Finding studies
Finding studies
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Lead
Zagazig University
Post-Dural puncture headache (PDPH) is a well-known common devastating complication of subarachnoid block. Despite the decreasing incidences of PDPH over the last years due to the advancement in the design and smaller size of spinal needles, PDPH remains to be a common complication in post-partum patients. Female gender, typically pregnant females, young age, low body mass index, dilutional anemia, and the preference of neuraxial anesthesia for Cesarean Section renders obstetric patients to be more exposed to PDPH. Consequently, treating this complication is of paramount importance in obstetric anesthesia. The cause of PDPH is not entirely known but there is a considerable evidence support the explanation of the low cerebrospinal fluid (CSF) pressure resulting from continuous CSF leak through the tear in meninges that exceeds the CSF production rate as a main cause of PDPH. As little as 10% CSF volume loss could induce PDPH from the traction on the pain sensitive intracranial structures in the upright position combined with reflex vasodilatation. Several treatment options have been proposed which are usually consisting of bed rest in supine position, fluid therapy, analgesics, sumatriptan and caffeine. Epidural blood patch remained the gold standard therapy but it is an invasive technique. Dexmedetomidine (Dex) is a highly selective centrally acting α2-adrenoreceptor agonist that produces cooperative sedation, anxiolysis, and analgesia with minimal respiratory depression. Moreover it was found to attenuate the stress and inflammatory response to anesthetic and surgical procedures. Stimulation of α2-receptors in substantia gelatinosa of the dorsal horn leads to suppression of nociceptive neurons firing and inhibition of substance-P release also, its stimulation in the locus coeruleus area which is known to be a significant nociceptive transmission modulator terminates pain signals transmission resulting in analgesia. Additionally, an existing literature supports that Dex decreases cerebral blood flow (CBF) in humans and animals secondary to cerebrovascular vasoconstriction. Thus, the use of Dex might be a useful adjunct in certain situations that require cerebral vasoconstriction together with analgesia such as PDPH. The present study will be undertaken to test this hypothesis.
Age
21–40
Sex
FEMALE
Healthy volunteers
Not accepted
