听觉诱发中潜伏期反应研究进展
彭贤;符秋养;王涛;
1:南方医科大学生物医学工程学院
2:广东省第二人民医院耳鼻咽喉-头颈外科





1 McGee T,Kraus N,Comperatore C,et al.Subcortical and cortical components of the MLR generating system[J].Brain Res,1991,54:211.
2 Ligeois-Chauvel C,Musolino A,Badier JM,et al.Evoked potentials recorded from the auditory cortex in man:evaluation and topography of the middle latency components[J].Electroencephalogr Clin Neurophysiol,1994,94:204.
3 Fischer C,Bognar L,Turjman F,et al.Auditory evoked potentials in a patient with a unilateral lesion of the inferior colliculus and medial geniculate body[J].Electroencephalogr Clin Neurophysiol,1995,96:261.
4 Tucker DA,Dietrich S,Harris S,et al.Effects of stimulus rate and gender on the auditory middle latency response[J].J Am Acad Audiol,2002,13:146.
5 Pratt H.Middle latency response[M].In:Burkard RF,Eggermont JJ,Don M,eds.Auditory evoked potentials:basic principles and applications.New York:Lippincott Williams and Wilkins,2007.463~481.
6 Purdy SC,Agung KB,Hartley D,et al.The post-auricular muscle response:an objective electrophysiological method for evaluating hearing sensitivity[J].International Journal of Audiology,2005,44:625.
7 Tucker DA,Ruth RA.Effects of age,signal level,and signal rate on the auditory middle latency response[J].J Am Acad Audiol,1996,7:83.
8 Erwin RJ,Buchwald JS.Midlatency auditory evoked responses:differential recovery cycle characteristics[J].Electroenceph Clin Neurophysiol,1986,64:417.
9 Eysholdt U,Schreiner C.Maximum length sequences-a fast method for measuring brainstem-evoked responses[J].Audiology,1982,21:242.
10 zdamar,Bohrquez J.Signal to noise ratio and frequency analysis of continuous loop averaging deconvolution(CLAD)of overlapping evoked potentials[J].Acoust Soc Am,2006,119:429.
11 Wang T,Zhan C,Yan G,et al.A preliminary investigation of the deconvolution of auditory evoked potentials using a session jittering paradigm[J].J Neural Eng,2013,10:26023.
12 Nagle S,Musiek FE.Morphological changes in the middle latency response using maximum length sequence stimuli[J].J Am Acad Audiol,2009,20:492.
13 Stapells DR,Linden D,Suffield JB,et al.Human auditory steady state potentials[J].Ear Hear,1984,5:105.
14 Azzena GB,Conti G,Santarelli R,et al.Generation of human auditory steady-state responses(SSRs).I:stimulus rate effects[J].Hear Res,1995,83:1.
15 Bohrquez J,zdamar.Generation of the 40-Hz auditory steady-state response(ASSR)explained using convolution[J].Clin Neurophysiol,2008,119:2598.
16 Thornton C,Sharpe RM.Evoked responses in anaesthesia[J].Br J Anaesth,1998,81:771.
17 Davies FW,Mantzaridis H,Fisher AC,et al.Middle latency auditory evoked potentials during repeated transitions from consciousness to unconsciousness[J].Anaesthesia,1996,51:107.
18 Goto T,Nakata Y,Saito H,et al.The midlatency auditory evoked potentials predict responsiveness to verbal commands in patients emerging from anesthesia with xenon,isoflurane,and sevoflurane but not with nitrous oxide[J].Anesthesiology,2001,94:782.
19 Plourde G.Auditory evoked potentials[J].Best Pract Res Clin Anaesthesiol,2006,20:129.
20 Schwender D,Klasing S,Madler C,et al.Mid-latency auditory evoked potentials during ketamine anaesthesia in humans[J].Br J Anaesth,1993,71:629.
21 Nishiyama T,Matsukawa T,Hanaoka K.Is the ARX index a more sensitive indicator of anesthetic depth than the bispectral index during sevoflurane/nitrous oxide anesthesia[J]?Acta Anaesthesiologica Scandinavica,2004,48:1028.
22 Urhonen E,Jensen EW,Lund J.Changes in rapidly extracted auditory evoked potentials during tracheal intubation[J].Acta Anaesthesiol Scand,2000,44:743.
23 Kuhnle GE,Hornuss C,Daunderer M,et al.Impact of propofol on mid-latency auditory-evoked potentials in children[J].Br J Anaesth,2013,110:1001.
24 Munoz HR,Leon PJ,Fuentes RS,et al.Prospective evaluation of the time to peak effect of propofol to target the effect site in children[J].Acta Anaesthesiol Scand,2009,53:883.
25 Suzuki T,Hirabayashi M.Age-related morphological changes in auditory middle-latency response[J].Audiology,1987,26:312.
26 Nelson MD,Hall JW 3rd,Jacobson GP.Factors affecting the recordability of auditory evoked response Pb(P1)[J].J Am Acad Audiol,1997,8:89.
27 Schochat E,Musiek FE.Maturation of outcomes of behavioral and electrophysiologic tests of central auditory function[J].J Commun Disord,2006,39:78.
28 Shafer VL,Morr ML,Kreuzer JA,et al.Maturation of mismatch negativity in school age children[J].Ear Hear,2000,21:242.
29 Ponton C,Eggermont JJ,Khosla D,et al.Maturation of human central auditory system activity:separating auditory evoked potentials by dipole source modeling[J].Clin Neurophysiol,2002,113:407.
30 Dustman RE,Shearer DE,Emmerson RY.EEG and eventrelated potentials in normal aging[J].Prog Neurobiol,1993,41:369.
31 Yamadaa T,Nakamurab A,Horibe K,et al.Asymmetrical enhancement of middle-latency auditory evoked fields with aging[J].Neurosci Lett,2003,30:21.
32 Golob EJ,Johnson JK,Starr A.Auditory event-related potentials during target detection are abnormal in mild cognitive impairment[J].Clin Neurophysiol,2002,113:151.
33 Irimajiri R,Golob EJ,Starr A.Auditory brain-stem,middle-and long-latency evoked potentials in mild cognitive impairment[J].Clin Neurophysiol,2005,116:1918.
34 Ramkissoon I,Chambers RD.Effects of chronic and acute smoking on AMLRs in older and younger listeners[J].Int J Audiol,2008,47:715.
35 Domino EF.Effects of tobacco smoking on electroencephalographic,auditory evoked and event related potentials[J].Brain and Cognition,2003,53:66.
36 Ramkissoon I,Beverly BL.Auditory middle latency responses in chronic smokers compared to nonsmokers:differential effects of stimulus and age[J].J Speech Lang Hear Res,2014,57:271.