Amplification of transcutaneous and percutaneous bone-conduction devices with a test-band in an induced model of conductive hearing loss

2016 ◽  
Vol 55 (11) ◽  
pp. 653-657 ◽  
Author(s):  
Marn Joon Park ◽  
Jae Ryung Lee ◽  
Chan Joo Yang ◽  
Myung Hoon Yoo ◽  
In Suk Jin ◽  
...  
2015 ◽  
Vol 36 (5) ◽  
pp. 826-833 ◽  
Author(s):  
Rik C. Nelissen ◽  
Emmanuel A. M. Mylanus ◽  
Cor W. R. J. Cremers ◽  
Myrthe K. S. Hol ◽  
Ad F. M. Snik

1974 ◽  
Vol 83 (1) ◽  
pp. 125-127 ◽  
Author(s):  
Vincent W. Byers

The conductive SISI (short increment sensitivity index) test is an indirect procedure to estimate bone-conduction thresholds for middle ear pathology patients. A series of SISI tests are run, beginning at 20 dB S.L. and increasing in 10 dB S.L. steps, until a 100% SISI score is obtained. The following equation predicts the bone-conduction threshold: [Formula: see text] The results of 25 conductive SISI tests on a conductive hearing loss group indicate that the equation approximates the measured B.C. threshold. There was no statistical difference between the predicated B.C. thresholds (12.4 dB) and measured B.C. thresholds (10.4 dB) for the group.


2020 ◽  
Vol 41 (3) ◽  
pp. 379-385
Author(s):  
Ohad Hilly ◽  
Meirav Sokolov ◽  
Reut Beck Finkel ◽  
Ofir Zavdy ◽  
Rafael Shemesh ◽  
...  

2020 ◽  
Vol 25 (2) ◽  
pp. 85-93
Author(s):  
Ahmed Tariq ◽  
Mostafizur Rahman ◽  
Delwar Hossain ◽  
Sheikh Hasanur Rahman

Otosclerosis is the most frequent cause of conductive hearing loss in patients with intact tympanic membrane. It can be treated by surgery with various techniques. Because of limited manipulation and comparably similar results, stapedotomy at present is preferred over other surgical techniques by most surgeons. Here we present the operative results of 35 otosclerotic patients who underwent stapedotomy between January 2009 - October 2010 in the department of Otolaryngology- Head & Neck Surgery of Bangabandhu Sheikh Mujib Medical University, Dhaka Medical College Hospital and Shahid Suhrawardhy medical college & hospital, Dhaka. The aim of this study was to evaluate the hearing results following stapedotomy in otosclerosis surgery. The average air-bone gap of patients improved significantly to 21.74 dB after operation. Other hearing parameters of patients (including air conduction, bone conduction, speech discrimination score, and tinnitus) also improved. No patient experienced persistent vertigo after the operation and pre operative tinnitus resolved in 12 out of 22 patients. Stapedotomy is a safe and effective modality for improving conductive hearing loss in otosclerotic patients. Bangladesh J Otorhinolaryngol; October 2019; 25(2): 85-93


2020 ◽  
Vol 30 (Supplement_2) ◽  
Author(s):  
T Marques ◽  
A Carvalho ◽  
A Miguéis

Abstract Introduction Bone conduction hearing systems can be applied through non-invasive devices, using soft bands that exert pressure on the skin, or they can be surgically implanted (Bone Anchored Hearing Aid - BAHA). However, these bone conduction devices are frequently not well accepted due to the pressure on the head. Therefore, a new non-surgical hearing system was developed not to exert pressure on the skin, the ADHEAR. The bone anchorage in ADHEAR is performed through an adhesive adapter and is indicated for patients with conductive hearing loss and normal inner ear function. Objectives Evaluate the audiological performance with the adhesive bone conduction hearing device (ADHEAR) in a patient with conductive hearing loss. Methodology The study was designed as a prospective single-subject repeated-measure study with the subject serving as his own control. A 29 year old female patient who had a primary surgery due to middle ear cholesteatoma, was adapted with unilateral non-invasive adhesive bone conduction system for the treatment of conductive hearing loss. Air and bone conduction thresholds, word recognition scores (WRS) and speech recognition thresholds (SRT) in quiet and noise were assessed to verify the inclusion criteria of the study. Aided and unaided pure tone audiometry at 0.5, 1, 2 and 4 kHz in free field and speech audiometry in quiet and noise were performed at baseline and after 4 weeks with the ADHEAR. Results The functional gain with the ADHEAR averaged over 0.5, 1, 2, and 4 kHz after 4 weeks of usage of the adhesive hearing system, improved from 55 dB HL to 31dB HL. Speech perception in quiet and noise improved significantly in the aided situation, with SRT in quiet improving from 60 to 35 dB HL, when compared to the unaided condition. Similar results were found in noise. The patient evaluated the ADHEAR system as being useful, and without complaints of skin pressure. There was no adverse skin reaction. Conclusion Hearing performance was significantly better with ADHEAR under all test conditions. Therefore, this transcutaneous hearing system seems to be an excellent alternative for patients who need a hearing solution for conductive hearing loss but for clinical reasons cannot undergo surgery or conventional hearing aids. Furthermore, it preserves skin over the mastoid and reduces the risk of infection. Otherwise it has benefits verified by absence of head pressure and improvement of patient’s quality of life.


2020 ◽  
Vol 59 (10) ◽  
pp. 801-808 ◽  
Author(s):  
Karina C. De Sousa ◽  
Cas Smits ◽  
David R. Moore ◽  
Hermanus Carel Myburgh ◽  
De Wet Swanepoel

2017 ◽  
Vol 38 (3) ◽  
pp. 318-324 ◽  
Author(s):  
Erich Vyskocil ◽  
Rudolfs Liepins ◽  
Alexandra Kaider ◽  
Michaela Blineder ◽  
Sasan Hamzavi

1994 ◽  
Vol 3 (2) ◽  
pp. 52-58 ◽  
Author(s):  
Carol L. Mackersie ◽  
David R. Stapells

Wave I latencies were used to predict the magnitude of conductive components in 80 infants and young children (122 ears) with normal hearing, conductive hearing loss due to otitis media or aural atresia, sensorineural hearing loss, and mixed hearing loss. Two prediction methods were used. The first method based predictions on a 0.03-ms wave I latency delay for each decibel of conductive hearing loss. The second method was based on a regression analysis of wave I latency delays and the magnitude of conductive component for the subjects in this study with normal cochlear status. On average, these prediction methods resulted in prediction errors of 15 dB or greater in over one-third of the ears with hearing loss. Therefore, the clinical use of wave I latencies to predict the presence or magnitude of conductive impairment is not recommended for infants and young children. Instead, bone-conduction ABR testing is recommended as a direct measure of cochlear status when behavioral evaluation is not possible.


1984 ◽  
Vol 98 (11) ◽  
pp. 1097-1101 ◽  
Author(s):  
J. A. Doig ◽  
S. Gatehouse

AbstractFifty-six individuals with acromegaly referred for pituitary surgery were studied to determine any relationship between acromegaly and sensorineural or conductive hearing loss. Compared to a matched population control sample, no significant difference between the acromegalics and controls has been found, either for air conduction or for bone conduction. The differences between these findings and those published previously are discussed, and reasons proposed to explain the discrepancies.


1997 ◽  
Vol 111 (12) ◽  
pp. 1137-1141 ◽  
Author(s):  
Gilead Berger ◽  
Yehuda Finkelstein ◽  
Shabtai Avraham ◽  
Mordehai Himmelfarb

AbstractA prospective study of hearing loss in 120 cases with non-explosive blast injury of the ear, gathered over a six-year period, is presented. Thirty-three (27.5 per cent) patients had normal hearing, 57 (47.5 per cent) conductive hearing loss, 29 (24.2 per cent) mixed loss and one (0.8 per cent) had pure sensorineural loss. The severity of conductive hearing loss correlated with the size of the eardrum perforation; only a marginal difference was found between water and air pressure injuries, with respect to this type of hearing loss. Of all locations, perforations involving the posterior-inferior quadrant of the eardrum were associated with the largest air-bone gap. Audiometric assessment revealed that none of the patients suffered ossicular chain damage. Three patterns of sensorineural hearing loss were identified: a dip at a single frequency, two separate dips, and abnormality of bone conduction in several adjacent high frequencies. Involvement of several frequencies was associated with a more severe hearing loss than a dip in a single frequency. Healing of the perforation was always accompanied by closure of the air-bone gap, while the recovery of the sensorineural hearing loss was less favourable.


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