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首页> 外文期刊>Journal of Neuroscience Methods >Tools for physiology labs: an inexpensive high-performance amplifier and electrode for extracellular recording.
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Tools for physiology labs: an inexpensive high-performance amplifier and electrode for extracellular recording.

机译:生理实验室的工具:便宜的高性能放大器和细胞外记录电极。

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摘要

The cost of electronic equipment can be a critical barrier to including neurophysiology exercises in biology teaching programs. We describe the construction of a simple and inexpensive AC preamplifier with performance comparable to that of commercial products. The amplifier consists of two integrated circuits in five stages: differential input, fixed gain, variable gain (100 or 1000), low-pass filter (5 or 20 kHz), and 50 or 60 Hz notch filter. We compared our amplifier with two commercial units, the A-M Systems Model 1700 and the Grass P15. The quality of extracellular recording from a typical student preparation (spontaneously active crayfish motor nerve) was the same for all three amplifiers, although our amplifier has slightly higher internal noise than the P15 and slightly lower common-mode rejection than the 1700 and P15. In addition, we describe a simple suction electrode for extracellular nerve recording. It is easily constructed from readily available materials and uses a disposable plastic pipette tip, instead of the traditional glass tip, to contact the nerve. This tip is easily replaced if broken or clogged, and can be adapted to different recording conditions by selecting a different tip size or stretching the plastic. Development of this equipment is part of an ongoing project to promote neuroscience education by expanding the neurophysiology options available to laboratory instructors.
机译:电子设备的成本可能是将神经生理学练习纳入生物学教学计划的关键障碍。我们描述了一种性能与商业产品相当的简单廉价的交流前置放大器的结构。该放大器由五个阶段的两个集成电路组成:差分输入,固定增益,可变增益(100或1000),低通滤波器(5或20 kHz)以及50或60 Hz陷波滤波器。我们将放大器与两个商用单元(A-M系统1700型和Grass P15)进行了比较。尽管三个放大器的内部噪声比P15略高,而共模抑制比1700和P15略低,但典型的学生准备(自发活动的小龙虾运动神经)的细胞外记录质量对于所有三个放大器都是相同的。另外,我们描述了用于细胞外神经记录的简单吸引电极。它可以用容易获得的材料轻松构造,并使用一次性塑料移液器吸头代替传统的玻璃吸头来接触神经。如果该笔尖破裂或堵塞,则很容易更换,并且可以通过选择不同的笔尖尺寸或拉伸塑料来适应不同的记录条件。该设备的开发是正在进行的项目的一部分,该项目通过扩大实验室讲师可用的神经生理学选项来促进神经科学教育。

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