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年龄对神经肌肉传递的影响。

The effect of age on neuromuscular transmission.

作者信息

Kelly S S

出版信息

J Physiol. 1978 Jan;274:51-62. doi: 10.1113/jphysiol.1978.sp012133.

Abstract
  1. Resting membrane potentials (RMPs), spontaneous miniature end-plate potentials (m.e.p.p.s), and evoked end-plate potentials (e.p.p.s) were recorded in phrenic nerve-hemidiaphragm preparations from rats at ages from 11 to 375 days. 2. The mean RMP increased from -64.1 +/- 1.2 mV (mean +/- S.E.) at age 11 days to -71.3 +/- 1.0 mV at age 30 days, after which there was no significant change with age. 3. The mean amplitude of m.e.p.p.s decreased from 1.088 +/- 0.070 mV at 11 days of age to 0.405 +/- 0.030 mV at 175 days of age, after which there was no significant change. 4. There was a rpaid, large increase in the frequency of m.e.p.p.s from 0.02/sec to 0.97/sec (geometric means) between 11 and 23 days of age, followed by a slower increase to 3.19/sec at 175 days of age. Subsequently there was a decrease by 2.58/sec at 375 days of age. 5. The mean of quantum content of plateau e.p.p.s elicited at a frequency of 10 Hz increased from 20.5 quanta/e.p.p. to 169.9 quanta/e.p.p. (geometric means) between 11 and 175 days of age and then decreased to 120.4 quanta/e.p.p. at 375 days of age. 6. The mean quantum content of the first e.p.p.s of trains of e.p.p.s increased from 44.2 quanta/e.p.p. to 468.8 quanta/e.p.p. (geometric means) between 11 and 175 days of age and then decreased to 358.1 quanta/e.p.p. at 375 days of age. 7. The calculated safety factor of neuromuscular transmission increased with age up to 110-175 days and subsequently decreased. 8. The change in all the above parameters occurred most rapidly in the first 6 weeks of life. The rapidity of these changes indicates that great care must be taken to ensure that control and experimental animals are adequately matched according to age, especially when rats weighing less than about 300 g are used.
摘要
  1. 在11至375日龄大鼠的膈神经-半膈肌标本中记录静息膜电位(RMPs)、自发微小终板电位(m.e.p.p.s)和诱发终板电位(e.p.p.s)。2. 平均RMP从11日龄时的-64.1±1.2 mV(平均值±标准误)增加到30日龄时的-71.3±1.0 mV,此后随年龄增长无显著变化。3. m.e.p.p.s的平均幅度从11日龄时的1.088±0.070 mV下降到175日龄时的0.405±0.030 mV,此后无显著变化。4. 在11至23日龄之间,m.e.p.p.s的频率从0.02/秒迅速大幅增加到0.97/秒(几何平均值),随后在175日龄时缓慢增加到3.19/秒。随后在375日龄时下降到2.58/秒。5. 在10 Hz频率下诱发的平台期e.p.p.s的平均量子含量在11至175日龄之间从20.5量子/e.p.p.增加到169.9量子/e.p.p.(几何平均值),然后在375日龄时下降到120.4量子/e.p.p.。6. e.p.p.s串中第一个e.p.p.s的平均量子含量在11至175日龄之间从44.2量子/e.p.p.增加到468.8量子/e.p.p.(几何平均值),然后在375日龄时下降到358.1量子/e.p.p.。7. 计算得出的神经肌肉传递安全因子随年龄增长至110 - 175日龄时增加,随后下降。8. 上述所有参数的变化在生命的前6周内最为迅速。这些变化的迅速程度表明,必须格外小心以确保对照动物和实验动物在年龄上充分匹配,尤其是在使用体重小于约300 g的大鼠时。

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