146 | Chapter 7
Cowan R: Threshold, comfortable level and impedance changes as a function of electrode-modiolar distance.
Ear Hear 2002
;23:28S-40S.
Seyyedi M, Burgess BJ, Eddington DK, Gantz BJ, Nadol JB, Jr.: Histopathology of the Clarion cochlear implant electrode positioner in
a human subject.
Audiol Neurootol 2013
;18:223- 227.
Shepherd RK, Hatsushika S, Clark GM: Electrical stimulation of the auditory nerve: the effect of electrode position on neural excitation.
Hear Res 1993
;66:108-120.
Spahr AJ, Dorman MF: Effects of minimum stimulation settings for the Med El Tempo+ speech processor on speech understanding.
Ear
Hear 2005
;26:2S-6S.
Tykocinski M, Cohen LT, Pyman BC, Roland T, Jr., Treaba C, Palamara J, Dahm MC, Shepherd RK, Xu J, Cowan RS, Cohen NL, Clark
GM: Comparison of electrode position in the human cochlea using various perimodiolar electrode arrays.
Am J Otol 2000
;21:205-211.
van der Beek F.B., Briaire J.J., Frijns J.H.M.: Population-based prediction of fitting levels for individual cochlear implant recipients.
Submitted 2014.
van der Beek FB, Boermans PP, Verbist BM, Briaire JJ, Frijns JH: Clinical evaluation of the Clarion CII HiFocus 1 with and without
positioner.
Ear Hear 2005a
;26:577-592.
van der Beek FB, Boermans PP, Verbist BM, Briaire JJ, Frijns JH: Clinical evaluation of the Clarion CII HiFocus 1 with and without
positioner.
Ear Hear 2005b;
26:577-592.
van der Beek FB, Braire JJ, Frijns JHM: Intra-cochlear position of cochlear implants measured with CT-scan: impact on clinical fitting
levels.
Audiol Neurotol 2015a
;x:xx.
van der Beek FB, Briaire JJ, Frijns JH: Effects of parameter manipulations on spread of excitation measured with electrically-evoked
compound action potentials.
Int J Audiol 2012
;51:465-474.
van der Beek FB, Briaire JJ, Frijns JH: Population-based prediction of fitting levels for individual cochlear implant recipients.
Audiol
Neurootol 2015b
;20:1-16.
van der Beek FB, Soede W, Frijns JH: Evaluation of the benefit for cochlear implantees of two assistive directional microphone systems in
an artificial diffuse noise situation.
Ear Hear 2007
;28:99-110.
Vargas JL, Sainz M, Roldan C, Alvarez I, de la Torre A: Analysis of electrical thresholds and maximum comfortable levels in cochlear
implant patients.
Auris Nasus Larynx 2012.
Wackym PA, Firszt JB, Gaggl W, Runge-Samuelson CL, Reeder RM, Raulie JC: Electrophysiologic effects of placing cochlear implant
electrodes in a perimodiolar position in young children.
Laryngoscope 2004
;114:71-76.
Wesarg T, Battmer RD, Garrido LC, Dillier N, Garcia-Ibanez L, Hey M, Macias AR, Irujo AH, Morsnowski A, Offeciers EF, Zarowski A,
Pesch J, Rypkema G, Smoorenburg GF: Effect of changing pulse rate on profile parameters of perceptual thresholds and loudness comfort
levels and relation to ECAP thresholds in recipients of the Nucleus CI24RE device.
Int J Audiol 2010
;49:775-787.
Wouters J, Vanden Berghe J: Speech recognition in noise for cochlear implantees with a two- microphone monaural adaptive noise
reduction system.
Ear Hear 2001
;22:420-430.
Zhou N, Pfingst BE: Effects of site-specific level adjustments on speech recognition with cochlear implants.
Ear Hear 2014
;35:30-40.
Zwolan, T. A. Programming Levels in Children. 10th Symposium on Cochlear Implants in Children, March 15-19, 2005, Dallas, Texas.
2005.




