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人晶状体囊膜的弹性常数。

Elastic constants of the human lens capsule.

作者信息

Fisher R F

出版信息

J Physiol. 1969 Mar;201(1):1-19. doi: 10.1113/jphysiol.1969.sp008739.

Abstract
  1. A technique is described whereby the elasticity of the human lens capsule has been determined at birth and throughout life. This technique requires three separate determinations: (a) thickness; (b) stress and strain; (c) Poisson's ratio; (a) the capsule was clamped between accurately perforated ground glass plates and its thickness determined by noting the change in depth of focus between Latex spherules adhering to its upper and lower surfaces; (b) the undisturbed capsule was then placed in a specially designed glass distension apparatus and the relationship between volume and pressure recorded when it was distended with isotonic saline. The permeability of the capsule was also measured; (c) in some cases Poisson's ratio was determined by measuring the change of thickness of the capsule and the height to which it rose when distended with isotonic saline at different pressures. An apparatus was designed for this purpose.2. The average thickness of the anterior capsule increases from birth until about the 60th year but thereafter it decreases slightly.3. Poisson's ratio was about 0.47 for both cat and human capsule, and no significant variations with age in human capsule could be detected.4. Corrected volume pressure curves obeyed Hook's law almost to the point of capsule rupture.5. In childhood Young's Modulus of elasticity is about 6 x 10(7) dyn/cm(2) and decreases to 3 x 10(7) dyn/cm(2) at 60 and 1.5 x 10(7) dyn/cm(2) in extreme old age.6. The ultimate tensile stress was 2.3 x 10(7) dyn/cm(2) in young capsules and 0.7 x 10(7) dyn/cm(2) in old ones. The maximum percentage elongation was 29 per cent and independent of age.7. The implications of these findings are discussed in relation to(a) the mechanical properties of the lens capsule;(b) the ageing of the lens capsule and basement membranes; and(c) the decrease in elasticity of the lens capsule as a cause of presbyopia.
摘要
  1. 本文描述了一种测定人晶状体囊在出生时及一生中弹性的技术。该技术需要进行三项独立测定:(a)厚度;(b)应力和应变;(c)泊松比;(a)将晶状体囊夹在精确穿孔的毛玻璃片之间,通过记录附着在其上、下表面的乳胶小球之间焦深的变化来确定其厚度;(b)然后将未受干扰的晶状体囊放入专门设计的玻璃膨胀装置中,用等渗盐水使其膨胀时记录体积与压力之间的关系。还测量了晶状体囊的通透性;(c)在某些情况下,通过测量晶状体囊厚度的变化以及在不同压力下用等渗盐水使其膨胀时它上升的高度来确定泊松比。为此设计了一种装置。

  2. 前囊的平均厚度从出生到大约60岁时增加,但此后略有下降。

  3. 猫和人晶状体囊的泊松比约为0.47,在人晶状体囊中未检测到随年龄的显著变化。

  4. 校正后的体积压力曲线几乎在晶状体囊破裂点之前都符合胡克定律。

  5. 在儿童期,弹性杨氏模量约为6×10⁷达因/平方厘米,在60岁时降至3×10⁷达因/平方厘米,在极高龄时降至1.5×10⁷达因/平方厘米。

  6. 年轻晶状体囊的极限拉伸应力为2.3×10⁷达因/平方厘米,老年晶状体囊的极限拉伸应力为0.7×10⁷达因/平方厘米。最大伸长百分比为29%,且与年龄无关。

  7. 结合以下方面讨论了这些发现的意义:

(a)晶状体囊的机械性能;

(b)晶状体囊和基底膜的老化;

(c)晶状体囊弹性降低作为老花眼的一个原因。

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