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一项关于新生大鼠内淋巴电位形成时耳蜗内液体的电化学和渗透关系的研究。

A study of the electrochemistry and osmotic relationships of the cochlear fluids in the neonatal rat at the time of the development of the endocochlear potential.

作者信息

Bosher S K, Warren R L

出版信息

J Physiol. 1971 Feb;212(3):739-61. doi: 10.1113/jphysiol.1971.sp009354.

Abstract
  1. Changes in the endocochlear potential between the 8th and 18th days after birth were investigated in the rat. Initially the potential was low but its magnitude increased rapidly between the 11th and 16th day. During the 13th and 14th days the rate of increase was approximately 1 mV/hr.2. The rapid potential increase arose virtually simultaneously in all three turns of the cochlea.3. Histological examination revealed the cochlea, including the hair cells of Corti's organ and the stria vascularis, to be fully mature before the period of rapid change in the endocochlear potential, apart from the cells of Claudius, whose final development coincided with the latter part of this phase.4. The endolymphatic sodium concentration (average 1.0 m-equiv/l.) had attained the very low adult level in the earliest period studied. The potassium and chloride concentrations were slightly below the normal adult levels, the result of some degree of general hypo-osmolality present at this time.5. The endolymphatic ionic concentrations remained unchanged during the phase of rapid increase in the endocochlear potential.6. The findings thus indicate that the distinctive endolymphatic ionic composition and the endocochlear potential arise largely independently and in succession during cochlear maturation.7. No differences in osmotic pressure were demonstrated between endolymph, perilymph and serum. The problems concerning the homoeostasis of the inner ear fluids do not consequently seem to be complicated by unusual hydrodynamic aspects.8. Alterations in body fluid osmolality, produced by intraperitoneal injection of water or hypertonic glycerol, were accompanied by simultaneous changes in the osmotic pressures of the inner ear fluids. Some portion of the membranes bounding the endolymphatic space is therefore considered to be freely permeable to water.9. The investigations provide no further information about the nature of the endocochlear potential, although an increase in the electrical resistance of the cochlear duct membranes is thought responsible for its appearance. The time relationships of this period support the concept that the potential is an essential feature of the mechano-electric transduction process.
摘要
  1. 对出生后第8天至第18天大鼠的内淋巴电位变化进行了研究。最初该电位较低,但在第11天至第16天之间其幅度迅速增加。在第13天和第14天期间,增加速率约为1毫伏/小时。

  2. 耳蜗的所有三个蜗旋中几乎同时出现了电位的快速增加。

  3. 组织学检查显示,除了克劳迪乌斯细胞外,耳蜗,包括柯蒂氏器的毛细胞和血管纹,在内淋巴电位快速变化期之前已完全成熟,克劳迪乌斯细胞的最终发育与该阶段的后期一致。

  4. 在所研究的最早时期,内淋巴钠浓度(平均1.0毫当量/升)已达到非常低的成年水平。钾和氯浓度略低于正常成年水平,这是此时存在某种程度的全身性低渗的结果。

  5. 在内淋巴电位快速增加阶段,内淋巴离子浓度保持不变。

  6. 这些发现表明,独特的内淋巴离子组成和内淋巴电位在很大程度上是在耳蜗成熟过程中独立且相继产生的。

  7. 在内淋巴、外淋巴和血清之间未显示出渗透压差异。因此,内耳液体的稳态问题似乎并未因异常的流体动力学方面而变得复杂。

  8. 通过腹腔注射水或高渗甘油引起的体液渗透压变化,伴随着内耳液体渗透压的同时变化。因此,认为界定内淋巴间隙的部分膜对水是自由通透的。

  9. 这些研究没有提供关于内淋巴电位性质的进一步信息,尽管人们认为耳蜗管膜电阻的增加是其出现的原因。这一时期的时间关系支持了该电位是机械电转换过程的一个基本特征这一概念。

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本文引用的文献

2
ENDOCOCHLEAR DC POTENTIAL: HOW IS IT MAINTAINED ALONG THE COCHLEAR TURNS?
Ann Otol Rhinol Laryngol. 1964 Dec;73:924-33. doi: 10.1177/000348946407300405.
3
DEVELOPMENT OF MAMMALIAN ENDOCOCHLEAR POTENTIAL.哺乳动物内耳蜗电位的发育
J Exp Zool. 1963 Aug;153:227-35. doi: 10.1002/jez.1401530305.
4
[Electrical potentials of the inner ear].[内耳的电位]
Arch Ohren Nasen Kehlkopfheilkd. 1960;177:45-56.
6
Measurement of the pH of the endolymph in the cochlea of guinea pigs.
Am J Physiol. 1958 Aug;194(2):393-5. doi: 10.1152/ajplegacy.1958.194.2.393.
7
The electrolytes of the labyrinthine fluids.内淋巴液的电解质。
Laryngoscope. 1954 Mar;64(3):141-53. doi: 10.1288/00005537-195403000-00001.
8
The development of the stria vascularis in the mouse.小鼠血管纹的发育
Acta Otolaryngol. 1966 Oct-Nov;62(4):277-91. doi: 10.3109/00016486609119573.
10
The development of the organ of Corti in the mouse.小鼠柯蒂氏器的发育
Acta Otolaryngol. 1965 Sep;60(3):207-22. doi: 10.3109/00016486509127003.

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