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Passing the SPI exam requires the ability to manage time effectively. In addition to the Sonography Principles and Instrumentation (SPI) exam study materials, practice is essential to prepare for and pass the ARDMS SPI exam on the first try. It is critical to do self-assessment and learn time management skills. Because the SPI test has a restricted time constraint, time management must be exercised to get success. Only with enough practice one can answer real ARDMS SPI exam questions in a given amount of time.
NEW QUESTION # 94
Which setting improves temporal resolution?
Answer: B
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
Temporal resolution reflects how quickly frames are updated (frame rate). Reducing the number of scan lines per frame (low line density) decreases acquisition time, thus increasing frame rate and improving temporal resolution.
According to sonography instrumentation reference:
"Lower line density allows for faster frame rates, improving temporal resolution at the expense of spatial resolution." Therefore, the correct answer is D: Low line density.
NEW QUESTION # 95
Which action would increase the frame rate?
Answer: C
Explanation:
The frame rate in ultrasound imaging is influenced by several factors, including the number of focal zones. Each focal zone requires additional transmission and reception cycles, thus decreasing the frame rate. By decreasing the number of focal zones, the system requires fewer cycles per frame, which increases the frame rate. This enhances the temporal resolution, making it easier to capture fast-moving structures in real-time imaging.
Reference:
ARDMS Sonography Principles & Instrumentation Guidelines
Hagen-Ansert SL. Textbook of Diagnostic Ultrasonography. 8th ed. St. Louis, MO: Mosby; 2017.
NEW QUESTION # 96
Which adjustment can maintain the same frame rate when the depth is increased?
Answer: A
Explanation:
When the depth of imaging is increased, the time it takes for the ultrasound pulses to travel to and from the deeper structures also increases, which can reduce the frame rate. To maintain the same frame rate, one effective adjustment is to decrease the image width. Narrowing the image width reduces the number of scan lines required to create each frame, allowing the system to maintain a higher frame rate despite the increased depth.
ARDMS Sonography Principles and Instrumentation guidelines
Kremkau, F. W. (2015). Diagnostic Ultrasound: Principles and Instruments.
NEW QUESTION # 97
Which statement characterizes the primary difference between image A and image B?
Answer: C
Explanation:
The primary difference between Image A and Image B is the overall gain setting. Gain controls the amplification of the received echoes. A lower gain setting results in a darker image with less overall brightness, which is evident in Image A compared to Image B. Image B appears brighter, indicating a higher gain setting that amplifies the echoes more, making the structures appear more prominently.
Reference:
ARDMS Sonography Principles and Instrumentation guidelines
Hedrick, W. R., Hykes, D. L., & Starchman, D. E. (2005). Ultrasound Physics and Instrumentation.
NEW QUESTION # 98
What is the effect of an increased aperture in a linear array transducer?
Answer: B
Explanation:
The aperture of a transducer is the active area that emits and receives the ultrasound waves. In a linear array transducer, increasing the aperture (using more elements for transmission and reception) results in a deeper focus because the beam is more tightly focused over a longer distance. This improves lateral resolution at greater depths, as the ultrasound beam maintains a narrower width for a longer distance. It allows for better imaging of deeper structures without sacrificing resolution.
American Registry for Diagnostic Medical Sonography (ARDMS). Sonography Principles and Instrumentation (SPI) Examination Review Guide.
NEW QUESTION # 99
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