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GENERAL

Bachelor of Science in X-Ray Technology

Learn about B.Sc in X-Ray Technology, including eligibility criteria, course duration, syllabus, clinical training, and career opportunities in hospitals, diagnostic centers, radiology departments, and medical imaging and healthcare facilities.

3 Years Years Undergraduate (UG)

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Course Overview

Bachelor of Science in X-Ray Technology (B.Sc. X-Ray Technology) is a 3-year undergraduate degree program that focuses on the principles and practices of diagnostic radiography. The program trains students to operate X-ray equipment, produce high-quality diagnostic images, ensure radiation safety, assist radiologists, and provide quality patient care during imaging procedures.

The curriculum combines theoretical learning with laboratory practicals, clinical training, hospital postings, and internships. Students gain expertise in radiographic anatomy, radiation physics, imaging techniques, patient positioning, radiographic equipment operation, quality assurance, radiation protection, and diagnostic imaging procedures. Graduates are prepared for careers in hospitals, diagnostic imaging centres, trauma centres, cancer hospitals, and healthcare organizations.

Overview

Bachelor of Science in X-Ray Technology (B.Sc. X-Ray Technology) is a 3-year undergraduate degree program that focuses on the principles and practices of diagnostic radiography. The program trains students to operate X-ray equipment, produce high-quality diagnostic images, ensure radiation safety, assist radiologists, and provide quality patient care during imaging procedures.

The curriculum combines theoretical learning with laboratory practicals, clinical training, hospital postings, and internships. Students gain expertise in radiographic anatomy, radiation physics, imaging techniques, patient positioning, radiographic equipment operation, quality assurance, radiation protection, and diagnostic imaging procedures. Graduates are prepared for careers in hospitals, diagnostic imaging centres, trauma centres, cancer hospitals, and healthcare organizations.

Admission Process

Step 1: Meet Eligibility Criteria

  • Complete 10+2 or equivalent from a recognized board with Physics, Chemistry, and Biology (PCB) or Physics, Chemistry, and Mathematics (PCM).
  • Obtain the minimum qualifying marks prescribed by the respective institution.

Step 2: Application Process

  • Fill out the online or offline application form.
  • Submit academic records and required documents.

Step 3: Merit or Entrance Examination

Admission may be based on:

  • Merit in the qualifying examination (10+2)
  • University or institution-level entrance examination (if applicable)

Step 4: Document Verification

Candidates submit original documents for verification.

Step 5: Fee Payment & Admission Confirmation

After successful verification, candidates pay the admission fee to confirm admission.

Eligibility

Candidates must generally fulfill the following requirements:

  • Pass 10+2 or equivalent with Physics, Chemistry, and Biology (PCB) or Physics, Chemistry, and Mathematics (PCM) from a recognized board.
  • Secure the minimum qualifying marks prescribed by the institution.
  • Qualify the entrance examination (if applicable).
  • Meet any additional eligibility requirements specified by the institution.

Duration

  • Course Duration: 3 Years (6 Semesters)

The curriculum includes:

  • Classroom lectures
  • Laboratory practicals
  • Clinical training
  • Hospital postings
  • Internship (where applicable)
  • Project work

Career Scope

A B.Sc. in X-Ray Technology offers excellent career opportunities in diagnostic imaging and healthcare.

Popular Job Roles

  • X-Ray Technologist
  • X-Ray Technician
  • Radiographer
  • Radiology Technologist
  • Diagnostic Imaging Technologist
  • Medical Imaging Technologist
  • Radiology Assistant
  • Imaging Department Supervisor
  • Quality Control Technologist
  • PACS Technician

Employment Sectors

  • Government Hospitals
  • Private Hospitals
  • Diagnostic Imaging Centres
  • Multi-specialty Hospitals
  • Trauma Centres
  • Cancer Hospitals
  • Orthopaedic Hospitals
  • Medical Colleges
  • Healthcare Organizations
  • Diagnostic Laboratories

Top Recruiters

  • Apollo Hospitals
  • Fortis Healthcare
  • Max Healthcare
  • Manipal Hospitals
  • AIIMS
  • Medanta – The Medicity
  • Narayana Health
  • Yashoda Hospitals
  • Dr. Lal PathLabs
  • SRL Diagnostics
  • Metropolis Healthcare
  • Tata Memorial Centre

Syllabus

The syllabus generally includes the following subjects:

First Year

  • Human Anatomy and Physiology
  • Radiation Physics
  • Medical Terminology
  • Radiographic Anatomy
  • Basic Radiographic Techniques
  • Patient Care
  • Radiation Protection

Second Year

  • Advanced Radiographic Techniques
  • Diagnostic Radiology
  • Imaging Equipment
  • Contrast Radiography
  • Digital Radiography
  • Quality Assurance in Radiology
  • Clinical Training

Frequently Asked Questions

B.Sc. in X-Ray Technology is a 3-year undergraduate degree program that trains students to operate X-ray equipment, perform diagnostic imaging procedures, ensure radiation safety, and assist radiologists in diagnosing various medical conditions.

Candidates must have passed 10+2 with Physics, Chemistry, and Biology (PCB) or Physics, Chemistry, and Mathematics (PCM) from a recognized board and meet the minimum qualifying marks prescribed by the respective institution. Admission is generally based on merit or university/institution-level entrance examinations.

No. NEET is generally not required for admission to B.Sc. in X-Ray Technology. Most colleges offer admission based on 10+2 merit or institution-specific entrance examinations.

The B.Sc. in X-Ray Technology program has a duration of 3 years (6 semesters) and includes classroom learning, laboratory practicals, clinical training, hospital postings, internships (where applicable), and project work.

The curriculum generally includes Human Anatomy and Physiology, Radiation Physics, Radiographic Anatomy, Basic and Advanced Radiographic Techniques, Diagnostic Radiology, Digital Radiography, Radiation Protection, Patient Care, Quality Assurance, and Special Imaging Procedures.