| 000 | 03979nam a22003975i 4500 | ||
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| 988 | _aSpringer_BiomedLife_2019 | ||
| 999 |
_c116740 _d116740 _x1 |
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| 001 | 116740 | ||
| 003 | ES-MaUEC | ||
| 005 | 20230110040244.0 | ||
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| 007 | cr nn nnnaamaa | ||
| 008 | 191003s2019 gw | s |||| 0|eng d | ||
| 020 | _a9783030305116 | ||
| 024 | 7 |
_a10.1007/978-3-030-30511-6 _2doi |
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| 040 |
_aES-MaUEC _bspa _cES-MaUEC _dES-MaUEC |
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| 050 | 4 |
_aR857.O6 _b2019 EB |
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| 100 | 1 |
_aChappell, Michael _eautor _997916 |
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| 245 | 1 | 0 |
_aPrinciples of Medical Imaging for Engineers : _bFrom Signals to Images _cby Michael Chappell. |
| 250 | _a1st ed. 2019. | ||
| 264 | 1 |
_aCham, Switzerland _bSpringer International Publishing _c2019 |
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| 300 | _a1 recurso en línea (XIV, 169 páginas) | ||
| 336 |
_2rdacontent _aTexto _btxt |
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| 337 |
_2rdamedia _aelectrónico _bc |
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| 338 |
_2rdacarrier _arecurso electrónico _bcr |
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| 347 |
_atext file _bPDF _2rda |
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| 490 | 0 | _aBiomedical and Life Sciences (Springer-11642) | |
| 505 | 0 | _aWhat is Medical Imaging? -- Part I: From Signals... -- Basic Concepts -- Transmission: X-Rays -- Reflection : Ultrasound -- Emission: SPECT/PET -- Resonance: NMR -- Part II: ...To Images -- A Revision of Frequency Analysis -- Basic Concepts -- Timing-Based Reconstruction -- Back-Projection Reconstruction: X-Ray and PET/SPECT -- Fourier Reconstruction: MRI -- Part III: Functional and Physiological Imaging -- Contrast Agents -- Tracer Kinetics -- Examples of Tracer Kinetic Methods -- Other Physiological and Functional MRI Methods. | |
| 520 | 3 | _aThis introduction to medical imaging introduces all of the major medical imaging techniques in wide use in both medical practice and medical research, including Computed Tomography, Ultrasound, Positron Emission Tomography, Single Photon Emission Tomography and Magnetic Resonance Imaging. Principles of Medical Imaging for Engineers introduces fundamental concepts related to why we image and what we are seeking to achieve to get good images, such as the meaning of 'contrast' in the context of medical imaging. This introductory text separates the principles by which 'signals' are generated and the subsequent 'reconstruction' processes, to help illustrate that these are separate concepts and also highlight areas in which apparently different medical imaging methods share common theoretical principles. Exercises are provided in every chapter, so the student reader can test their knowledge and check against worked solutions and examples. The text considers firstly the underlying physical principles by which information about tissues within the body can be extracted in the form of signals, considering the major principles used: transmission, reflection, emission and resonance. Then, it goes on to explain how these signals can be converted into images, i.e., full 3D volumes, where appropriate showing how common methods of 'reconstruction' are shared by some imaging methods despite relying on different physics to generate the 'signals'. Finally, it examines how medical imaging can be used to generate more than just pictures, but genuine quantitative measurements, and increasingly measurements of physiological processes, at every point within the 3D volume by methods such as the use of tracers and advanced dynamic acquisitions. Principles of Medical Imaging for Engineers will be of use to engineering and physical science students and graduate students with an interest in biomedical engineering, and to their lecturers. | |
| 650 | 7 |
_2embne _9167079 _aSistemas de imágenes en medicina |
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| 776 | 0 | 8 |
_iPrinted edition: _z9783030305109 |
| 776 | 0 | 8 |
_iPrinted edition: _z9783030305123 |
| 776 | 0 | 8 |
_iPrinted edition: _z9783030305130 |
| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-030-30511-6 _zAcceso a este recurso digital (usuarios Universidad Europea de Madrid) |
| 942 |
_2lcc _cLE |
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| 998 |
_aSI _cm _dz _feng _ggw _h0 _b01/2020 _ek _zSI |
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