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Inhaltsangabe: Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields.

Über den Autor: Researcher and PhD Candidate at University Technology Malaysia. Since October 2010 he is guest PhD Candidate at BMTI, Technische Universität Ilmenau, Germany under DAAD-PhD Sandwich Program. He has more than 25 international publications and his research interests are ultrasound medical imaging, 3D reconstruction, visualization & medical computing.

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Buchbeschreibung Buchzustand: New. Publisher/Verlag: LAP Lambert Academic Publishing | and its Application using Matlab | Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields. | Format: Paperback | Language/Sprache: english | 165 gr | 220x150x6 mm | 112 pp. Buchnummer des Verkäufers K9783845417837

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Buchbeschreibung LAP Lambert Academic Publishing Aug 2014, 2014. Taschenbuch. Buchzustand: Neu. 220x150x7 mm. Neuware - Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields. 112 pp. Englisch. Buchnummer des Verkäufers 9783845417837

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Buchbeschreibung LAP Lambert Academic Publishing Aug 2014, 2014. Taschenbuch. Buchzustand: Neu. 220x150x7 mm. Neuware - Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields. 112 pp. Englisch. Buchnummer des Verkäufers 9783845417837

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Buchbeschreibung LAP Lambert Academic Publishing Aug 2014, 2014. Taschenbuch. Buchzustand: Neu. 220x150x7 mm. This item is printed on demand - Print on Demand Neuware - Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields. 112 pp. Englisch. Buchnummer des Verkäufers 9783845417837

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Khin Wee, Lai; Supriyanto, Eko; Binti Wan Mahmud, Wan Mahani Hafizah
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Buchbeschreibung LAP LAMBERT Academic Publishing, 2011. Paperback. Buchzustand: New. book. Buchnummer des Verkäufers 3845417838

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Buchbeschreibung LAP Lambert Academic Publishing, Germany, 2014. Paperback. Buchzustand: New. 220 x 152 mm. Language: English . Brand New Book ***** Print on Demand *****.Ultrasound has been widely used in medical diagnostic and therapeutic. This is due to the safety, easiness and cost of this modality application. The existing ultrasound machine is able to visualize the human tissue as acoustic function in 4-dimension. This enables the fetus movement analysis during third trimester pregnancy. However, the dependency of operator causes difficulties to obtain the standard diagnostic image. Manual ultrasound marker measurements are easily prone to human error. The in-homogeneity of human tissue causes the noise of ultrasound image. In cases of low end ultrasound machine application, the images qualities are getting worse due to speckle noise. This book, therefore, provides the basic physics of ultrasound medical imaging. Image processing techniques covered from data acquisition, pre-processing, speckle noise reduction and segmentation are introduced. Several clinical applications of ultrasound image processing are described using Matlab programming implementation. This should be especially useful for students, lecturers or professional researchers in biomedical and image processing fields. Buchnummer des Verkäufers AAV9783845417837

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