A circular window-excited vibration artificial middle ear actuator with variable initial pressure and stiffness adjustment

A technology of initial pressure and variable stiffness, which is applied in the field of round window-excited artificial middle ear actuators, can solve problems such as low compensation effect, great influence on the degree of support, and inability to input vibration energy, so as to reduce the complexity of surgery , Accurate initial pressure adjustment, good hearing compensation effect

Active Publication Date: 2022-03-25
徐州市健康研究院有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] However, clinical applications show that the postoperative hearing compensation effect of this round window implanted actuator is unstable, with large individual differences, and the compensation effect is lower than the theoretical estimate
Studies have shown that these clinical problems are mainly caused by the following reasons: First, the commonly used actuators (Floating Mass Transducer, Vibrant Soundbridge, Austria MED-EL Company) have a diameter of 1.8 mm, while the diameter of the round window membrane is 1.2 mm. In the range of ~1.9 mm, this will cause the actuator’s active end to be too large relative to the round window, which cannot effectively couple with the round window membrane, and thus cannot effectively input vibration energy to the cochlea, making its hearing compensation effect lower than the theoretical design value
The second is that the actuator 202 commonly used in clinical practice has no supporting structure. In clinical practice, the fascia 201 is placed behind the actuator 202 to support it. figure 2 shown
This fascial support cannot provide sufficient support stiffness, resulting in a hearing compensation effect that is lower than the theoretical estimate
In addition, the degree of its support is greatly affected by the operation, and it cannot provide a relatively stable support stiffness among patients, resulting in large individual differences in the compensation effect among patients.
Third, the initial pressure of the actuator acting on the round window membrane cannot be controlled
The sensorineural hearing loss targeted by the artificial middle ear mainly deteriorates at high frequencies, and the weakening of the high-frequency output of the above-mentioned actuator will make the artificial middle ear lose its original ability to compensate for sensorineural hearing loss
However, if the above-mentioned loading spring 301 is changed to a larger stiffness, then under the optimal initial pressure of the actuator (15mN), the expansion and contraction displacement is too small (about 20 microns), making it impossible to observe through the compression indicator 302, and thus lose its ability to monitor

Method used

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  • A circular window-excited vibration artificial middle ear actuator with variable initial pressure and stiffness adjustment
  • A circular window-excited vibration artificial middle ear actuator with variable initial pressure and stiffness adjustment
  • A circular window-excited vibration artificial middle ear actuator with variable initial pressure and stiffness adjustment

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] see Figure 4 , a round window excitation type artificial middle ear actuator with initial pressure variable stiffness adjustment, including a housing 402, a supporting device 401 and a driving device 403, the housing 402 is located outside the round window niche as a whole and is a supporting device 401 and the driving device 403 provide support. The front end of the supporting device 401 is connected to the housing 402 and its rear end is fixed on the bone wall 110 opposite to the round window membrane 111 through implantation. The driving device 403 is located in the housing 402 The inside and its front end act directly on the round window membrane 111 . see Figure 5~7 , the housing 402 includes a base 601 and a casing 602, both of which are fixed together; the overall shape of the casing 602 is set as a cuboid with arc structures on both sides, which is determined in consideration of the structure outside the round window niche Its interior and exterior have the ...

Embodiment 2

[0057] see Figure 10 , the retractor 901 is a piezoelectric stack 903 . Other technical solutions are the same as in Embodiment 1.

Embodiment 3

[0059] see Figure 11 with Figure 12 , the displacement adjustment device 501 includes a support chute 1201 , a rear support block 1202 , an adjustment snap spring 1203 and an adjustment slider 1204 . The support chute 1201 is a circular column, and a through groove is provided on one side to prevent the interference adjustment clip spring 1203 from sliding left and right. The rear support block 1202 is a right-angled trapezoidal columnar body, and a pawl is provided on the hypotenuse side of the trapezoid to cooperate with the adjustment slider 1204, and a pawl is provided on the high side of the trapezoid, and is opposed to the round window film 111 by the pawl The implantation of the actuator 109 is completed on the bone wall 110 of the trapezoid; in addition, a chute is provided on one side of the upper bottom of the trapezoid to cooperate with the adjusting circlip 1203 . The adjusting slider 1204 is a right-angled trapezoidal columnar body, with a pawl on the hypotenu...

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Abstract

The invention relates to a circular window-excited artificial middle ear actuator with initial pressure variable stiffness adjustment, which includes a housing, a supporting device and a driving device. The front end of the supporting device is connected with the housing and its rear end is fixed to the On the bone wall opposite to the window membrane, the driving device is located inside the housing and its front end directly acts on the round window membrane; the housing includes a base and a shell, and the front end of the base is fixed to the shell; the supporting device includes a spring piece, a front support block and Displacement adjustment device; the spring piece is fixedly connected to the rear end of the base; the front end of the front support block is fixedly connected to the spring piece and its rear end is assembled with the displacement adjustment device, and the front support block is translated back and forth by adjusting the displacement adjustment device; Coupling rod; the rear end of the expander is against the base, and the rear end of the coupling rod is fixedly connected with the front end of the expander and moves axially along the casing. The invention can adjust the initial pressure of the actuator acting on the round window membrane with variable stiffness.

Description

technical field [0001] The invention relates to the technical field of listening devices, in particular to a round window-excited vibration type artificial middle ear actuator with initial pressure variable stiffness adjustment. Background technique [0002] As a common disease, hearing loss brings great inconvenience to human's daily life. According to the different mechanisms of damage, hearing loss can be divided into conductive hearing loss and sensorineural hearing loss. For conductive hearing loss, most people with this type of hearing can improve their hearing with surgery. However, for sensorineural hearing loss, there is still a lack of targeted treatment options, and traditional hearing aids are generally used to improve hearing. However, traditional hearing aids have problems such as low output gain (unable to compensate for a high degree of hearing loss), ear canal blockage, and troublesome daily maintenance of the device. These problems make many patients relu...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04R25/00A61F11/20
CPCH04R25/60H04R25/70H04R2460/17A61F11/20
Inventor 刘后广张瑞宁郝敬宾杨雅涵杨建华刘送永江红祥卢硕辰陈旭薛林
Owner 徐州市健康研究院有限公司
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