首页   按字顺浏览 期刊浏览 卷期浏览 CEREBRAL AUTOREGULATION DURING WHOLE-BODY HYPOTHERMIA AND HYPERTHERMIA STIMULUS1
CEREBRAL AUTOREGULATION DURING WHOLE-BODY HYPOTHERMIA AND HYPERTHERMIA STIMULUS1

 

作者: Thorsten Doering,   Rune Aaslid,   Birgit Steuernagel,   Jürgen Brix,   Christina Niederstadt,   Alf Breull,   Berthold Schneider,   Gisela Fischer,  

 

期刊: American Journal of Physical Medicine and Rehabilitation  (OVID Available online 1999)
卷期: Volume 78, issue 1  

页码: 33-38

 

ISSN:0894-9115

 

年代: 1999

 

出版商: OVID

 

关键词: Cerebral Autoregulation;Autoregulation Index;Hyperthermic Stimulus;Hypothermic Stimulus

 

数据来源: OVID

 

摘要:

The purpose of the study contained herein was to investigate the effects of old traditional physiotherapeutic treatments on cerebral autoregulation. Treatment consisted of complete body immersion in cold or warm water baths. Fifteen volunteers were investigated by means of transcranial Doppler sonography and a servo-controlled noninvasive device for blood pressure measuring. One group of 8 volunteers (mean age, 27.2 ± 3.5 yr; gender, 3 females/5 males) was subjected to cold baths of 22°C for 20 min Another group of 7 volunteers (mean age, 52.1 ± 8.5 yr; gender, 4 females/3 males) took hyperthermic baths at rising water temperatures from 36° to 42°C, increased by 1°C every 5 min. Each volunteer in both groups underwent autoregulation tests two to four times before, during, and after the thermic bath. Dynamic autoregulation was measured by the response of cerebral blood flow velocity to a transient decrease of the mean arterial blood pressure, induced by rapid deflation of thigh cuffs. The autoregulation index, i.e., a measure of the speed of change of cerebral autoregulation, was used to quantify the response. Further parameters were core temperature, blood pressure (mm Hg) and CO2et. During hypothermic baths, core temperature decreased by 0.3°C (P= 0.001), measured between preliminary phase and the end of the bath; the autoregulation index decreased significantly (P< 0.05) from 5.3 before the bath to 4.25 during the bath. During hyperthermic baths, the autoregulation index increased from 6.0 to 7.5 and 8.9 (P< 0.001), with an increase of core temperature of 0.4°C. The main cerebral autoregulation system is dependent on changes of core temperature, provoked by hypothermic or hyperthermic whole-body thermostimulus. Application of hyperthermic baths increased the autoregulation index, and hypothermic baths decreased the autoregulation index. Further studies are needed to prove the positive effects of thermo-stimulating water applications on cerebral hemodynamics in patients with cerebral diseases.

 



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