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一种测量男性尿道压力和横截面积相关值的技术。

A technique for measurement of related values of pressure and cross-sectional area in the male urethra.

作者信息

Bagi P, Vejborg I, Colstrup H, Kristensen J K

机构信息

Department of Urology, Rigshospitalet, Copenhagen, Denmark.

出版信息

Urol Res. 1993;21(4):245-51. doi: 10.1007/BF00307704.

Abstract

A probe for measurement of related values of cross-sectional area and pressure in the male urethra was constructed. The probe allows induction of variable pressures or fluid volumes in a distensible balloon located in the urethra and simultaneous recording of related values of cross-sectional area and pressure. Cross-sectional area is measured in the range of 11-102 mm2 using the field-gradient principle. Pressure is measured in the range of 0-250 cmH2O using tip transducers. The time constant for cross-sectional area measurement is 0.02 s and that for pressure measurement, 0.007 s. The pressures required to reach the maximal and minimal cross-sectional areas of the balloon are 2.8 and -2.4 cmH2O, respectively. The shape of the probe after its placement in the urethra was studied by transrectal ultrasound in five volunteers. The results showed that the measurement error caused by the slope of the balloon walls or the forced bending of the catheter did not exceed 5%. The method enables a description of the biomechanical properties of the male urethra at rest in terms of estimated pressure at zero cross-sectional area, elastance, and stress-relaxation and at voluntary contraction in terms of work and power as evaluated at well-defined anatomical locations.

摘要

构建了一种用于测量男性尿道横截面积和压力相关值的探头。该探头能够在位于尿道内的可扩张球囊中诱导可变压力或液体体积,并同时记录横截面积和压力的相关值。横截面积采用场梯度原理在11 - 102平方毫米范围内进行测量。压力使用尖端传感器在0 - 250厘米水柱范围内进行测量。横截面积测量的时间常数为0.02秒,压力测量的时间常数为0.007秒。使球囊达到最大和最小横截面积所需的压力分别为2.8和 -2.4厘米水柱。通过经直肠超声对五名志愿者尿道内放置探头后的形状进行了研究。结果表明,由球囊壁斜率或导管强制弯曲引起的测量误差不超过5%。该方法能够根据在明确解剖位置评估的零横截面积时的估计压力、弹性和应力松弛来描述男性尿道在静息状态下的生物力学特性,以及根据功和功率来描述在自主收缩状态下的生物力学特性。

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