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Digitaalõiguste kaitse (DRM)
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Chapter 1: Image-Guided Focused Ultrasound Therapy: Past, Current and Future.
Chapter 2: Physical Principles of Focused Ultrasound Therapy.
Chapter 3: Mechanisms for Induction of Bio-Effects of Focused Ultrasound in Tissue.
Chapter 4: Image-Guided Focused Ultrasound Therapy: Physics and Clinical Applications.
Chapter 5: Calibration and quality assurance for high intensity focused ultrasound fields.
Chapter 6: Numerical Modelling for Simulation and Planning of Focused Ultrasound Treatments.
Chapter 7: Ultrasound Monitoring Techniques for Focused Ultrasound Therapy.
Chapter 8: Extracorporeal Ultrasound-guided HIFU Device and Clinical Application, Treatment Planning and B-mode Ultrasound for Real-time Monitoring and Controlling of Treatment.
Chapter 9: Imaging Assessments of Tumour Response and Treatment Outcome after High-intensity Focused Ultrasound Ablation.
Chapter 10: Focused Ultrasound Treatment of the Prostate: Devices and Clinical Results.
Chapter 11: US-Guided Focused Ultrasound Ablation for Uterine Fibroids.
Chapter 12: Clinical Application of Ultrasound-Guided Focused Ultrasound Ablation for Liver Tumours.
Chapter 13: Clinical Application of Ultrasound-Guided Focused Ultrasound Ablation for Kidney Tumours.
Chapter 14: Clinical Application of Ultrasound-Guided Focused Ultrasound Ablation for Pancreatic Cancer.
Chapter 15: Clinical Application of Ultrasound-Guided Focused Ultrasound Ablation for Breast Tumours.
Chapter 16: Clinical Application of Ultrasound-guided High Intensity Focused Ultrasound Treatment for Primary Bone Malignancies and Soft Tissue Sarcomas.
Chapter 17: Clinical Extracorporeal MR-Guided Focused Ultrasound (MRgFUS) Systems: Treatment Planning, Therapy Delivery, and Online Monitoring via Thermometry and Thermal Dose Mapping.
Chapter 18: Clinical Application of MR-Guided Focused Ultrasound Ablation for Uterine Fibroids.
Chapter 19: Clinical Application of MR-Guided Focused Ultrasound Ablation for Tumours in the Breast.
Chapter 20: Clinical Application of MR-Guided Focused Ultrasound Ablation for Bone Metastasis.
Chapter 21: Clinical Application of MR-Guided Focused Ultrasound Therapy in the Brain.
Chapter 22: Sonoporation: Concept, Mechanisms and Application to Cancer Treatment.
Chapter 23: Nano/Microbubble-assisted Ultrasound for Drug Delivery in Cancer.
Chapter 24: Anaesthesia, Ventilation and immobilisation Strategies for Focused Ultrasound Therapy (with special reference to high frequency ventilation).
Chapter 25: Triggered Temperature-Sensitive Liposome Rlease by Focused Ultrasound for Localised Drug Delivery.
Chapter 26: Transcranial Ultrasound-Mediated Blood-Brain Barrier Disruption for Targeted Drug Delivery.
Chapter 27: Histotripsy: Focused Ultrasound Therapy by Mechanical Tissue Fractionation.
Chapter 28: Focused Ultrasound Ablation Enhancement of Specific Antitumour Immunity.
Chapter 29: Focused Ultrasound Therapy for Treatment of Pain.