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  • 2005-2009
  • 2000-2004  (2)
  • Anesthesia regional  (1)
  • Hydrograph separation  (1)
  • 1
    ISSN: 1279-8517
    Keywords: Lumbar plexus ; Intercostal nerves ; Anesthesia regional ; Paravertebral block
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Summary An injection of a local anesthetics in the paravertebral region produces an analgesic field on the same side of the body, a paravertebral block. One point in question about this block is whether the local anesthetic spreads from the thoracic to the lumbar level of the paravertebral region. The purpose of this study was to find how the anesthetic fluid traveled to the lumbar paravertebral region, if at all. Twelve cadavers were used in this study. 15 ml of crimson dye was injected into the paravertebral region at the 11th thoracic level. The viscerae were removed so that we could examine the dye spread. While the crimson dye spread in the endothoracic fascia posterior to the parietal pleura, it also spread downward in the fascia mostly along the splanchnic nerves. At the upper surface of the diaphragm the dye spread laterally in the fascia, and entered the abdominal cavity through the medial and lateral arcuate ligaments. In the abdominal cavity, the dye was found to have spread so widely in the transversalis fascia that the subcostal, iliohypogastric, ilioinguinal, genitofemoral, lateral femoral cutaneous and femoral nerves were involved. We concluded that the dye in the thoracic paravertebral region can enter the abdominal cavity through the medial and lateral arcuate ligaments. This study explained possible fluid communication between the thoracic and lumbar paravertebral regions and confirmed our former clinical observations. The result is important for the future clinical application of paravertebral anesthesia.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Limnology 1 (2000), S. 217-224 
    ISSN: 1439-863X
    Keywords: Key words Stable isotope ; Hydrograph separation ; Runoff component ; Flow path
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The hydrograph of a small drainage basin was separated into the components of direct runoff, soil water runoff, and ground water runoff, by a method using a stable isotope (18O and deuterium) to analyze its hydrological characteristics. It shows that the direct runoff consists of rainwater during the event, soil water runoff originating from the latest rainwater before the event, and groundwater runoff is a perfect mixture of rainwater brought to the catchment throughout the year. If these water masses constitute a triangle on a δD–δ18O diagram, they are independent of each other, and the separation gives a unique result. A comparison of the above results with the hydrograph separation in terms of the response time using a tank model led to an estimation of the flow path and dynamics of each runoff component. This study investigates the mixing process involved with these runoff components and, further, identifies physical properties to be observed in the field to provide for a more detailed analysis of the runoff process.
    Type of Medium: Electronic Resource
    Library Location Call Number Volume/Issue/Year Availability
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