Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “SYMPATHECTOMY”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 937 records · Page 52Linked to original sources

Effects of sympathectomy and nitric oxide synthase inhibition on vascular actions of insulin in humans.

Insulin exerts cardiovascular actions by stimulating nitric oxide (NO) release and sympathetic neural outflow. It is unclear, however, whether insulin stimulates muscle blood flow (and NO release) by a direct action at the vasculature and/or by stimulating neural vasodilator mechanisms. In these studies we used patients with regional sympathectomy to examine the vascular actions of insulin in the presence and absence of sympathetic vasoconstrictor and vasodilator innervation. A 2-hour insulin (6 pmol/kg per minute)/glucose clamp increased muscle blood flow in both innervated and denervated limbs by roughly 40% (P<0.01 versus baseline for both limbs). The vasodilation reached its maximum within the first 30 to 45 minutes of insulin/glucose infusion in sympathetically denervated limbs, but only at the end of the infusion in innervated limbs (P<0. 01, denervated versus innervated limb). Infusion of a NO synthase inhibitor (N(G)-monomethyl-L-arginine [L-NMMA]) increased baseline arterial pressure, abolished the vasodilation in the denervated limb, and led to a significant additional increase in arterial pressure during the clamp, but did not alter whole body glucose uptake. Our data indicate that insulin stimulates blood flow in sympathectomized limbs by a direct action at the vasculature. This effect is mediated by stimulation of NO release and appears to be masked by the sympathetic vasoconstrictor tone in innervated limbs.

Adult↗

Pulmonary functional abnormalities after upper dorsal sympathectomy.

Pulmonary function tests were performed in a group of 15 patients before and 1 to 3 months after upper dorsal sympathectomy. Significant decreases in all compartments of lung volume and maximal expiratory flows were found. Serial studies in 3 patients showed improvement after 6 to 8 months.

Adolescent↗

Single-stage lumbar sympathectomy and omentopexy: a new surgical approach towards patients with Buerger's disease.

Single-stage lumbar sympathectomyand omentopexy were performed in six patients with Buerger's disease at the Department of Surgery, Jawahar Lal Nehru Medical College and Hospital, Ajmer, India, between January 1994 and December 1996. All were male smokers and had limb coldness, intermittent claudication and rest pain. Four had limb discoloration and three had ulcers of toes unresponsive to medical treatment. Postoperatively there was relief of symptoms in all, with improvement of tissue oxygen saturation and increase in claudication distance. We conclude that single-stage lumbar sympathectomy and omentopexy is an effective new surgical approach towards patients with Buerger's disease.

Adult↗

Cardiovascular collapse caused by carbon dioxide insufflation during one-lung anaesthesia for thoracoscopic dorsal sympathectomy.

Carbon dioxide insufflation into the pleural space during one-lung anaesthesia for thoracoscopic surgery is used in some centres to improve surgical access, even though this practice has been associated with well-described cardiovascular compromise. The present report is of a 35-year-old woman undergoing thoracoscopic left dorsal sympathectomy for hyperhidrosis. During one-lung anaesthesia the insufflation of carbon dioxide into the non-ventilated hemithorax for approximately 60 seconds, using a pressure-limited gas inflow, was accompanied by profound bradycardia and hypotension that resolved promptly with the release of the gas. Possible mechanisms for the cardiovascular collapse are discussed, and the role of carbon dioxide insufflation as a means of expediting lung collapse for procedures performed using single-lung ventilation is questioned.

Adult↗

Assessment of sympathectomy--the skin potential response.

Objective assessment of the results of surgical sympathectomy and sympathetic block (both temporary and permanent) are not widely practised. This article comments briefly on the available methods, and describes the use of the abolition of the skin potential response (formerly known as the psychogalvanic reflex) to assess the abolition of sympathetic function. This method of assessment has proved useful in clinical practice.

Galvanic Skin Response↗

Continuous light exposure and sympathectomy suppress circadian rhythm of blood pressure in rats.

BACKGROUND: Although the 24-hour rhythm in blood pressure is well known, it is not clear how environmental light controls circadian cardiovascular and behavioral rhythms. METHODS AND RESULTS: The prolonged exposure of Wistar rats to continuous light for 17 weeks, beginning at 5 weeks old, induced a complete suppression of their blood pressure, heart rate, spontaneous locomotor activity, and body temperature circadian rhythms. Daily subcutaneous melatonin injections at the theoretical onset of darkness for 21 days could not restore light-suppressed blood pressure circadian rhythm, whereas it partially synchronized heart rate and body temperature rhythms and it fully restored spontaneous locomotor activity rhythms, as measured by radiotelemetry. The transfer of these rats from constant light to a standard 12:12-hour light/dark photoperiod fully restored circadian rhythmicity within 2 to 5 days, although their 24-hour diastolic blood pressure remained elevated. Synchronized rats were then subjected to superior cervical ganglionectomy (SCGx) and 6-hydroxydopamine sympathectomy (SYMPx). SCGx plus SYMPx completely abolished the circadian rhythm in blood pressure and significantly reduced those in heart rate, spontaneous locomotor activity, and body temperature. CONCLUSIONS: We conclude that in Wistar rats exposed to continuous light, the light-induced increase in sympathetic outflow can suppress blood pressure circadian rhythm, and sustained cardiac wall stress can alter diastolic function at rest. Preserved inotropy in these conditions must result from an adaptative hypertrophic response of myocytes.

Animals↗

Axillary sympathectomy for upper extremities.

Among the several various surgical approaches to the cervico-dorsal sympathetic system, the axillary approach seems to us the operation of choice. The operation is simple, gives excellent access to the required sympathetic ganglions, including the lower part of the stellate ganglion, down to the fifth thoracic ganglion. In all cases the sympathectomy was clinically complete. The postoperative course was mostly smooth, and the few cases of transient Horner's Syndrome, pneumothorax and hemothorax could have been avoided.

Adolescent↗

Sequential cerebrospinal fluid and plasma sampling in humans: 24-hour melatonin measurements in normal subjects and after peripheral sympathectomy.

Simultaneous measurements of plasma and cerebrospinal fluid (CSF) melatonin and urinary excretion of 6-hydroxymelatonin were performed in four normal volunteers and one patient before and after upper thoracic sympathectomy for the control of essential hyperhidrosis. For normal individuals, hourly 24-h melatonin concentrations in plasma and CSF exhibited similar profiles, with low levels during the day and high levels at night. Peak plasma levels varied from 122-660 pmol/L, and the peak CSF levels from 94-355 pmol/L. The onset of the nocturnal increase in melatonin did not occur at the same time for each individual. Urinary 6-hydroxymelatonin levels also exhibited a daily rhythm, with peak excretion at night. The individual with the lowest nocturnal levels of circulating melatonin also had the lowest excretion of 6-hydroxymelatonin. In the patient with hyperhidrosis, a prominent melatonin rhythm was observed preoperatively in the CSF and plasma. After bilateral T1-T2 ganglionectomy, however, melatonin levels were markedly reduced, and the diurnal rhythm was abolished. These results provide direct evidence in humans for a diurnal melatonin rhythm in CSF and plasma as well as regulation of this rhythm by sympathetic innervation.

Adult↗

Isoflurane-induced splanchnic sympathectomy.

To ascertain whether isoflurane produces a peripheral splanchnic sympathectomy as compared to fentanyl or pentobarbital anesthesia, 12 mongrel dogs (30-45 kg) were allocated randomly to one of three anesthetic test groups, tracheally intubated, surgically prepared, and subjected to unilateral electrical stimulation of the greater splanchnic nerve. Anesthetically, Group 1 animals (n = 4) received pentobarbital, Group 2 animals (n = 4) were administered fentanyl, and Group 3 animals (n = 4) received isoflurane. Stimulation continued for 90 min. Each second of stimulation consisted of 20 stimuli of 0.5 minimum alveolar anesthetic concentration duration and 5 V intensity, delivered during a 0.2-s interval, followed by an 0.8-s pause. To assess splanchnic sympathetic responses, mean arterial blood pressure, heart rate, pulmonary artery diastolic, cardiac output, adrenal blood flow, adrenal and arterial norepinephrine (N) and epinephrine (E) were obtained before and at 5, 10, 15, 30, 45, 60, and 90 min during stimulation. In Group 1 animals (pentobarbital), electrical stimulation elicited marked increases in mean arterial blood pressure, pulmonary artery diastolic, and cardiac output (P < 0.001). Examination of the adrenal effluent, which was exteriorized from the animal during the protocol, revealed that adrenal blood flow, adrenal vein N and E concentrations dramatically increased (P < 0.0001). Arterial N and E concentrations remained unchanged. Results of Group 2 animals (fentanyl) were similar to those of Group 1; mean arterial blood pressure, pulmonary artery diastolic, and cardiac output increased (P < 0.005). Adrenal blood flow, adrenal vein N and E increased dramatically (P < 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Electrophysiological aid in high thoracic sympathectomy for palmar hyperhidrosis.

High upper thoracic sympathectomy using microsurgical techniques aided by electrical stimulation of the sympathetic chain is described. Use of the microscope facilitates identification and dissection of the sympathetic chain and minimizes the risk of pleural damage. Electrical stimulation of the sympathetic chain establishes the correct functional level for surgical excision. At the correct level, the threshold for piloerection, sudomotor response, and decrease in blood flow of the ipsilateral hand to electrical stimulation was minimal, and a six-fold increase in stimulus current causing current spread was required to dilate the ipsilateral pupil. After identification of the proper level, surgical excision can be done without risking postoperative Horner's syndrome. Excision of the appropriate ganglia and intervening sympathetic chain with placement of surgical clips on the proximal and distal nerve stumps provides tissue for histological analysis, decreases the opportunity for regeneration, and facilitates localization on postoperative x-rays.

Electric Stimulation↗

The influence of chronic sympathectomy on cutaneous blood flow in the rat tail.

Tail blood flow (TBF) in the rat markedly increases during sympathetic withdrawal such as hyperthermia or lumbar sympathetic blockade. However, a long-term alteration of TBF after chronic sympathetic denervation is not well understood. In the present study, TBF following lumbar sympathectomy (LSX) was observed to ascertain whether subsequent changes in TBF occur in the absence of the sympathetic nervous activity in the rat tail. Assessed by recording tail and rectal temperature, the LSX immediately caused an increase in TBF. TBF was gradually decreased along with time and returned to the sham operated (SO) control level within 4 days. About a week after the surgery, a rapid increase in TBF in response to whole body heating was almost abolished in denervated animals. Neither hexamethonium (20 mg/kg, i.v.) for ganglion blockade nor intra-arterial infusion of alpha-receptor antagonist, phentolamine (10, 100 microg) produced vasodilation in LSX animals. Nitroprusside, a donor of nitric oxide, produced an increase in TBF in both LSX and SO animals. These results indicate that the tail vasculature after LSX constricts with capability to be vasodilated independent of sympathetic reinnervation. Quantification of the tail vascular mRNA expression by reverse transcriptase-polymerase chain reaction showed less endothelial nitric oxide synthetase in LSX group than that in SO group whereas endothelin-1 was not significantly different in both groups. It is suggested that functional changes in tail vascular endothelium takes at least a part in the reduction in TBF after LSX.

Animals↗

Current practice in thoracic sympathectomy.

Thoracic sympathectomy has been performed for many years. With the recent development of video assisted thoracic surgical techniques the indications for surgery have increased, and the outcome is much better.

Humans↗

Endoscopic sympathectomy in the treatment of facial blushing.

INTRODUCTION: Bilateral endoscopic thoracic sympathectomy (BETS) has been shown to be an effective, permanent, and safe treatment for severe upper limb hyperhydrosis. More recently, the possibility of using BETS to treat facial blushing, a redness of the face bought on by emotional or social stress, has been raised. This followed incidental reports from patients of relief from their blushing following this procedure for hyperhydrosis. At King's College Hospital, 120 patients underwent BETS over a 3-year period for both upper limb hyperhydrosis and facial blushing. In this study we report our results in relation to facial blushing. PATIENTS AND METHODS: The outcome was evaluated by questionnaire and symptoms assessed using the visual analogue scale. Questions on postoperative complications and overall quality of life were included. RESULTS: A total of 80 patients responded to our questionnaire of whom 59 (74%) experienced facial blushing. In 12 patients, this was their only symptom. Severity of facial blushing was reduced from a mean score of 78 before operation to 26 after BETS (P < 0.001); 29% reported complete resolution of their facial blushing. There was no mortality or conversion to open surgery. Quality of life was reported to be much better in 63% of facial blushers following the procedure. CONCLUSIONS: This study demonstrates both a statistically significant reduction in severity of facial blushing as well as a clear improvement in quality of life following a safe procedure with few complication rates. Facial blushing can, therefore, be considered as an indication for BETS on its own merit when not associated with hyperhydrosis.

Adolescent↗

Pulmonary functional abnormalities after upper dorsal sympathectomy. A comparison between the supraclavicular and transaxillary approaches.

Results of pulmonary function studies were compared in two groups of 12 patients each, in whom upper dorsal sympethectomy was performed by the supraclavicular or by the transaxillary approach. Patients were evaluated clinically, radiologically and functionally before operation and again three weeks, three months and six months after denervation. Findings suggest that an increase in small airway resistance concomitant with some degree of pneumoconstriction occurred after upper dorsal sympathectomy by both routes. Musclar transection and possible phrenic nerve retraction damage due to the operative procedure could not be the cause of the above abnormalities because the inspiratory and expiratory forces, inspiratory peak flow and diaphragmatic movement were not significantly reduced after operation by both approaches. However, in a few cases, extrapleural hematomas, segmental atelectasis and relaxation of the daiphrgm could have contributed to the loss of the lung volume. This was evident only in the early period and was obvious in the transaxillary approach group.

Adult↗

Anti-asialo GM1 antibodies prevents guanethidine-induced sympathectomy in athymic rats.

Guanethidine sulphate induces destruction of peripheral sympathetic neurons and infiltration of mononuclear cells in rat sympathetic ganglia. The effect of guanethidine is believed to be an autoimmune reaction. In order to determine the effect of anti-asialo GM1, an antibody that binds to the glycolipid asialo GM1 expressed on rodent natural killer cells, athymic Lewis rats received guanethidine 40 mg/kg i.p. daily from day 1 to 14 and anti-asialo GM1 i.p. 1 mg/rat on day -2, 0, 2, 6, and 10 in the study period. Saline and anti-asialo GM1 were given alone in the same doses as control. The number of neurons in the sympathetic ganglia were counted and the ganglionic volume determined. The presence of natural killer cells in the ganglia were determined by immunohistochemical methods. Our results shows that anti-asialo GM1 can prevent guanethidine-induced reduction of sympathetic neurons, but not prevent the initiation of an immunological reaction in the ganglia. Natural killer cells could only be identified in ganglia following guanethidine treatment alone. It is concluded that anti-asialo GM1 treatment can prevent the guanethidine-induced sympathectomy by eliminating the natural killer cells from the ganglia.

Animals↗

Cardiac post-junctional alpha 1- and beta-adrenoceptors: effects of chronic chemical sympathectomy with 6-hydroxydopamine.

Alpha 1- and beta-adrenoceptor responsiveness and binding have been examined in cardiac tissues removed from guinea-pigs pretreated with 6-hydroxydopamine (6-OHDA) for 3 weeks. Results were compared with control tissues from sham-injected animals. Chemical sympathectomy with 6-OHDA resulted in an increase in the sensitivity of postjunctional beta-adrenoceptor-mediated responses to isoprenaline. No such increase was observed for the alpha 1-adrenoceptor-mediated responses to methoxamine. The increase in beta-adrenergic responsiveness was accompanied by a significant (P less than 0.05) 52% increase in the number of [3H]-dihydroalprenolol binding sites with no change in binding affinity. [3H]-Prazosin binding was not affected by pretreatment with 6-OHDA. The results suggest that cardiac beta- but not alpha 1-adrenergic responsiveness is regulated by the sympathetic innervation.

Animals↗