Table
of Contents
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1 |
The Basics |
1 |
2 |
Sound |
11 |
|
Sound Waves |
11 |
|
Acoustic Variables |
12 |
|
Acoustic Parameters |
12 |
|
In-Phase and Out-of-Phase Waves |
14 |
|
Review: Sound |
16 |
3 |
Describing
Sound Waves |
19 |
|
Period |
20 |
|
Frequency |
21 |
|
Three "Bigness" Parameters |
27 |
|
Wavelength |
33 |
|
Propagation Speed |
36 |
|
Review: Describing Sound Waves |
41 |
4 |
Describing Pulsed Waves |
47 |
|
Pulse Duration |
49 |
|
Spatial Pulse Length |
51 |
|
Pulse Repetition Period |
53 |
|
Pulse Repetition Frequency |
56 |
|
Duty Factor |
60 |
|
Parameters That Describe Both Pulsed and Continuous Waves |
64 |
|
Review: Pulsed Waves |
65 |
5 |
Intensities |
69 |
|
Measuring and Reporting Sound Beam Intensity |
70 |
|
Spatial Considerations |
70 |
|
Temporal Considerations |
71 |
|
Combining Spatial and Temporal Factors |
72 |
|
The "Ten Commandments" of Intensity |
74 |
6 |
Interaction of Sound and Media |
75 |
|
Decibels (dB) |
77 |
|
Attenuation |
80 |
|
Attenuation Coefficient |
84 |
|
Reflection and Transmission |
88 |
|
Impedance |
88 |
|
Summary: Reflection, Transmission, and Refraction |
104 |
|
Review: Attenuation & Reflection |
106 |
7 |
Range Equation |
107 |
|
Time-of-Flight or Go-Return Time |
107 |
|
Review: Range Equation |
111 |
8 |
Transducers |
113 |
|
Basic Transducer Construction |
114 |
|
Transducer Frequencies |
122 |
|
Review: Transducers |
126 |
9 |
Sound Beams |
129 |
|
Shape of a Sound Beam |
130 |
|
Anatomy of a Sound Beam |
130 |
|
Determining Focal Depth |
135 |
|
Sound Beam Divergence |
139 |
|
Spherical Waves |
142 |
|
Huygens' Principle |
142 |
|
Review: Sound Beams |
143 |
10 |
Axial and Lateral Resolution |
145 |
|
Axial Resolution |
145 |
|
Lateral Resolution |
151 |
|
Focusing |
154 |
11 |
Display Modes |
159 |
|
1. A-mode-Amplitude |
159 |
|
2. B-mode-Brightness |
161 |
|
3.M-mode-Motion |
162 |
12 |
Two-Dimensional Imaging |
165 |
|
Mechanical Transducer |
167 |
|
Linear Phased Arrays |
169 |
|
Annular Phased Arrays |
178 |
|
Linear Sequential Arrays |
180 |
|
Vector Arrays |
186 |
|
Slice Thickness or Elevational
Resolution |
188 |
13 |
Real-Time Imaging |
197 |
|
Temporal Resolution |
198 |
|
Imaging Depth |
200 |
|
Number of Pulses per Image |
201 |
14 |
Pulsed Echo Instrumentation |
215 |
|
Pulser |
217 |
|
Beam Former |
221 |
|
Receiver |
223 |
|
Output Power vs. Receiver Gain |
235 |
|
Review: Pulsed Echo Instrumentation |
236 |
15 |
Displays and Image Processing |
239 |
|
Display Controls |
240 |
|
Analog and Digital image Data |
247 |
|
Magnification |
250 |
|
Coded Excitation |
253 |
|
Spatial Compounding |
254 |
|
Frequency Compounding |
255 |
|
Edge Enhancement |
255 |
|
Persistence |
256 |
|
Fill-in Interpolation |
257 |
|
Emerging Technology: Elastography |
258 |
|
PACS and DICOM |
259 |
|
Recording and Archiving Techniques |
260 |
|
Review: Displays and Image Processing |
261 |
16 |
Dynamic Range |
265 |
|
Dynamic Range of System Components |
266 |
|
Number of Choices |
268 |
17 |
Harmonics and Contrast Agents |
269 |
|
Fundamental and Harmonic Images |
270 |
|
Tissue Harmonics |
272 |
|
Pulse Inversion Harmonics |
275 |
|
Contrast Agents |
278 |
|
Contrast Harmonics |
278 |
18 |
Hemodynamics |
285 |
|
Flow |
286 |
|
Laminar vs. Turbulent |
287 |
|
Energy Gradient |
289 |
|
Forms of Energy |
289 |
|
Energy Losses in the Circulation |
290 |
|
Stenosis |
292 |
|
Bernoulli's Principle |
293 |
|
Pressure-Flow Relationships |
294 |
|
Ohm's Law |
294 |
|
Venous Hemodynamics |
295 |
|
Hydrostatic Pressure |
296 |
|
Breathing and Venous Flow |
300 |
19 |
Doppler |
303 |
|
Speed vs. Velocity |
305 |
|
The Doppler Equation |
306 |
|
Bidirectional Doppler |
311 |
|
Continuous Wave Doppler |
312 |
|
Pulsed Wave Doppler |
314 |
|
Aliasing |
315 |
|
Color Flow Doppler |
325 |
|
Doppler Artifacts |
334 |
|
Spectral Analysis |
335 |
20 |
Optimizing Doppler Imaging |
341 |
|
Normal Incidence |
342 |
|
Color Doppler Gain |
344 |
|
Spectral Doppler Gain |
346 |
|
Aliasing |
347 |
|
Flow Reversal vs. Aliasing |
348 |
|
Wall Filter |
351 |
|
Wall Filter vs. Increasing Scale |
354 |
21 |
Artifacts |
355 |
|
Image Characteristics |
356 |
|
Basic Assumptions of Imaging System |
356 |
|
Reverberation |
357 |
|
Comet Tail |
358 |
|
Shadow |
359 |
|
Enhancement |
361 |
|
Mirror Image |
363 |
|
Speed Error |
364 |
|
Lobes |
366 |
|
Refraction |
368 |
|
Slice Thickness |
369 |
|
Lateral Resolution |
370 |
|
Axial Resolution |
370 |
|
Review: Artifacts |
376 |
22 |
Quality Assurance |
379 |
|
Requirements |
380 |
|
Objective vs. Subjective Standards |
381 |
|
Tissue Equivalent Phantom |
382 |
|
Doppler Phantom |
383 |
|
Slice Thickness Phantom |
384 |
|
Performance Measurements |
385 |
23 |
Sonographers in the
Clinical Setting |
391 |
|
Major Principles of Medical Ethics |
391 |
|
Informed Consent |
393 |
|
Patient-Sonographer Interaction |
394 |
|
Sonographer-Work Environment Interaction |
394 |
|
Standard Precautions |
396 |
24 |
Bioeffects |
401 |
|
Converting Sound Energy into Heat |
403 |
|
Risk-Benefit Relationship |
405 |
|
Study Techniques |
407 |
|
Mechanisms of Bioeffects |
408 |
|
Epidemiology |
413 |
|
Clinical Safety and Prudent Use |
414 |
|
Electrical Safety |
417 |
|
Exam
Review |
423 |
|
Index |
553 |
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