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2010 | OriginalPaper | Buchkapitel

2. A Primer on Imaging Anatomy and Physiology

verfasst von : Denise Aberle, MD, Suzie El-saden, MD, Pablo Abbona, MD, Ana Gomez, MD, Kambiz Motamedi, MD, Nagesh Ragavendra, MD, Lawrence Bassett, MD, Leanne Seeger, MD, Matthew Brown, PhD, Kathleen Brown, MD, Alex A. T. Bui, Hooshang Kangarloo, MD

Erschienen in: Medical Imaging Informatics

Verlag: Springer US

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Abstract

An understanding of medical imaging informatics begins with knowledge of medical imaging and its application toward diagnostic and therapeutic clinical assessment. This chapter is divided into two sections: a review of current imaging modalities; and a primer on imaging anatomy and physiology. In the first half, we introduce the major imaging modalities that are in use today: projectional imaging, computed tomography, magnetic resonance, and ultrasound. The core physics concepts behind each modality; the parameters and algorithms driving image formation; and variants and newer advances in each of these areas are briefly covered to familiarize the reader with the capabilities of each technique. From this foundation, in the second half of the chapter we describe several anatomical and physiologic systems from the perspective of imaging. Three areas are covered in detail: 1) the respiratory system; 2) the brain; and 3) breast imaging. Additional coverage of musculoskeletal, cardiac, urinary, and upper gastrointestinal systems is included. Each anatomical section begins with a general description of the anatomy and physiology, discusses the use of different imaging modalities, and concludes with a description of common medical problems/conditions and their appearance on imaging. From this chapter, the utility of imaging and its complexities becomes apparent and will serve to ground discussion in future chapters.

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Fußnoten
1
There remains some ambiguity in terminology, as digital radiography is sometimes used to refer to an umbrella term for both computed radiography and direct radiography. Here, we refer to digital radiography as a separate entity from computed radiography.
 
2
In point of fact, the partial voluming effect is not unique to computed tomography, but also occurs with other imaging modalities, such as magnetic resonance.
 
3
Although for some commercial multi-detector scanners, the slice thickness is independent of table speed because of the helical re-interpolation algorithm.
 
4
By convention, the direction of the field is taken to be the z-axis.
 
5
However, arguably only 1H and 31P exist at sufficient levels of concentration in vivo to be detectable presently.
 
6
In premature infants, the most likely problem is instead patent (ductus) ateriosus, the failure of the ductus arteriosus to close. The ductus arteriosus is a shunt that connects the pulmonary artery to the aortic arch in the fetus, allowing blood from the right ventricle to bypass the fetal lungs. Normally, this shunt is closed at birth.
 
7
In contrast, congenital obstructions cause a significantly larger amount of dilation in the area of the urinary tract proximal to the obstruction site.
 
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Metadaten
Titel
A Primer on Imaging Anatomy and Physiology
verfasst von
Denise Aberle, MD
Suzie El-saden, MD
Pablo Abbona, MD
Ana Gomez, MD
Kambiz Motamedi, MD
Nagesh Ragavendra, MD
Lawrence Bassett, MD
Leanne Seeger, MD
Matthew Brown, PhD
Kathleen Brown, MD
Alex A. T. Bui
Hooshang Kangarloo, MD
Copyright-Jahr
2010
Verlag
Springer US
DOI
https://doi.org/10.1007/978-1-4419-0385-3_2

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