Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the...

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Transcript of Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the...

Page 1: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 2: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 3: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 4: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 5: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 6: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 7: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 8: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 9: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
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VASCULAR PROBE

FEATURE FREQUENCY APPLICATION

1. LINEAR PROBE

▪ wide footprint▪ the same field ofview at deep part

▪ 7,5-10 MHz. ▪ superficial arteries(carotid, femoral,popliteal…)

2. CONVEX PROBE

▪ wide footprint▪ field of view willbe spreaded at deeppart

▪ 3,5- 5 MHz. ▪ abdominal arteriesand when is necessarya study more in depththan does the linearprobe

3. SECTORPROBE

▪ small footprint,▪ field of view willbe spreaded widelyat deep part

▪ 2-3 MHz ▪ transcranial, cardiac,abdominal application

Page 12: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
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a

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a

Page 18: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
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c

Page 21: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 22: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 23: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 24: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 25: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 26: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
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frequency

Page 30: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
Page 31: Diapositiva 1 - EchoDoppler Lessons · b) the transducer is able to reverse the process with the transformation of the mechanical energy of the incident acoustic waves into the corresponding
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short videos and playlists on echocolor Doppler physics areavailable onhttps://www.facebook.com/francoaccorsiecodoppler/ and myyoutube channel:http://www.youtube.com/channel/UCij561sX0bQoEjXIWKuPnKg