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Power Ultrasonics: Applications of High-Intensity Ultrasound, Second Edition provides a comprehensive reference on the fundamentals, processing, engineering, medical, food and pharmaceutical applications of ultrasonic processing. Chapters cover the fundamentals of nonlinear propagation of ultrasonic waves in fluids and solids, discuss the materials and designs of power ultrasonic transducers and devices, identify applications of high power ultrasound in materials engineering and mechanical engineering, food processing technology, environmental monitoring and remediation and industrial and chemical processing (including pharmaceuticals), medicine and biotechnology, and cover developments in ultrasound therapy and surgery applications. The new edition also includes recent advances in modeling, characterization and measurement techniques, along with additive manufacturing and micromanufacturing. This is an invaluable reference for graduate students and researchers working in the disciplines of materials science and engineering. In addition, those working on the physics of acoustics, sound and ultrasound, sonochemistry, acoustic engineering and industrial process technology, R&D managers, production, and biomedical engineers will find it useful to their work. Covers the fundamentals of nonlinear propagation of ultrasonic waves in fluids and solids Discusses the materials and designs of power ultrasonic transducers and devices Considers state-of-the-art power sonic applications across a wide range of industries.
Ultrasonic angioplasty. --- Ultrasound angioplasty --- Angioplasty --- High-intensity focused ultrasound. --- FUS (Focused ultrasound) --- HIFU (High-intensity focused ultrasound) --- HIFUS (High-intensity focused ultrasound) --- Ultrasonic waves --- Therapeutic use --- High-Energy Shock Waves --- High-Intensity Focused Ultrasound Ablation --- Extracorporeal Shockwave Therapy
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The landscape of minimally invasive urological intervention is changing. A lot of new innovations and technological developments have happened over the last 3 decades. Laparoscopy and robotic surgery have revolutionised kidney and prostate cancer treatment, with more minimally invasive procedures now being carried out than ever before. At the same time, technological advancements and the use of laser have changed the face of endourology. Several new innovative treatments are now commonplace for benign prostate enlargement (BPE). Management of prostate cancer now involves procedures such as robotic prostatectomy, brachytherapy, radiotherapy, cryotherapy and HIFU. Robotic partial nephrectomy and cryotherapy have changed the face of renal cancer. En-bloc resection of bladder cancer is challenging the traditional management of non-muscle invasive bladder cancer and becoming commonplace, while robotic cystectomy is also gaining popularity for muscle invasive bladder cancer. Newer surgical intervention related to BPE includes laser (holmium, thulium and green light), water-based treatment (Rezum, Aquablation) and other minimally invasive procedures such as prostate artery embolisation (PAE) and Urolift. Endourological procedures have incorporated newer laser types and settings such as moses technology, disposable ureteroscopes (URS) and minimisation of percutaneous nephrolithotomy (PCNL) instruments. All these technological innovations and improvements have led to shorter hospital stay, reduced cost, potential reduction in complications and improvement in the quality of life (QoL).
Medicine --- Surgery --- partial nephrectomy --- single site surgery --- sutureless --- CEUS --- contrast-enhanced ultrasound --- renal ultrasound --- image quality --- small renal mass (3–5) --- kidney stones --- metabolic syndrome --- urolithiasis --- nephrolithiasis --- kidney calculi --- diabetes mellitus --- acute kidney injury --- percutaneous nephrolithotomy --- urology --- artificial intelligence --- machine learning --- urinary incontinence --- kidney stone disease --- fertility --- reproductive urology --- renal cell carcinoma --- hydronephrosis --- urinary reflux --- endourology --- pediatric urology --- prostate cancer --- bladder cancer --- nephrostomy --- quality of life --- survival --- decision making --- ureteroscopy --- laser --- RIRS --- Moses --- holmium --- mineral water --- mineral composition --- drinking water --- still water --- sparkling water --- Ho:YAG laser --- thulium fiber laser --- laser fiber --- lithotripsy --- chronic prostatitis --- chronic pelvic pain syndrome --- extracorporeal shockwave therapy --- ESWT --- NIH-CPSI --- EHS --- IIEF-5 --- QoL --- urosepsis --- laser lithotripsy --- predictor factors --- PCNL --- renal tumour --- AI --- TFL --- partial nephrectomy --- single site surgery --- sutureless --- CEUS --- contrast-enhanced ultrasound --- renal ultrasound --- image quality --- small renal mass (3–5) --- kidney stones --- metabolic syndrome --- urolithiasis --- nephrolithiasis --- kidney calculi --- diabetes mellitus --- acute kidney injury --- percutaneous nephrolithotomy --- urology --- artificial intelligence --- machine learning --- urinary incontinence --- kidney stone disease --- fertility --- reproductive urology --- renal cell carcinoma --- hydronephrosis --- urinary reflux --- endourology --- pediatric urology --- prostate cancer --- bladder cancer --- nephrostomy --- quality of life --- survival --- decision making --- ureteroscopy --- laser --- RIRS --- Moses --- holmium --- mineral water --- mineral composition --- drinking water --- still water --- sparkling water --- Ho:YAG laser --- thulium fiber laser --- laser fiber --- lithotripsy --- chronic prostatitis --- chronic pelvic pain syndrome --- extracorporeal shockwave therapy --- ESWT --- NIH-CPSI --- EHS --- IIEF-5 --- QoL --- urosepsis --- laser lithotripsy --- predictor factors --- PCNL --- renal tumour --- AI --- TFL
Choose an application
The landscape of minimally invasive urological intervention is changing. A lot of new innovations and technological developments have happened over the last 3 decades. Laparoscopy and robotic surgery have revolutionised kidney and prostate cancer treatment, with more minimally invasive procedures now being carried out than ever before. At the same time, technological advancements and the use of laser have changed the face of endourology. Several new innovative treatments are now commonplace for benign prostate enlargement (BPE). Management of prostate cancer now involves procedures such as robotic prostatectomy, brachytherapy, radiotherapy, cryotherapy and HIFU. Robotic partial nephrectomy and cryotherapy have changed the face of renal cancer. En-bloc resection of bladder cancer is challenging the traditional management of non-muscle invasive bladder cancer and becoming commonplace, while robotic cystectomy is also gaining popularity for muscle invasive bladder cancer. Newer surgical intervention related to BPE includes laser (holmium, thulium and green light), water-based treatment (Rezum, Aquablation) and other minimally invasive procedures such as prostate artery embolisation (PAE) and Urolift. Endourological procedures have incorporated newer laser types and settings such as moses technology, disposable ureteroscopes (URS) and minimisation of percutaneous nephrolithotomy (PCNL) instruments. All these technological innovations and improvements have led to shorter hospital stay, reduced cost, potential reduction in complications and improvement in the quality of life (QoL).
Medicine --- Surgery --- partial nephrectomy --- single site surgery --- sutureless --- CEUS --- contrast-enhanced ultrasound --- renal ultrasound --- image quality --- small renal mass (3–5) --- kidney stones --- metabolic syndrome --- urolithiasis --- nephrolithiasis --- kidney calculi --- diabetes mellitus --- acute kidney injury --- percutaneous nephrolithotomy --- urology --- artificial intelligence --- machine learning --- urinary incontinence --- kidney stone disease --- fertility --- reproductive urology --- renal cell carcinoma --- hydronephrosis --- urinary reflux --- endourology --- pediatric urology --- prostate cancer --- bladder cancer --- nephrostomy --- quality of life --- survival --- decision making --- ureteroscopy --- laser --- RIRS --- Moses --- holmium --- mineral water --- mineral composition --- drinking water --- still water --- sparkling water --- Ho:YAG laser --- thulium fiber laser --- laser fiber --- lithotripsy --- chronic prostatitis --- chronic pelvic pain syndrome --- extracorporeal shockwave therapy --- ESWT --- NIH-CPSI --- EHS --- IIEF-5 --- QoL --- urosepsis --- laser lithotripsy --- predictor factors --- PCNL --- renal tumour --- AI --- TFL
Choose an application
The landscape of minimally invasive urological intervention is changing. A lot of new innovations and technological developments have happened over the last 3 decades. Laparoscopy and robotic surgery have revolutionised kidney and prostate cancer treatment, with more minimally invasive procedures now being carried out than ever before. At the same time, technological advancements and the use of laser have changed the face of endourology. Several new innovative treatments are now commonplace for benign prostate enlargement (BPE). Management of prostate cancer now involves procedures such as robotic prostatectomy, brachytherapy, radiotherapy, cryotherapy and HIFU. Robotic partial nephrectomy and cryotherapy have changed the face of renal cancer. En-bloc resection of bladder cancer is challenging the traditional management of non-muscle invasive bladder cancer and becoming commonplace, while robotic cystectomy is also gaining popularity for muscle invasive bladder cancer. Newer surgical intervention related to BPE includes laser (holmium, thulium and green light), water-based treatment (Rezum, Aquablation) and other minimally invasive procedures such as prostate artery embolisation (PAE) and Urolift. Endourological procedures have incorporated newer laser types and settings such as moses technology, disposable ureteroscopes (URS) and minimisation of percutaneous nephrolithotomy (PCNL) instruments. All these technological innovations and improvements have led to shorter hospital stay, reduced cost, potential reduction in complications and improvement in the quality of life (QoL).
partial nephrectomy --- single site surgery --- sutureless --- CEUS --- contrast-enhanced ultrasound --- renal ultrasound --- image quality --- small renal mass (3–5) --- kidney stones --- metabolic syndrome --- urolithiasis --- nephrolithiasis --- kidney calculi --- diabetes mellitus --- acute kidney injury --- percutaneous nephrolithotomy --- urology --- artificial intelligence --- machine learning --- urinary incontinence --- kidney stone disease --- fertility --- reproductive urology --- renal cell carcinoma --- hydronephrosis --- urinary reflux --- endourology --- pediatric urology --- prostate cancer --- bladder cancer --- nephrostomy --- quality of life --- survival --- decision making --- ureteroscopy --- laser --- RIRS --- Moses --- holmium --- mineral water --- mineral composition --- drinking water --- still water --- sparkling water --- Ho:YAG laser --- thulium fiber laser --- laser fiber --- lithotripsy --- chronic prostatitis --- chronic pelvic pain syndrome --- extracorporeal shockwave therapy --- ESWT --- NIH-CPSI --- EHS --- IIEF-5 --- QoL --- urosepsis --- laser lithotripsy --- predictor factors --- PCNL --- renal tumour --- AI --- TFL
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