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Applying Prentice's Rule Flashcards

7 cards from real ABO NOCE Basic Opticianry practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

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  1. A lens is +2.00 -4.00 × 090. A patient looks through a point 4 mm temporal to the OC in the right eye. What is the horizontal prismatic effect?

    Answer: 0.80Δ base in

    Axis 090 means the cylinder acts in the 180° (horizontal) meridian; horizontal power = +2.00 + (-4.00) = -2.00 D; Δ = 2.00 × 0.4 = 0.80Δ; minus lens with OC nasal to gaze = base in.

  2. Prentice's Rule states that prism is induced whenever the eye looks through any point other than the:

    Answer: Optical center of the lens

    The optical center is the only point in the lens where light passes without prismatic deviation.

  3. A patient requires 3.00Δ base down OD and the lens power is +6.00 D. Instead of grinding prism, the OC is shifted. How far and in which direction?

    Answer: 5 mm upward

    d = 3.00/6.00 = 0.5 cm = 5 mm; for a plus lens, shifting the OC upward places the eye below it, inducing base-down prism.

  4. A -8.00 D contact lens is centered on the eye. The patient then fixates 3 mm nasally from center. How much prism is induced?

    Answer: 2.40Δ

    Δ = 8.00 × 0.3 = 2.40Δ; Prentice's Rule applies to contact lenses exactly as it does to spectacle lenses.

  5. When a patient's measured binocular PD exceeds the frame's optical center distance, what type of prism is induced for a plus lens wearer?

    Answer: Base in

    When PD > frame OC distance, the OCs sit closer together than the pupils; the eyes look temporal to the OCs; for plus lenses, temporal gaze = OC is nasal = base in.

  6. A lens OC is found 2 mm above and 3 mm nasal to the MRP. Lens power is +5.00 D. What is the resultant total prismatic effect?

    Answer: 1.80Δ

    Vertical Δ = 5.00 × 0.2 = 1.00Δ; horizontal Δ = 5.00 × 0.3 = 1.50Δ; resultant = √(1.00² + 1.50²) = √3.25 ≈ 1.80Δ.

  7. A presbyopic patient has a +2.00 D near add with the segment center 4 mm below the distance OC. Assuming zero distance power, how much vertical prism acts at the segment center?

    Answer: 0.80Δ base down

    Δ = 2.00 × 0.4 = 0.80Δ; looking below the add's OC with a plus add produces base-down prism.