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Auditory display for Fluorescence-guided open brain tumor surgery
- Publication Year :
- 2018
- Publisher :
- Linköpings universitet, Avdelningen för medicinsk teknik, 2018.
-
Abstract
- PURPOSE: Protoporphyrin (PpIX) fluorescence allows discrimination of tumor and normal brain tissue during neurosurgery. A handheld fluorescence (HHF) probe can be used for spectroscopic measurement of 5-ALA-induced PpIX to enable objective detection compared to visual evaluation of fluorescence. However, current technology requires that the surgeon either views the measured values on a screen or employs an assistant to verbally relay the values. An auditory feedback system was developed and evaluated for communicating measured fluorescence intensity values directly to the surgeon. METHODS: The auditory display was programmed to map the values measured by the HHF probe to the playback of tones that represented three fluorescence intensity ranges and one error signal. Ten persons with no previous knowledge of the application took part in a laboratory evaluation. After a brief training period, participants performed measurements on a tray of 96 wells of liquid fluorescence phantom and verbally stated the perceived measurement values for each well. The latency and accuracy of the participants' verbal responses were recorded. The long-term memorization of sound function was evaluated in a second set of 10 participants 2-3 and 7-12 days after training. RESULTS: The participants identified the played tone accurately for 98% of measurements after training. The median response time to verbally identify the played tones was 2 pulses. No correlation was found between the latency and accuracy of the responses, and no significant correlation with the musical proficiency of the participants was observed on the function responses. Responses for the memory test were 100% accurate. CONCLUSION: The employed auditory display was shown to be intuitive, easy to learn and remember, fast to recognize, and accurate in providing users with measurements of fluorescence intensity or error signal. The results of this work establish a basis for implementing and further evaluating auditory displays in clinical scenarios involving fluorescence guidance and other areas for which categorized auditory display could be useful. Funding agencies: Swedish Childhood Cancer foundation [MT 2013-0043]; Cancer network at Linkoping University (LiU-cancer); National Institutes of Health [P41 EB015902, P41 EB015898, R01EB014955, U24CA180918] OTP
- Subjects :
- medicine.medical_specialty
spectroscopy
Computer science
Medical Engineering
Biomedical Engineering
Latency (audio)
Protoporphyrins
Health Informatics
Audiology
01 natural sciences
surgical navigation
Memorization
Imaging phantom
Article
Fluorescence
Neurosurgical Procedures
010309 optics
03 medical and health sciences
Tone (musical instrument)
User-Computer Interface
0302 clinical medicine
0103 physical sciences
medicine
LabVIEW
Humans
Radiology, Nuclear Medicine and imaging
Fluorescence guided resection
sonification
neurosurgery
5-ALA
Set (psychology)
Medicinteknik
PpIX
Auditory feedback
Photosensitizing Agents
Brain Neoplasms
Auditory display
Brain
General Medicine
Computer Graphics and Computer-Aided Design
Computer Science Applications
Surgery
user interface
Sonification
human computer interaction
Computer Vision and Pattern Recognition
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....59a5e1c10648a697dec0a09dd1814ab2