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Transcranial doppler equipment
Transcranial doppler equipment











transcranial doppler equipment

The transducer converts the echo into an electrical signal. The magnitude and amplitude of the reflected wave depends on the amplitude, angle of incidence, environmental acoustic impedance, and size of the feedback surface. The time it takes for the sound wave to travel back and forth indicates the depth of the feedback surface: d = c * t/2 (c: speed of sound propagation in the body t: time it takes for the sound wave to travel back and forth d: depth feedback side). The disadvantage is that the high velocity flow cannot be measured, the time T for the outgoing and returning pulses determines the shortest time interval between two pulses, the repetition frequency of the PRF pulses cannot be greater than 1/ T.

transcranial doppler equipment

The advantage of the transcranial doppler pulse probe is the determination of the location of the flow. Only the feedback pulse at the sampling site is analyzed.

transcranial doppler equipment

The wave propagates in sequence of pulses. Pulse probe: The probe has a crystal that both transmits and receives. For example, when sound waves pass through two adjacent blood vessels, the recorded speed is the average speed of the two blood vessels. However, the disadvantage is that the speed is not recorded at one point, but the average speed of many points the beam meets along the way. Continuity transducer: Transducer with 2 crystals Continuity of sound waves Continuity of sound waves The advantage of the continuous transducer of transcranial doppler ultrasound is that it can measure very high velocities.













Transcranial doppler equipment