Objective: To confirm the correlation between planning and thermal injury of the prostate as determined by magnetic resonance imaging (MRI) and histology in canine and humans treated with transurethral ultrasound.
Material And Methods: Canine studies: 2 sets of in vivo studies were performed under general anesthesia in 1.5 T clinical MRI. Nine dogs were treated using single transducer; 8 dogs were treated using urethral applicator with multiple transducers. Rectal cooling was maintained. After initial imaging, a target boundary was selected and high-intensity ultrasound energy delivered. The spatial temperature distribution was measured continuously every 5 seconds with MR thermometry using the proton-resonant frequency shift method. The goal was to achieve 55 °C at the target boundary. After treatment, the prostate was harvested and fixed with adjoining tissue, including rectum. Temperature maps, anatomical images, and histologic sections were registered to each other and compared. Human studies: To date, 5 patients with localized prostate cancer have been treated immediately before radical prostatectomy. Approximately 30% of the gland volume was targeted.
Results: A continuous pattern of thermal coagulation was successfully achieved within the target region, with an average spatial precision of 1-2 mm. Radical prostatectomy was routine, with an uncomplicated postoperative course in all patients. The correlation between anatomical, thermal, and histologic images was ≤3 mm. Treatment time was <30 minutes. No thermal damage to rectal tissue was observed.
Conclusions: Thermal ablation within the prescribed target of the prostate has been successfully demonstrated in canine studies. The treatment is also feasible in humans.
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http://dx.doi.org/10.1016/j.urology.2010.04.046 | DOI Listing |
Vet Med Sci
January 2025
Veterinary Specialists Scotland, Part of Linnaeus Veterinary Ltd., Livingston, UK.
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January 2025
Department of Periodontology, College of Dentistry and Institute of Oral Bioscience, Jeonbuk National University, Jeonju, Republic of Korea.
Infected alveolar bone defects pose challenging clinical issues due to disrupted intrinsic healing mechanisms. Thus, the employment of advanced biomaterials enabling the modulation of several aspects of bone regeneration is necessary. This study investigated the effect of multi-functional nanoparticles on anti-inflammatory/osteoconductive characteristics and bone repair in the context of inflamed bone abnormalities.
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January 2025
Bioavailability Research Project, Formulation Research Institute, Otsuka Pharmaceutical Co. Ltd., Tokushima, Japan.
Establishment of a suitable animal model to evaluate sustained release (SR) formulations is very important because it reduces the development time of SR formulations. Beagle dogs are often used to evaluate prototype formulations since they can be directly administered powder, such as drug substance. However, the physiological condition of dogs is very different to that of humans.
View Article and Find Full Text PDFSci Rep
January 2025
School of Pharmacy, Guilin Medical University, Guilin, 541199, China.
The hypotensive side effects caused by drugs during their use have been a vexing issue. Recent studies have found that deep learning can effectively predict the biological activity of compounds by mining patterns and rules in the data, providing a potential solution for identifying drug side effects. In this study, we established a deep learning-based predictive model, utilizing a data set comprised of compounds known to either elevate or lower blood pressure.
View Article and Find Full Text PDFAust Vet J
January 2025
Animal Referral Hospital Brisbane, Sinnamon Park, Queensland, 4073, Australia.
This report presents the clinical course and outcomes of two dogs that were treated differently upon recognition of respiratory distress due to delayed fulminant pulmonary haemorrhage (DFPH) 20 h after eastern brown snake envenomation. Two dogs from the same household were likely envenomated at the same time. Pulmonary haemorrhage was diagnosed based on pleural and lung ultrasound, decreasing packed cell volume and haemoptysis.
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