Graeme Clark Collection

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    A multiple-channel cochlear implant: evaluation using speech tracking
    Martin, Lois F. A. ; Tong, Yit Chow ; Clark, Graeme M. ( 1981)
    Two totally deaf patients who had received multiple-channel cochlear implants were tested using a speech "tracking" procedure in which they had to repeat verbatim passages of connected discourse. Their performance was assessed by calculating the tracking rate (words per minute) each session. Testing was carried out under two conditions - lipreading along and lipreading in conjunction with a multiple-channel cochlear implant and laboratory speech processor. Lipreading with the cochlear implant increased the tracking rates by a factor of four for one patient and by a factor of two for the other when compared with lipreading alone.
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    A multiple-channel cochlear implant: an evaluation using nonsense syllables
    Clark, Graeme M. ; Tong, Yit Chow ; Martin, Lois F. ; Busby, Peter A. ; Dowell, Richard C. ; Seligman, Peter M. ; Patrick, James F. ( 1981)
    A study using nonsense syllables has shown that a multiple-channel cochlear implant with speech processor is effective in providing information about, voicing and manner and to a lesser extent place distinctions. These distinctions supplement lipreading cues. Furthermore, the average percentage improvements in overall identification scores for multiple-channel electrical stimulation and lipreading compared to lipreading alone were 71% for a laboratory-based speech processor and 122 % for a wearable unit.
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    A multiple-channel cochlear implant: an evaluation using an open-set word test
    Clark, Graeme M. ; Tong, Y. C. ; Martin, L. F. ; Busby, P. A. ( 1981)
    Multiple-channel electrical stimulation of the hearing nerve in conjunction with speech reading has helped two post-lingually deaf patients with total hearing losses understand running speech in every day situations. This has been confirmed using open-set phonetically balanced word tests, where the patients achieved 60% and 40% scores with isolated-words and 80% and 73% for phonemes-in-isolated words. The tests also showed that the cochlear implant improved word recognition by a factor of four in one patient and two in another compared with speechreading alone. The speech processor used extracted the voicing frequency and energy and the frequency and energy of the dominant spectral peak in the mid-frequency range. The parameters for voicing determined the rate of stimulation for all electrodes, and the parameters for the dominant spectral peak in the midfrequency range determined the site of electrode stimulation and current level.
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    Speech processing for a multiple-channel cochlear implant
    Tong, Y. C. ; Millar, J. B. ; Clark, Graeme M. ; Martin, L. F. ; Busby, P. A. ( 1980)
    A laboratory speech processor has been developed for a multiple-channel cochlear implant prosthesis. The speech processor accepts the speech waveform as an input and produces a pattern of electrical stimulus data as output. The electrical stimulus data are transmitted to the implanted receiver-stimulator by a transmitter which is external to the speech processor. Four speech signal parameters were estimated every 20 ms in the parameter estimation section of the speech processor. These parameters included the fundamental frequency (FO), a low frequency energy measure (AO) , the second formant frequency (F2) and its amplitude (A2).
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    Speech processor design for a multiple-channel cochlear implant
    Tong, Y. C. ; Clark, Graeme M. ; Busby, P. A. ; Millar, J. B. ; Martin, L. F. ( 1980)
    This paper outlines the strategy adopted for a laboratory-based speech processor used to provide speech information to patients with a multiple-channel cochlear implant It also presents the results of vowel and consonant recognition studies and speech test using open sets of words and sentences.
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    Speech comprehension with multiple-channel electrical stimulation of human auditory nerve fibres [Abstract]
    Tong, Y. C. ; Clark, Graeme M. ( 1980)
    The psychophysics of multiple-channel electrical stimulation of residual auditory nerve fibres has been studied in two postlingually deaf patients with total hearing losses, and the information used to design a speech processing strategy that enables them to understand connected speech in everyday situations when used in conjunction with lipreading. A constant rate of stimulation of different groups of auditory nerve fibres produced different pitch sensations which could be scaled from low to high, and this was consistent with the place theory of frequency coding. The me patients were also able to associate the different percepts produced by each electrode with different vowel colours and sharpnesses. In addition, the patient reported that pitch increased with pulse rate and loudness increased with current level. A speech processing strategy was developed whereby the parameters for voicing determine the rate of stimulation for all electrodes, and the parameters for the dominant spectral peak in the mid-frequency range determine the site of electrode stimulation and current level.
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    The rehabilitation of patients with a total hearing loss using a multiple-channel cochlear implant [Abstract]
    Martin, L. F. A. ; Tong, Y. C. ; Clark, Graeme M. ( 1980)
    Two profoundly deaf patients who have multiple-channel cochlear implants receive speech information through a speech processor. The speech processor encodes second formant and fundamental frequency information. Rehabilitation is concerned with evaluating the speech processor and training patients to improve speech perception. The patients have scores up to 37% and 27% on AB word lists, and 36% and 34% on NAL Everyday Sentences using the cochlear implant alone and repetition of the stimuli. However, to gain a better insight into the capabilities of the speech processor and to demonstrate its potential for the patients more investigative procedures have been used. These include the speech tracking method described by DeFillipo and Scott (1978) using the cochlear implant in conjunction with speech reading. Results indicate that patients have gained a two-fold and four-fold improvement in tracking rates (words per minute) using speech reading and the cochlear implant as opposed to speech reading alone.
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    The relationship between speech perception and electrode discrimination in cochlear implantees
    Henry, Belinda A. ; McKay, Colette M. ; McDermott, Hugh J. ; Clark, Graeme M. ( 2000)
    Abstract not available due to copyright.
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    Manikin and cochlear implant patient test results with a portable adaptive beamforming processor to suppress the effects of noise
    van Hoesel, R. J. M. ; Clark, Graeme M. ( 1995)
    A simple adaptive beamformer (ABF) was implemented in a real-time portable speech processor and tested with four cochlear implant patients. The ABF algorithm used signals from only two microphones - one behind each ear - to attenuate sounds not arriving from the direction directly in front of the patient, and was compared with a strategy in which the two microphone signals were simply added together (two-microphone broadside strategy). Tests with the four patients were conducted in quiet and in noise. Results at a 0 dB signal-to-noise ratio showed large improvements in speech intelligibility for all patients, when compared to the two-microphone broadside strategy. Physical measurement of the directional characteristics of the ABF processor were made with a Kemar manikin. The effects of reverberation were explored by placing the manikin in different acoustic environments and observing the attenuation of the noise alone at various angles. A near-anechoic environment allowed the noise to be attenuated by as much as 21 dB, whereas in a highly reverberant concrete stairwell, the ABF processor was unable to provide any directional gain beyond about 3 dB.
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    Evaluation of a portable two-microphone adaptive beamforming speech processor with cochlear implant patients
    van Hoesel, R. J. M. ; Clark, Graeme M. ( 1995)
    Abstract not available due to copyright.