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听觉中枢纯音处理偏侧性质子磁共振波谱研究 被引量:1

The hemispheric lateralization of the auditory cortex after being stimulated by pure tone: a ~ H-MRS study
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摘要 目的利用质子磁共振波谱(proton magnetic resonance spectroscopy,^1H-MRS)技术观察纯音刺激后正常人左右半球听皮层代谢物偏侧性变化。方法12例健康受试者听皮层在纯音刺激前后各接受一次多体素磁共振波谱检查。刺激声音为声强90dB、频率1000Hz的正弦波纯音脉冲。观察双侧听皮层N-乙酰天门冬氨酸(NAA)、肌酸(Cr)、胆碱(Cho)、谷氨酰胺和谷氨酸(Glx)、GABA等代谢物的波峰变化,并进行半定量分析,比较刺激前后听皮层代谢物左右半球偏侧性变化。结果纯音刺激后左侧听皮层NAA/(Cho+Cr)、GABA/Cr比值[分别为(1.28±0.14),(0.21±0.08)],高于刺激前[分别为(1.02±0.18),(0.10±0.05)],Glx/Cr比值[(0.03±0.02)]明显低于刺激前[(0.10±0.04)],差异均有统计学意义(P〈0.05);右侧听皮层刺激后NAA/(Cho+Cr)、Glx/Cr比值[分别为(0.92±0.13),(0.09±0.05)]均高于刺激前[分别为(0.90±0.11),(0.08±0.03)],但差异无统计学意义(P〉0.05);GABA/Cr比值[(0.01±0.11)]明显低于刺激前[(0.11±0.07)],差异有显著性(P〈0.002),纯音刺激后双侧听皮层Glx/Cr比值呈明显的非对称性。结论纯音刺激后双侧听皮层代谢存在半球非对称性,可能为功能的非对称性提供生化方面的信息。 Objective To explore the asymmetry of metabolic products of the auditory cortex in normal human brain after being stimulated by the pure tone with the proton magnetic resonance spectroscopy(^1H-MRS). Methods Twelve healthy volunteers, including 7 males and 5 females, were performed MRS tests before and after the stimulation of the pure tone of 90 dB in intensity and 1000 Hz in frequency. The the metabolites peak of the N-acetylaspartate (NAA), creatine(Cr), choline (Cho), glutamine/glutamate (Glx)and GABA in auditory cortex were investigated, The content of metabolic products were conducted with half-quantitative analysis. The differences of the NAA/( Cho + Cr) , Glx/Cr and GABA/ Cr ratios before and after pure tone stimulation in the bilateral auditory cortex were analyzed. The difference of distribution of the metabolic products between the left and right auditory cortex was also analyzed to explore the asymmetry of the auditory cortex. Results The NAA/( Cho + Cr) and GABA/Cr ratios increased, the Glx/Cr ratio decreased in the left auditory cortex after being stimulated by the pure tone. There were significant differences in the NAA/( Cho + Cr), Glx/Cr and GABA/Cr ratios before and after pure tone stimulation (P 〈 0.05 ) ; the GABA/Cr ratio decreased, the Glx/Cr and NAA/( Cho + Cr) ratios increased in the right auditory cortex after being stimulated by the pure tone, and statistical difference of the GABA/Cr ratio was found before and after pure tone stimulation (P 〈 0.05 ) , however the difference of the Glx/Cr and NAA/( Cho + Cr)ratios before and after pure tone stimulation was not significant (P 〉 0.05 ). There were statistically significant differences in the Glx/Cr ratio of the auditory cortex between two sides after being stimulated by the pure tone. Conclusion The metabolic lateralization exists in auditory cortex of normal human brain after being stimulated by the pure tone, which may be the bases of the functional asymmetry.
出处 《中华行为医学与脑科学杂志》 CAS CSCD 北大核心 2011年第6期510-512,共3页 Chinese Journal of Behavioral Medicine and Brain Science
基金 福建省自然科学基会项目(2009Y0041)
关键词 磁共振波谱 听皮层 纯音刺激 偏侧性 Proton magnetic resonance spectroscopy Auditory cortex Pure tone stimulation Hem- ispheric laterality
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参考文献17

  • 1Toga AW,Thompson PM. Mapping brain asymmetry. Nat Rev Neuros- ci ,2003,4:3748.
  • 2Zatorre RJ, Belin P, Penhune VB. Structure and function of auditory, cortex: music and speech. Trends Cogn Sci,2002,6:37-46.
  • 3Jayasundar R. Human brain : biochemical lateralization in normal sub- jects. Neurol India, 2002,50:267-271.
  • 4Gao H, Xiang Y, Sun N, et al. Metabolic changes in rat prefrontal cor- tex and hippocampus induced by chronic morphine treatment studied ex vivo by high resolution I HNMR spectroscopy. Neurochem Int, 2007,50:386-394.
  • 5Hasler G, van der Veen JW, Tumonis T,et al. Reduced prefrontal glutamate/glutamine and gamma-aminobutyric acid levels in major de- pression determined using proton magnetic resonance spectroscopy. Arch Gen Psychiatry ,2007,64 : 193-200.
  • 6Sch~nwiesner M, Rtibsamen R, yon Cramon DY. Hemispheric asym- metry for spectral and temporal processing in the human antero-lateral auditory belt cortex. Eur J Neurosci ,2005,22 : 1521-1528.
  • 7Mounfford CE, Doran S, Lean CL, et al. Proton MRS can determine the pathology of human cancers with a high level of accuracy. Chem Rev ,2004,104:3677-3704.
  • 8Rosen Y, Lenkinski RE. Recent advances in magnetic resonance neu- rospectroscopy. Neurotherapeutics ,2007,4 : 330-345.
  • 9王冬青,朱彦,李月峰,李国海,刘珺,朱颖,殷瑞根,吴琴,罗一烽,赵亮,张礼荣.首发抑郁症患者敏感脑结构的磁共振质子波谱分析[J].中华行为医学与脑科学杂志,2011,20(1):19-21. 被引量:31
  • 10毛春丽,陈贤明,陈自谦,叶友强,罗萍.正常人听觉皮层BOLD-fMRI的研究[J].中国实用神经疾病杂志,2009,12(7):4-9. 被引量:5

二级参考文献14

  • 1林铮,李惠春,龚向阳,卢蕴容,俞少华,禹华良,陈巧珍.抑郁症患者前额叶、海马磁共振质子波谱成像的研究[J].中华精神科杂志,2005,38(4):193-197. 被引量:41
  • 2Rao SM,Bandettini PA,Binder JR,et al.Relationship between finger movement rate and functional magnetic resonance signal change in human primary motor cortex[].J of Cerebral Blood Flow and Metabolis.1996
  • 3Yousry TA,Schmid UD,Alkadhi H,et al.Localization of the motor hand area to a knob on the precentral gyrus.A new landmark[].Brain.1997
  • 4Bilecen D,Seifritz E,Radu E W,et al.Cortical reorganization after acute unilateral hearing loss traced by fMRI[].Neurology.2000
  • 5Scheffler K,Bilecen D,Schmid N,et al.Auditory cortical responses in hearing subjects and unilateral deaf patients as detected by functional magnetic resonance imaging[].Cerebral Cortex.1988
  • 6Cordes,D,Turski,PA,Sorenson,JA.Compensation of susceptibility-induced signal loss in echo-planar imaging for functional applications[].Magnetic Resonance Imaging.2000
  • 7Friston, K J,Penny, W,Phillips, C. et al.Classical and Bayesian inference in neuroimaging: Theory[].Neuroimage.2002
  • 8Penny,W.,Kiebel,S.,Friston,K.Variational Bayesian inference for fMRI time series[].Neuroimage.2003
  • 9Turner,R,Jezzard,P,Wen,H,Kwong,KK,Le,Bihan D,Zeffiro,T,Balaban,RS.Functional mapping of the human visual cortex at 4 and 1.5 Tesla using deoxygen-ation contrast EPI[].Magnetic Resonance in Medicine.1993
  • 10Brechmann A,Baumgart F,Scheich H.Sound-level-dependent representation of frequency modulations in human auditory cortex: a low-noise fMRI study[].Journal of Neurophysiology.2002

共引文献34

同被引文献11

  • 1黄腾辉.肾虚证症状量化等级评判标准的研究[J].卫生职业教育,2005,23(21):108-110. 被引量:7
  • 2沈自尹 王文健.中医虚证辨证参考标准[J].中西医结合杂志,1986,6(10):598-598.
  • 3Jayasundar R. Human brain:biochemical latcralization in normal subjects. NcurolIndia, 2002, 50 (3): 267-271.
  • 4RosenY, LenkinskiRE. Recent advances in magnetic resonance neurospectroscopy. Neurotherapeutics, 2007, 4 (3): 330-345.
  • 5Strouse A, Ashmead DH, Ohde RN, et al. Temporal processing in the aging auditory system. J Acoust Soc Am, 1998, 104 ( 4): 2385-2399.
  • 6Tremblay KL, Piskosz M, Souza P. Effects of age and age-related heating loss on the neural representation of speech cues. ClinNeurophysiol, 2003, 114 (7): 1332-1343.
  • 7Hillary FG, Liu W C, Genova HM, et al. Examining lactate in severe TBI using proton magnetic resonance spectroscopy. Brain Inj, 2007, 21 (9). 981-991.
  • 8Richards TL, Gates GA, Gardner JC, et al. Functional MR spectroscopy of the auditory cortex in healthy subjects and patients with sudden hearing loss. Am J Neuroradiol, 1997, 18 (4): 611-620.
  • 9Sakamoto M, Kaga K, Kamio T. Extended high-frequency ototoxicity induced by the first administration of cisplatin. Otolaryngol HeadNeck Surg, 2000, 122 (6): 828-233.
  • 10陈十燕,梁永辉,罗萍,陈贤明.老年性聋大鼠听皮层病理变化[J].听力学及言语疾病杂志,2011,19(1):47-51. 被引量:6

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