Amplitude/phase patterns in dynamic scintigraphic imaging
Conventional nuelear medieine proeedures study the dis- tribution of radiolabelled eompounds (radiopharmaeeutieals) in the body under physiologieal as well as under pathologieal eonditions. Beeause of their ability to visua- lise and to quantify the distribution of radiopharmaeeuti- eals within the body by means of external deteetors, nuelear medieine teehniques are basieally non invasive and funetion oriented. The spatial variation of the traeer distribution in the field of view, or the ehange in distribution during a time interval are interpreted as representing speeifie phy- siologie or pathophysiologie processes. As eompared to other diagnostie imaging teehniques, the spatial resolution of seintigraphie images is rather poor, their temporal resolu- tion is good. Faetors that will therefore determine the ultimate diag- nostie value of a seintigraphie study inelude 1. The speeifieity of the labelled eompounds for the process under study, 2. The resolution in time and space of the instrumentation, and its ability of measuring quantitatively tissue aetivity eoneentrations, 3. The formulation of physiologieal or pathophysiologieal models from whieh the distribution of the traeer ean be predieted. 2 While interpreting nuclear medicine data, the interrelations between these factors should permanently remain under consi- deration. The generalised use of minicomputers has resulted in major advances in information processing in nuclear medicine imaging procedures. Central to this is image digitisation.
1000801110
Amplitude/phase patterns in dynamic scintigraphic imaging
Conventional nuelear medieine proeedures study the dis- tribution of radiolabelled eompounds (radiopharmaeeutieals) in the body under physiologieal as well as under pathologieal eonditions. Beeause of their ability to visua- lise and to quantify the distribution of radiopharmaeeuti- eals within the body by means of external deteetors, nuelear medieine teehniques are basieally non invasive and funetion oriented. The spatial variation of the traeer distribution in the field of view, or the ehange in distribution during a time interval are interpreted as representing speeifie phy- siologie or pathophysiologie processes. As eompared to other diagnostie imaging teehniques, the spatial resolution of seintigraphie images is rather poor, their temporal resolu- tion is good. Faetors that will therefore determine the ultimate diag- nostie value of a seintigraphie study inelude 1. The speeifieity of the labelled eompounds for the process under study, 2. The resolution in time and space of the instrumentation, and its ability of measuring quantitatively tissue aetivity eoneentrations, 3. The formulation of physiologieal or pathophysiologieal models from whieh the distribution of the traeer ean be predieted. 2 While interpreting nuclear medicine data, the interrelations between these factors should permanently remain under consi- deration. The generalised use of minicomputers has resulted in major advances in information processing in nuclear medicine imaging procedures. Central to this is image digitisation.
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Amplitude/phase patterns in dynamic scintigraphic imaging

Amplitude/phase patterns in dynamic scintigraphic imaging

Amplitude/phase patterns in dynamic scintigraphic imaging

Amplitude/phase patterns in dynamic scintigraphic imaging

Paperback(Softcover reprint of the original 1st ed. 1984)

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Overview

Conventional nuelear medieine proeedures study the dis- tribution of radiolabelled eompounds (radiopharmaeeutieals) in the body under physiologieal as well as under pathologieal eonditions. Beeause of their ability to visua- lise and to quantify the distribution of radiopharmaeeuti- eals within the body by means of external deteetors, nuelear medieine teehniques are basieally non invasive and funetion oriented. The spatial variation of the traeer distribution in the field of view, or the ehange in distribution during a time interval are interpreted as representing speeifie phy- siologie or pathophysiologie processes. As eompared to other diagnostie imaging teehniques, the spatial resolution of seintigraphie images is rather poor, their temporal resolu- tion is good. Faetors that will therefore determine the ultimate diag- nostie value of a seintigraphie study inelude 1. The speeifieity of the labelled eompounds for the process under study, 2. The resolution in time and space of the instrumentation, and its ability of measuring quantitatively tissue aetivity eoneentrations, 3. The formulation of physiologieal or pathophysiologieal models from whieh the distribution of the traeer ean be predieted. 2 While interpreting nuclear medicine data, the interrelations between these factors should permanently remain under consi- deration. The generalised use of minicomputers has resulted in major advances in information processing in nuclear medicine imaging procedures. Central to this is image digitisation.

Product Details

ISBN-13: 9789400960114
Publisher: Springer Netherlands
Publication date: 10/12/2011
Series: Developments in Nuclear Medicine , #5
Edition description: Softcover reprint of the original 1st ed. 1984
Pages: 168
Product dimensions: 6.10(w) x 9.25(h) x 0.01(d)

Table of Contents

Content.- 1. The temporal Fourier transform as a general approach to functional isotopic imaging.- 2. Amplitude/phase imaging of transient phenomena: superior cavography.- 3. Regional breathing patterns studied by dynamic transmission scintigraphy and the temporal Fourier transform.- 4. Amplitude/phase images as a temporal condensate of the averaged cardiac cycle.- 5. Clinical evaluation of amplitude/phase analysis for the assessment of regional wall motion disturbances.- 6. Non-invasive assessment of the proximal stenoses of the main coronary arteries by means of exercise radionuclide ventriculography.- 7. Functional dissimilarity between anterior and posterior ventricular walls during acute myocardial infarction.- 8. Scintigraphic visualisation of the effect of conduction disturbances on the mechanical events of the cardiac cycle.- 9. Parametric imaging and temporal contrast enhancement for the visualisation of time patterns.- 10. Radionuclide indices of cardiac function related to structural ventricular disorders.- Conclusions.- Color plates.- Index of Subjects.
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