0000000000426255

AUTHOR

Andreas Melzer

showing 7 related works from this author

TRANS-FUSIMO - clinical translation of patient specific planning and conduction of FUS treatment in moving organs

2015

The movement of the target challenges the application of high intensive focused ultrasound (HiFU/MRgFUS) for the treatment of malignancies in moving abdominal organs such as liver and kidney. Moreover, the anatomical location of the lesion is often behind the rib cage. The physiology of the organs, the dynamic and complex blood perfusion impairs the energy disposition in the tissue due to the heat transfer within the organ. To explore the full potential of extracorporeal FUS to safely and precisely destroy tissue in the depth of a moving organ requires sophisticated software and advanced hardware. In the EU project FUSIMO (http://www.fusimo.eu) a software demonstrator for the patient specif…

medicine.medical_specialtybusiness.industryLiver and kidney0206 medical engineering02 engineering and technologyPatient specificBioinformatics020601 biomedical engineeringFocused ultrasound030218 nuclear medicine & medical imaging3. Good health03 medical and health sciences0302 clinical medicinemedicineOral PresentationRadiology Nuclear Medicine and imagingRadiologybusinessJournal of Therapeutic Ultrasound
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Comparative ergonomic workflow and user experience analysis of MRI versus fluoroscopy-guided vascular interventions: an iliac angioplasty exemplar ca…

2014

A methodological framework is introduced to assess and compare a conventional fluoroscopy protocol for peripheral angioplasty with a new magnetic resonant imaging (MRI)-guided protocol. Different scenarios were considered during interventions on a perfused arterial phantom with regard to time-based and cognitive task analysis, user experience and ergonomics. Three clinicians with different expertise performed a total of 43 simulated common iliac angioplasties (9 fluoroscopic, 34 MRI-guided) in two blocks of sessions. Six different configurations for MRI guidance were tested in the first block. Four of them were evaluated in the second block and compared to the fluoroscopy protocol. Relevant…

medicine.medical_specialtymedicine.medical_treatmentBiomedical EngineeringHealth InformaticsProtocol analysisImaging phantomWorkflowUser experience designAngioplastymedicineFluoroscopyHumansRadiology Nuclear Medicine and imagingMedical physicsComputer SimulationRetrospective StudiesProtocol (science)medicine.diagnostic_testbusiness.industryAngioplastyGeneral MedicineComputer Graphics and Computer-Aided DesignMagnetic Resonance ImagingComputer Science ApplicationsWorkflowSurgery Computer-AssistedFluoroscopyIliac AneurysmTask analysisSurgeryComputer Vision and Pattern RecognitionRadiologyErgonomicsbusiness
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International Society for Therapeutic Ultrasound Conference 2016

2017

Meeting AbstractsJournal of Therapeutic Ultrasound
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Endoscopic microsurgical dissection of the esophagus. Results in an animal model.

1989

Blunt dissection of the esophagus is considered the least invasive technique in the treatment of either benign or malignant diseases of the esophagus. Its disadvantage is that it has to be carried out blindly. The results may be uncontrollable hemorrhage, unrecognized injuries to the trachea, and damage to the recurrent laryngeal nerve. In order to reduce the degree of invasiveness a new endoscopic microsurgical technique for the dissection of the esophagus has been developed and tried out in animals. This paper presents the operative technique. Our new endoscopic microsurgical technique obviates a thoracotomy, while direct endoscopic vision results in improved dissection. The magnified end…

medicine.medical_specialtyMicrosurgerySheepbusiness.industrymedicine.medical_treatmentDissectionEsophagoscopesDissection (medical)EsophagoscopesMicrosurgerymedicine.diseaseSurgerymedicine.anatomical_structureEsophagusBlunt dissectionEsophagectomymedicineRecurrent laryngeal nerveAnimalsSurgeryThoracotomyEsophagusbusinessSurgical endoscopy
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5th International Symposium on Focused Ultrasound

2016

Introduction Breast fibroadenomata (FAD) are benign lesions which occur in about 10 % of all women. Diagnosis is made by triple assessment (physical examination, imaging and/or histopathology/cytology). For a definitive diagnosis of FAD, the treatment is conservative unless the patient is symptomatic. For symptomatic patients, the lumps can be surgically excised or removed interventionally by vacuum-assisted mammotomy (VAM). Ablative techniques like high-intensity focused ultrasound (HIFU), cryo-ablation and laser ablation have also been used for the treatment of FAD, providing a minimally invasive treatment without scarring or poor cosmesis. This review summarises current trials using mini…

lcsh:Medical physics. Medical radiology. Nuclear medicineFibroadenomataCryo-ablationHigh-intensity focused ultrasoundAblative techniqueslcsh:R895-920ReviewMeeting AbstractsLaser ablationJournal of Therapeutic Ultrasound
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MR-guided focused ultrasound application for moving target tumor ablation in abdominal area: Coil selection

2020

PubMed: 32276552

SwineThermal ablationMagnetic Resonance Imaging InterventionalTumor ablationFocused ultrasound030218 nuclear medicine & medical imagingMagnetic resonance guided focused ultrasound surgery03 medical and health sciencesCE marking0302 clinical medicineEcho planar imagingAbdomenAnimalsHumansMedicineRadiology Nuclear Medicine and imagingRadiological and Ultrasound TechnologyEcho-Planar ImagingPhantoms Imagingbusiness.industryCoils magnetic resonance thermometry tracking echo planar imaging magnetic resonance-guided focused-ultrasound surgery CE marking validation verificationTrackingLiver NeoplasmsVerificationSettore MED/37 - NeuroradiologiaCoilsGeneral MedicineFocused ultrasound surgeryDisease Models AnimalLiverMagnetic resonance thermometryElectromagnetic coil030220 oncology & carcinogenesisHigh-Intensity Focused Ultrasound AblationbusinessSettore MED/36 - Diagnostica Per Immagini E RadioterapiaMri guidedMagnetic resonance thermometryBiomedical engineering
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A focused ultrasound treatment system for moving targets (part I): generic system design and in-silico first-stage evaluation

2017

Abstract Background Focused ultrasound (FUS) is entering clinical routine as a treatment option. Currently, no clinically available FUS treatment system features automated respiratory motion compensation. The required quality standards make developing such a system challenging. Methods A novel FUS treatment system with motion compensation is described, developed with the goal of clinical use. The system comprises a clinically available MR device and FUS transducer system. The controller is very generic and could use any suitable MR or FUS device. MR image sequences (echo planar imaging) are acquired for both motion observation and thermometry. Based on anatomical feature tracking, motion pr…

lcsh:Medical physics. Medical radiology. Nuclear medicinemedicine.medical_specialtylcsh:R895-920educationMotion (physics)030218 nuclear medicine & medical imaging03 medical and health sciences0302 clinical medicinePosition (vector)Control theoryMedicineRadiology Nuclear Medicine and imagingComputer visionMedical physicshealth care economics and organizationsMotion compensationbusiness.industryResearchModular designhumanitiesTransducerSystems designArtificial intelligencebusinessFocus (optics)030217 neurology & neurosurgeryJournal of Therapeutic Ultrasound
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