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大鼠嗅球中的扩散性抑制:可靠的起始及传播边界

Spreading depression in the olfactory bulb of rats: reliable initiation and boundaries of propagation.

作者信息

Amemori T, Gorelova N A, Bures J

出版信息

Neuroscience. 1987 Jul;22(1):29-36. doi: 10.1016/0306-4522(87)90195-3.

DOI:10.1016/0306-4522(87)90195-3
PMID:2442664
Abstract

Spreading depression in the olfactory bulb of rats is an elusive phenomenon, the demonstration of which requires specific conditioning procedures. The present paper describes a simple technique for reliable initiation of bulbar spreading depression with microinjections of potassium acetate. Adult hooded rats were anesthetized with pentobarbital (50 mg/kg) and slow potential changes accompanying spreading depression were recorded with capillary microelectrodes stereotaxically inserted into the olfactory bulb and adjacent forebrain structures. KCl microinjection (0.5-1.0 microliter, 0.134-0.670 mol/l) into the olfactory bulb elicited local depolarization which only exceptionally developed into a propagating spreading depression. Potassium acetate (0.5-1.0 microliter, 0.15 mol/l) injected into the rostral olfactory bulb evoked a negative slow potential wave (amplitude of around 25 mV and duration 30-50 s) propagating at a rate of 3-4 mm/min through all the olfactory bulb layers. Low positive (5 mV) instead of negative waves were recorded in the superficial olfactory nerve layer with reversal in the glomerular layer (200-300 micron). The slow potential decreased in the rostrocaudal direction and expired at the caudal boundary of the olfactory bulb. Bulbar spreading depression never spread to neocortex, and cortical spreading depression never entered into the olfactory bulb but stopped in the anterior olfactory nucleus 7 mm rostral to bregma. Repeated potassium acetate injections into the olfactory bulb occasionally elicited a series of spreading depression waves recurring at regular intervals, probably reflecting reverberation of scroll-shaped waves around the rostrocaudal axis of the olfactory bulb.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

大鼠嗅球中的扩散性抑制是一种难以捉摸的现象,要证明这一现象需要特定的条件程序。本文描述了一种通过微量注射醋酸钾可靠引发嗅球扩散性抑制的简单技术。成年带帽大鼠用戊巴比妥(50毫克/千克)麻醉,通过立体定位插入嗅球和邻近前脑结构的毛细管微电极记录伴随扩散性抑制的慢电位变化。向嗅球微量注射氯化钾(0.5 - 1.0微升,0.134 - 0.670摩尔/升)会引起局部去极化,只有极少数情况下会发展为传播性扩散性抑制。向嗅球前端微量注射醋酸钾(0.5 - 1.0微升,0.15摩尔/升)会引发一个负向慢电位波(幅度约25毫伏,持续时间30 - 50秒),以3 - 4毫米/分钟的速度穿过嗅球的所有层传播。在嗅神经浅层记录到的是低正向(5毫伏)而非负向波,在嗅小球层(200 - 300微米)发生反转。慢电位在前后方向上逐渐降低,并在嗅球的尾端边界消失。嗅球的扩散性抑制从未扩散到新皮层,皮层扩散性抑制也从未进入嗅球,而是在距前囟前方7毫米的前嗅核处停止。向嗅球重复注射醋酸钾偶尔会引发一系列以规则间隔重复出现的扩散性抑制波,这可能反映了围绕嗅球前后轴的涡旋形波的回响。(摘要截断于250字)

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