磁共振兼容听觉刺激系统


入耳式磁共振兼容听觉刺激系统由美国知名听觉产品公司sens出品,其高清晰,高还原度的技术使得此款产品为各个听觉研究实验室标配,其物美价廉,可轻松装备您的实验室,高质量立体声音频输出,超广频率覆盖范围,使得您的被试可以清晰的接受听觉刺激。
    物美价廉——轻松装备功能磁共振实验室!

    国际领先——使用该产品文章发表在高Impact factor杂志上的文章数不胜数!

    国际领先——入耳式设计,兼容所有线圈!


   S14入耳式磁共振兼容耳机,设计小巧灵活,可以放置于任意磁共振线圈内,也可安装耳罩使其成为头戴式耳机,保证更加完美的听觉刺激效果。

     其特点包括:

    1.高质量标准化音频输出;
    2.8HZ-100kHZ频率覆盖范围;
    3.提供客体化的均衡滤波器;
    4.EQ Filtering 2.2— 基于windows平台的滤波软件;
    5.MATLAB 脚本用于滤波器设置;

世界知名客户:
Children’s Hospital Boston  波士顿儿童医院
Donders Institute for Brain, Cognition and Behaviour  荷兰Donders脑科学研究中心
Harvard University – Center for Brain Science  哈佛大学
INSERM – National Institute for Medical Research 法国医学中心
Martinos Center for Biomedical Imaging, Massachusetts General Hospital  麻省总医院
Massachusetts Institute of Technology  麻省理工学院
Max Planck Institute for Human Cognitive and Brain Sciences  德国马普所
Medical Research Council Institute of Hearing Research  荷兰听觉研究所
Medical University of South Carolina  南加州医科大学
Montreal Neurological Institute and Hospital at McGill University  加拿大麦吉尔大学
Princeton Neuroscience Institute  普林斯顿大学
University of Glasgow   格拉斯哥大学
University of Oxford  牛津大学
使用 S14 earphones发表在High Impact factor杂志上的文章:
Natural speech reveals the semantic maps that tile human cerebral cortex
1.Alexander G. Huth, Wendy A. de Heer, Thomas L. Griffiths, Frédéric E. Theunissen, Jack L. Gallant Nature

2.Distinct Cortical Pathways for Music and Speech Revealed by Hypothesis-Free Voxel Decomposition
Sam Norman-Haignere, Nancy G. Kanwisher, Josh H. McDermott Neuron – Volume 88, Issue 6, 16 December 2015, Pages 1281–1296

3.Past experience shapes ongoing neural patterns for language
Lara J. Pierce, Jen-Kai Chen, Audrey Delcenserie, Fred Genesee, Denise Klein Nature Communications – December 1, 2015

4.Short-Term Memory for Space and Time Flexibly Recruit Complementary Sensory-Biased Frontal Lobe Attention Networks
Samantha W. Michalka, Lingqiang Kong, Maya L. Rosen, Barbara G. Shinn-Cunningham, David C. Somers Neuron

5.Repetition Suppression in the Left Inferior Frontal Gyrus Predicts Tone Learning Performance
Salomi S. Asaridou, Atsuko Takashima, Dan Dediu, Peter Hagoort, James M. McQueen Cerebral Cortex

6.Why musical memory can be preserved in advanced Alzheimer’s disease
Jörn-Henrik Jacobsen, Johannes Stelzer, Thomas Hans Fritz, Gael Chételat, Renaud La Joie, Robert Turner Brain

7.The Topography of Frequency and Time Representation in Primate Auditory Cortices
Simon Baumann, Olivier Joly, Adrian Rees, Christopher I Petkov, Li Sun, Alexander Thiele, Timothy D Griffiths eLife

8.Making Every Word Count for Nonresponsive Patients
Lorina Naci, PhD; Adrian M. Owen, PhD JAMA Neurology, August 12, 2013.

9.Neuronal representations of distance in human auditory cortex
Norbert Kopčo, Samantha Huang, John W. Belliveau, Tommi Raij, Chinmayi Tengshe, and Jyrki Ahveninen (2012) PNAS

10.Sensitive Period for a Multimodal Response in Human Visual Motion Area
Bedny, Marina;  Konkle, Talia;  Pelphrey, Kevin; Saxe, Rebecca; Pascual-Leone, Alvaro (2010)  Current Biology