Scatter & Contrast
Beam Restriction
Grid Fundamentals
Grid Errors
Grid Math
100

This interaction produces scattered photons that are a major cause of reduced radiographic contrast.

Compton Scatter

100

Reducing the x-ray field so that only the anatomy of interest is irradiated is known as this.

Collimation

100

The principal job of this device is to remove scatter before it reaches the image receptor.

A grid

100

A focused grid is used at an SID far outside the distance for which it was designed. This error occurs.

Off-focus grid cutoff

100

A grid has lead strips 2.0 mm high with interspaces 0.25 mm wide. Calculate the grid ratio.

8:1

200

How can scatter be managed?

Tight collimation

Proper grid use

Appropriate exposure techniques

200

When the x-ray field is made smaller, image contrast generally improves because...

Less scatter reaches the IR

200

A grid with taller lead strips and narrower interspaces has a higher value for this grid characteristic.

Grid ratio

200

A focused grid is accidentally placed upside down. The center may remain adequately exposed while marked cutoff appears in these portions of the image.

Both lateral edges

200

Each lead strip is 50 µm wide and each interspace is 200 µm wide. Calculate the approximate grid frequency in lines/cm.

40 lines/cm

300

What is the effect of increasing kVp?

X-ray beam energy increases
More transmission of photons through the patient

More compton scatter

Image contrast decreases

Less patient dose

300

This beam-limiting feature prevents the x-ray field from being larger than the selected image receptor.

PBL, positive beam limitation

300

Compared with a low-ratio grid, a high-ratio grid removes more scatter but normally requires an increase in this exposure factor.

mAs

300

During a mobile exam, the grid is angled while the central ray remains perpendicular to the receptor. This alignment error produces generalized grid cutoff.

Off-level grid cutoff

300

Image contrast measures 2.8% with a grid and 1.4% without a grid. Calculate the contrast improvement factor.

2

400

What is the effect of increasing the field size?

More tissue is irradiated

More scatter is produced

Image contrast decreases

Patient dose increases

400

The radiation leaving the patient contains both scattered photons and photons that passed through without interacting. What is this called? 

Remnant radiation

400

During an exposure, a Potter-Bucky moves the grid so that these structures are less visible on the finished image.

Grid lines

400

A focused grid is correctly leveled and used at the proper SID, but the central ray does not enter at the grid’s center. This error is called this.

Off-center grid cutoff

400

A grid receives 1,500 remnant photons but allows 300 image-forming photons to pass through. Calculate the Bucky Factor.

5

500

What is the effect of patient thickness decreasing?

Less tissue is irradiated

Less x-rays are absorbed/scattered

Image contrast increases

Lower exposure factors can be used

500

Digital scatter-correction software may simulate the appearance of a grid, but it does not eliminate the radiographer’s responsibility to perform this basic radiation-protection practice.

Collimation

500

This grid design has lead strips running in two perpendicular directions and is very effective at scatter cleanup, but requires highly accurate alignment.

Crossed grid

500

Instead of using a grid, a radiographer increases the distance between the patient and receptor to allow scatter to miss the receptor. A major disadvantage is increased OID and....

Magnification

500

A mobile examination uses 5 mAs without a grid. The repeat will use an 8:1 grid. What mAs will maintain approximately the same receptor exposure?

20 mAs