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3D kinematicmandiblemodel to designmandibular advancement devices for the treatment of obstructive sleep apnea
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作者 M.García J.A.Cabrera +2 位作者 A.Bataller S.Postigo J.J.Castillo 《Bio-Design and Manufacturing》 SCIE EI CSCD 2021年第1期22-32,共11页
Mandibular advancement devices(MADs)are one of the treatments used for Obstructive sleep apnea(OSA).MADs try to maintain the mandible in an advanced position to keep the upper airways open when sleeping.To achieve thi... Mandibular advancement devices(MADs)are one of the treatments used for Obstructive sleep apnea(OSA).MADs try to maintain the mandible in an advanced position to keep the upper airways open when sleeping.To achieve this goal,most current MADs limit the mouth opening to a few millimetres.The study of the kinematic behaviour of the patient’s jaw is essential in order to design devices that allow greater aperture ranges.For this purpose,a 3D multibody model that reproduces jaw movement has been developed in this work.To this end,the movement of the lower incisor has been determined by means of a vision system and reflective markers.In addition,the kinematics of the temporomandibular joint has been modelled.Next,the device is designed and printed using a cam-follower mechanism.This way,the cam profiles and the followers are optimally designed and positioned for each patient depending on the physiognomy of the jaw and the opening and advancing movement prescribed by the specialist. 展开更多
关键词 Mandibular advancement device 3d mandible kinematics Cam-follower mechanism 3d printed devices
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Coupled Mode Characteristics From the Perturbation of 3D Printed Long-Period Fiber Grating Devices
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作者 Ravivudh KHUN-IN Yuji USUDA +2 位作者 Yuttapong JIRARAKSOPAKUN Apichai BHATRANAND Hideki YOKOI 《Photonic Sensors》 SCIE EI CSCD 2020年第3期195-203,共9页
Characteristics of electric field from a coupled mode inside an optical fiber under perturbation by three-dimensional(3D)printed long-period fiber grating(LPFG)device have been observed in this work by the experiment ... Characteristics of electric field from a coupled mode inside an optical fiber under perturbation by three-dimensional(3D)printed long-period fiber grating(LPFG)device have been observed in this work by the experiment and simulation.The various periodic index differences referring to the weights of perturbation by 3D printed LPFG device are applied on the single-mode fiber.The experimental results show that the resonant wavelength shift is a linear function of the grating period with the maximum coefficient of determination R2 of 0.9995.Some of resonant wavelengths are chosen to run simulations to investigate the electric field distribution.The scattering direction of the electric field states the magnitude of leaking optical power when the light transmits through the grating region applied to the single-mode fiber.Both the experimental and simulation results demonstrate that our proposed scheme can usefully be applied to selective tunable filters,intruder sensors,etc. 展开更多
关键词 3d printed long-period fiber grating device PERTURBATION resonant wavelength electric field distribution
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