Auditory response behavior of severely and profoundly multiply handicapped children.

The Journal of auditory research Pub Date : 1983-04-01
D P Gans, C Flexer
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Abstract

Severely and profoundly involved multiply handicapped children present special problems for the audiologist. Although a substantial amount of data is available on the behavioral responses of normal babies, there is a surprising dearth of similar information concerning handicapped children. In the present study, the responses of 31 severely and profoundly involved multiply handicapped children were studied by behavioral observation audiometry. Children's chronological age ranged from 7 to 153 months, while developmental age was estimated as 0 to 24 months. An experienced judge rated each of 9 specific behaviors either absent, strong, or weak on each trial. The stimulus types were a broadband noise, narrowband noises centered at .5 and at 2 kc/s, and speech either unfiltered or high-pass filtered at 1.2 kc/s, presented to S by a loudspeaker at 45 degrees azimuth, at 20, 40, 60, and 80 db re normal HTL. The interrelationships between stimulus variables, types of responses, and developmental level of the children were evaluated. Overall, the children responded differentially to the 5 stimulus types. Furthermore, the higher-functioning children responded much differently to the sounds than did the lower-functioning children. It was recommended that any behavioral technique be used together with objective tests in this most difficult population, and that testing be repeated over an extended period of time.

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重度和重度多重残疾儿童的听觉反应行为。
严重和深度的残疾儿童给听力学家带来了特殊的问题。虽然有大量关于正常婴儿行为反应的数据,但令人惊讶的是,关于残疾儿童的类似信息却很少。本研究采用行为观察测听法对31例重度和重度多重残疾儿童的听力反应进行了研究。儿童的实足年龄为7至153个月,而发育年龄估计为0至24个月。一位经验丰富的法官在每次审判中将9种具体行为分为缺席、强势或弱势。刺激类型为宽带噪声、窄带噪声,中心频率为0.5和2kc /s,以及未滤波或高通滤波的1.2 kc/s的语音,这些语音由扬声器在45度方位上以20、40、60和80 db的正常html呈现给s。评估刺激变量、反应类型与儿童发育水平之间的相互关系。总的来说,孩子们对5种刺激类型的反应是不同的。此外,高功能儿童对声音的反应与低功能儿童的反应大不相同。建议在使用任何行为技术的同时,对这一最困难的人群进行客观测试,并在较长一段时间内重复测试。
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Fabrication of a new headset for air- and bone-conduction audiometry. Conditions under which the Haas precedence effect may or may not occur. Auditory localization in a free field using discrimination procedures. Speech reception thresholds for digits. Effect of warble-tone frequency deviation on threshold measurement in cases with sloping audiometric configurations.
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