Extern Publikation: Dr. Olsson, Pontus – Haptics with Applications to Cranio-Maxillofacial Surgery Planning
Abstract [en]
Virtual surgery planning systems have demonstrated great potential to help surgeons achieve a better functional and aesthetic outcome for the patient, and at the same time reduce time in the operating room resulting in considerable cost savings. However, the two-dimensional tools employed in these systems today, such as a mouse and a conventional graphical display, are difficult to use for interaction with three-dimensional anatomical images. Therefore surgeons often outsource virtual planning which increases cost and lead time to surgery.
Haptics relates to the sense of touch and haptic technology encompasses algorithms, software, and hardware designed to engage the sense of touch. To demonstrate how haptic technology in combination with stereo visualization can make cranio-maxillofacial surgery planning more efficient and easier to use, we describe our haptics-assisted surgery planning (HASP) system. HASP supports in-house virtual planning of reconstructions in complex trauma cases, and reconstructions with a fibula osteocutaneous free flap including bone, vessels, and soft-tissue in oncology cases. An integrated stable six degrees-of-freedom haptic attraction force model, snap-to-fit, supports semi-automatic alignment of virtual bone fragments in trauma cases. HASP has potential beyond this thesis as a teaching tool and also as a development platform for future research.
In addition to HASP, we describe a surgical bone saw simulator with a novel hybrid haptic interface that combines kinesthetic and vibrotactile feedback to display both low frequency contact forces and realistic high frequency vibrations when a virtual saw blade comes in contact with a virtual bone model.
We also show that visuo-haptic co-location shortens the completion time, but does not improve the accuracy, in interaction tasks performed on two different visuo-haptic displays: one based on a holographic optical element and one based on a half-transparent mirror.
Finally, we describe two prototype hand-worn haptic interfaces that potentially may expand the interaction capabilities of the HASP system. In particular we evaluate two different types of piezo-electric motors, one walking quasi-static motor and one traveling-wave ultrasonic motor for actuating the interfaces.
Ort, förlag, år, upplaga, sidor
Uppsala: Acta Universitatis Upsaliensis, 2015. , 79 s.
Serie
Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Science and Technology, ISSN 1651-6214 ; 1289
Nyckelord [en]
medical image processing, haptics, haptic rendering, haptic gripper, visuo-haptic co-location, vibrotactile feedback, surgery simulation, virtual surgery planning, cranio-maxillofacial surgery
Nationell ämneskategori
Medicinsk bildbehandling Människa-datorinteraktion (interaktionsdesign)
Forskningsämne
Datoriserad bildbehandling
ISBN
978-91-554-9339-4 (tryckt)

Consulting
Vår huvudverksamhet har i många år varit att leverera Sveriges mest prisvärda och duktiga konsulter. Vi erbjuder alla former av konsulttjänster inom system- och applikationsutveckling, design, management och utbildning.

Solutions
Vår inhouse-byrå Chas Solutions levererar kompletta lösningar i form av web-applikationer, appar, web-sajter, interna verktyg och allt annat ni kan tänkas behöva i er verksamhet. Vår organisation levererar know-how och specialistkunskaper med precision.

Partner Network
Chas Partner Network är ett nätverk för våra samarbetspartners. Som partner till Chas får ni möjlighet att gå med oss som underleverantör i upphandlingar, ta del av våra förfrågningar, avrop och ramavtal.
Företagsutbildningar
Läs mer

Sveriges mest kraftfulla affärssystem
Vi har under många år utvecklat och förfinat Oden Business Intelligence, ett av marknadens snabbaste och mest kraftfulla affärssystem speciellt utformat för tjänstesektorn. Perfekt för företag vars primära tillgång är tjänster, till exempel konsultbolag, advokatbyråer och bemanningsbolag.
Läs mer