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J Kuźniarz

Publications and source records attributed to J Kuźniarz.

At least 19 recordsLinked to original sources

[The effect of occlusion. Part I. The mechanism].

To clarify the mechanism of the occlusion effect the following experiments were performed on 18 healthy and 4 patients with conductive impairment: 1) measurement of the improvement in bone conduction threshold after the ears were covered with occluding devices of different volumes (earphones and calibrated spherical glass enclosures), 2) measurements of sound pressure level (SPL) changes in the meatus under the same conditions. The increase of SPL under covers was found, which was parallel to the improvement of bone conduction threshold in covered ears. Both phenomena were closely related to the volume of the enclosures: the larger the volume the smaller the change in SPL and in the threshold shift was found. In ears with a conductive loss--only the SPL was increased without any change in the bone conduction threshold. It was concluded that the occlusion effect is caused by the resonance phenomena in close meatus: the increased SPL induces the bone conducted threshold shift via the normal conductive apparatus (bone-air conduction). That explains the lack of threshold changes in conductive lesions. In the open meatus acoustic energy radiated by the bony walls becomes dissipated.

Auditory Threshold

[Effect of occlusion. Part II. Theoretical and practical implications].

The theoretical and practical consequences of the experiments described in part I are discussed. They concern the following topics: 1. The stability of the occlusion effect: in contrary to the opinions expressed in the literature--the stability of the effect for a particular earphone is of range of normal deviation in threshold of hearing. 2. Bone conduction threshold shift in occlusion effect represents change in proportions of the air- and bone-components of the normal bone conduction threshold: an increase of the air component on the expense of the bone component. The shift do not represents the change in perception. In that respect the shift is a spurious phenomenon. 3. Depending on the presence or the lack of occlusion effect all the ears were divided into classes: "occlusive" and "non-occlusive". a) the occlusive ears include the ones with normal conduction (healthy or the hearing- impaired ears) covered with earphones during bone conduction tests, b) the non-occlusive are the ears mentioned under "a", but unoccluded and all the ears with conductive loss (regardless the occlusion). The audiometric norm for bone conduction threshold, established in non-occlusive state (which is the usual procedure in the conventional audiometry) are suitable only for the non-occlusive ears. And vice versa: the occlusion norm (found in a routine Rainville procedure) may be applied only for occlusive ears.

Audiometry

[Classification of hearing loss in industrial workers for the purpose of expert testimony].

Periodical examinations of 472 industrial workers exposed to noise promoted classification of those workers' hearing into four categories: A. Normal hearing, B. Non-noise-induced impairments, C. Multi-causal impairments, not excluding noise, D. Chronic acoustic trauma. To the particular categories, appropriate qualifying, preventive or therapeutic procedure have been ascribed. Appropriate hearing category (A, B, C or D) entered into the worker's health record book would spare repeating the medical examinations at a new workplace, simplify administrative, certificatory (selection of the workplace, prevention or treatment) and claiming procedures.

Disability Evaluation

[Laryngocele].

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