Questions and Answers Already Passed
Why is the concept of dose-area product (DAP) important in radiation physics?
✔✔DAP measures the total radiation energy delivered to the patient, taking into account both the
dose and the area irradiated, which helps in assessing the risk of exposure.
How does the energy of an x-ray beam affect its penetration through tissue?
✔✔Higher energy x-rays can penetrate denser tissues, while lower energy x-rays are absorbed
more by tissues and are less effective for imaging.
What is the effect of tube filtration on image quality and patient dose?
✔✔Tube filtration reduces patient dose by eliminating low-energy x-rays, but it can slightly
reduce image contrast due to the removal of softer, lower-energy rays.
How does the photon energy of x-rays relate to their ability to produce biological effects?
✔✔Higher-energy x-rays have a greater potential to ionize atoms and molecules in tissues,
leading to more significant biological effects such as cellular damage or mutations.
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, What is the purpose of using a grid in radiology?
✔✔A grid is used to reduce scatter radiation, improving image quality by allowing only the
primary x-rays to reach the film or detector.
What is the primary function of the x-ray tube in radiology?
✔✔To convert electrical energy into x-rays by accelerating electrons and colliding them with a
target.
How does increasing the kVp (kilovolt peak) affect the x-ray beam?
✔✔Increasing the kVp increases the energy and penetrability of the x-ray beam, resulting in
more penetrating radiation.
What is the significance of milliampere-seconds (mAs) in x-ray imaging?
✔✔mAs controls the quantity of x-rays produced and affects the overall image brightness.
How does radiation interact with matter during diagnostic imaging?
✔✔Radiation interacts with matter by either being absorbed, scattered, or transmitted through
tissues, depending on the energy of the radiation and the properties of the tissue.
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