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A new gyro-based method for quantifying eyelid motion.

Authors :
Marcelli E
Cavallari P
Frigerio A
Colletti G
Biglioli F
Fanti R
Plicchi G
Cercenelli L
Source :
The International journal of artificial organs [Int J Artif Organs] 2013 Mar; Vol. 36 (3), pp. 195-202. Date of Electronic Publication: 2013 Feb 28.
Publication Year :
2013

Abstract

Purpose: We present an innovative method to quantify the eyeblink by using a miniature gyroscopic sensor (gyro), which is applied on the upper eyelid. Electrical Stimulation (ES) of the facial nerve is a promising technology to treat dysfunctional eyelid closure following facial paralysis. We used the new gyro-based method to evaluate the biomechanics of both the spontaneous and the ES-induced eyeblink, and to identify the best ES protocol.
<br />Methods: During blinking, eyelids rotate about the axis passing through the eye canthi, thus we propose to use a gyro for measuring the angular velocity of the upper eyelid (ωe  ). The angular displacement of the eyelid (θe  ) was calculated by integrating the ωe signal. Two indices were derived from θe: 1) the eyelid angular displacement during eye closure (C), calculated as the peak value of θe ; 2) the eyelid closure duration (D), calculated as the time interval between zero signal and the peak value of θe. In a healthy volunteer we used this method to quantify both the spontaneous eyeblink and the blinks elicited by different ES patterns.
<br />Results: For the spontaneous eyeblink, indices C = 14.0 ± 1.8° and D = 94.0 ± 10.8 ms were computed. By comparing C and D indices for spontaneous and ES cases, trains of 10 pulses with a frequency ranging from 200 Hz to 400 Hz proved to induce the most effective and natural-like eyeblinks.
<br />Conclusions: The new gyro-based method proved to be a valuable tool to provide dynamic and real-time quantification of eyelid motions. It could be particularly useful for evaluating the effective and natural-like eyeblink restoration provided by ES.

Details

Language :
English
ISSN :
1724-6040
Volume :
36
Issue :
3
Database :
MEDLINE
Journal :
The International journal of artificial organs
Publication Type :
Academic Journal
Accession number :
23446763
Full Text :
https://doi.org/10.5301/ijao.5000178