance of referral system.
Program Specific Outcome PSOs
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PSO1
Students can be seen working as CT scan technologists in hospitals, clinics, diagnostic centers.
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PSO2
The course provides in-depth knowledge of radiography and involves various methods of taking pictures of internal body parts/organs for clinical examination purposes.
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PSO3
Students can get placed for different jobs like radiation protection diagnostic radiographer X-ray technician.
FAQ
Pursuing a Bachelor of Medical Radio Imaging Technology program can lead to a rewarding career in the healthcare industry. Graduates will have the necessary skills and knowledge to operate medical imaging equipment, analyze images, and provide diagnostic information to physicians. This field offers a variety of job opportunities, including positions in hospitals, clinics, and imaging centres. Additionally, the demand for qualified professionals in this field is expected to grow, making it a stable and potentially lucrative career path.
The teaching methodologies used in Bachelor of Medical Radio Imaging Technology program typically involve a combination of classroom lectures, hands-on laboratory work, and clinical practice. In the classroom, students will learn the theoretical aspects of medical imaging, such as anatomy, physics, and radiology principles. Laboratory work provides students with the opportunity to practice using medical imaging equipment and software.
Yes, it is in high demand, particularly in the healthcare industry. Medical imaging plays a crucial role in diagnosing and treating various medical conditions, and the demand for qualified radiology professionals is expected to continue to grow. This growth is due to factors such as advancements in medical imaging technology, and the need for more efficient and accurate diagnostic procedures. As a result, the field of radiology offers lucrative career opportunities.
No, graduates of the program are not medical doctors. They are trained to operate and maintain medical imaging equipment, analyze images, and provide diagnostic information to physicians. However, they are not authorized to diagnose medical conditions or prescribe treatment. Graduates may work alongside medical doctors, such as radiologists, who interpret medical images and provide diagnoses and treatment recommendations based on the images.