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Thermal Ablation Therapy: Theory and Simulation includes detailed theoretical and technical concepts of thermal ablation therapy in different body organs. Concepts of ablation technology based on different thermal ablation methods are introduced, along with changes in the tissues' mechanical properties due to thermal denaturation. The book emphasizes the mathematical and engineering concepts of RF and MW energy propagation through tissues and where high heating rates produced by MW systems can overcome the heat-sink effects from nearby vessels. The design and tuning of the MW antennas to deliver energy efficiently to specific organ systems such as the liver or lung is also covered.
Cancer --- Tumors --- Neoplasms --- Tumours --- Pathology --- Cysts (Pathology) --- Oncology --- Thermotherapy. --- Heat therapy
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In this book, application-related studies for acoustic biomedical sensors are covered in depth. The book features an array of different biomedical signals, including acoustic biomedical signals as well as the thermal biomedical signals, magnetic biomedical signals, and optical biomedical signals to support healthcare. It employs signal processing approaches, such as filtering, Fourier transform, spectral estimation, and wavelet transform. The book presents applications of acoustic biomedical sensors and bio-signal processing for prediction, detection, and monitoring of some diseases from the phonocardiogram (PCG) signal analysis. Several challenges and future perspectives related to the acoustic sensors applications are highlighted. This book supports the engineers, researchers, designers, and physicians in several interdisciplinary domains that support healthcare. .
Engineering. --- Radiology. --- Computational linguistics. --- Bioinformatics. --- Biomedical engineering. --- Signal, Image and Speech Processing. --- Language Translation and Linguistics. --- Biomedical Engineering. --- Ultrasound. --- Computational Linguistics. --- Natural language processing (Computer science). --- Diagnosis, Ultrasonic. --- Natural Language Processing (NLP). --- Biomedical Engineering and Bioengineering. --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Bio-informatics --- Biological informatics --- Biology --- Information science --- Computational biology --- Systems biology --- Automatic language processing --- Language and languages --- Language data processing --- Linguistics --- Natural language processing (Linguistics) --- Applied linguistics --- Cross-language information retrieval --- Mathematical linguistics --- Multilingual computing --- Diagnosis, Ultrasonic --- Diagnostic sonography --- Diagnostic ultrasonics --- Diagnostic ultrasonography --- Diagnostic ultrasound --- Medical diagnostic ultrasonic imaging --- Medical ultrasonography --- Ultrasonic diagnosis --- Ultrasonic diagnostic imaging --- Ultrasonic imaging --- Ultrasonic waves --- Diagnostic imaging --- Ultrasonics in medicine --- NLP (Computer science) --- Artificial intelligence --- Electronic data processing --- Human-computer interaction --- Semantic computing --- Data processing --- Diagnostic use --- Biosensors. --- Biodetectors --- Biological detectors --- Biological sensors --- Biomedical detectors --- Biomedical sensors --- Detectors --- Medical instruments and apparatus --- Physiological apparatus --- Signal processing. --- Image processing. --- Speech processing systems. --- Radiological physics --- Physics --- Radiation --- Computational linguistics --- Electronic systems --- Information theory --- Modulation theory --- Oral communication --- Speech --- Telecommunication --- Singing voice synthesizers --- Pictorial data processing --- Picture processing --- Processing, Image --- Imaging systems --- Optical data processing --- Processing, Signal --- Information measurement --- Signal theory (Telecommunication)
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Vibrations --- Biomathematics. Biometry. Biostatistics --- Human biochemistry --- Semiology. Diagnosis. Symptomatology --- Biotechnology --- Computer architecture. Operating systems --- Computer. Automation --- Mathematical linguistics --- akoestiek --- ultrageluid --- beeldverwerking --- medische biochemie --- NLP (neurolinguïstisch programmeren) --- spraaktechnologie --- bio-engineering --- bio-informatica --- diagnostiek (geneeskunde) --- biotechnologie --- biometrie --- signaalverwerking
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In this book, application-related studies for acoustic biomedical sensors are covered in depth. The book features an array of different biomedical signals, including acoustic biomedical signals as well as the thermal biomedical signals, magnetic biomedical signals, and optical biomedical signals to support healthcare. It employs signal processing approaches, such as filtering, Fourier transform, spectral estimation, and wavelet transform. The book presents applications of acoustic biomedical sensors and bio-signal processing for prediction, detection, and monitoring of some diseases from the phonocardiogram (PCG) signal analysis. Several challenges and future perspectives related to the acoustic sensors applications are highlighted. This book supports the engineers, researchers, designers, and physicians in several interdisciplinary domains that support healthcare. .
Vibrations --- Biomathematics. Biometry. Biostatistics --- Human biochemistry --- Semiology. Diagnosis. Symptomatology --- Biotechnology --- Computer architecture. Operating systems --- Computer. Automation --- Mathematical linguistics --- akoestiek --- ultrageluid --- beeldverwerking --- medische biochemie --- NLP (neurolinguïstisch programmeren) --- spraaktechnologie --- bio-engineering --- bio-informatica --- diagnostiek (geneeskunde) --- biotechnologie --- biometrie --- signaalverwerking
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