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[The stellate ganglion blockade].

Stellate ganglion block is a selective sympathetic blockade affecting one side of the head and neck, and the upper extremity and upper part of the thorax on the same side. It is an important method of treating impaired vascular circulation, sympathetic reflex dystrophy, causalgia and herpes zoster in the area other indications, e.g. acute hearing loss and retinal arterial spasms, are still disputed. The anatomy of the cervical sympathetic chain, the technique used to achieve the block (paratracheal access) and tests of the effectiveness of stellate ganglion blockade are described. The side-effects and complications of the method and other means of sympathetic blockade are discussed. Patients need to be informed of the possible complications and the alternatives available before being asked to give informed consent.

Autonomic Nerve Block↗

Effects of alpha adrenergic blockade, combined nicotinic and muscarinic ganglion blockade and spinal anesthesia upon norepinephrine depression of ganglion transmission in the dog.

The effects of blocking agents upon the depression of transmission of the combined stellate and caudal cervical ganglia produced by the close intra-arterial injection of norepinephrine have been studied in the anesthetized dog. The results of this study showed that combined nicotinic and muscarinic ganglion blockade with chlorisondamine and atropine did not decrease the amount of norepinephrine-produced depression of transmission. This depression of ganglion transmission was converted to a stimulation by the close intra-arterial administration of the alpha adrenergic blocking drug phentolamine. Blockade of all preganglionic impulses by the production of total spinal anesthesia blocked the depression of ganglion transmission produced by norepinephrine and prevented the conversion of this depression to a stimulation by phentolamine. Phentolamine, when administered by close intra-arterial injection, produced a dose-dependent, prolonged stimulation of transmission through the ganglia. The results of this study infer that the norepinephrine depression of ganglion transmission is at some site other than the usual muscarinic and nicotinic ganglion pathways and that spinal pathways are involved.

Adrenergic alpha-Antagonists↗

Reduction of bladder contractility after alpha-adrenergic blockade and after ganglionic blockade.

Seven spinal cord injured patients were evaluated with cystometry bladder, electromyography, and pressure profiles of the external urethral sphincter before and after phenoxybenzamine administration. Seven more patients were evaluated before and after mecamylamine administration. Both drugs reduced the contractility of the bladder. The reduction of bladder contractility may reflect decreased sympathetic stimulation to the bladder. Bladder electric potentials reflect the intrinsic tone of the detrusor muscle.

Adult↗

Effect of ganglionic blockade on catecholamine secretion in exercised dogfish.

A brief bout of vigorous exercise results in significant increases in plasma epinephrine (E) and norepinephrine (NE) in the dogfish, Squalus acanthias. Since the presence of a functioning sympathetic nervous system in dogfish is in doubt, experiments were undertaken to show whether or not exercise-induced catecholamine (CA) secretion is under autonomic neurogenic control. Changes in plasma E and NE in a control group of exercised fish were compared with changes in fish exercised while under the influence of ganglionic blockade. Ganglionic blockade was induced in dogfish by hexamethonium infusion before exercise. CA secretion in response to a subsequent bout of exercise was significantly reduced without impairment of the ability of the fish to exercise. The pattern of systemic arterial pressure response to exercise and recovery (initial decrease during exercise followed by a prompt recovery to control level) was not significantly altered by ganglionic blockade. It is concluded that in dogfish some fraction of CA secretion capacity is possibly or potentially under neurogenically related control. Apparently the fraction of CA secretion under such control is not essential for performing exercise. The pattern of CA secretion accompanying the events of exercise and recovery in dogfish suggests that CA may play a more important role in recovery from exercise than in its performance.

Animals↗

[The hemodynamic effect of thoracic sympathetic ganglion blockade in the anesthetized adult mongrel dogs].

Hemodynamic alterations with the thoracic sympathetic ganglion blockade were elucidated in the anesthetized open-chest dogs, under controlled ventilation with 100% oxygen and receiving fentanyl, pentobarbital and pancuronium administration, and the effect of blockade was assessed by increase in skin-surface temperature at the specific regions of the upper extremity. All dogs with thoracic sympathetic ganglion blockade revealed the increased skin temperature in blocked extremities and decreased skin temperature in the contralateral side with simultaneous compensatory vasoconstriction ("Borrowing-Lending phenomenon"). Four groups were classified according to the side and range of blockade: A-group (right Th7.8 ganglion, N = 17), B-group (left-Th7.8 ganglion, N = 8), C-group (right Th2.3 ganglion, N = 13) and D-group (left-Th2.3 ganglion, N = 10). The hemodynamic variables after the middle thoracic sympathetic ganglion blockade showed no remarkable changes but heart-rate, mean arterial blood pressure and cardiac output decreased significantly with the upper right-side thoracic sympathetic ganglion blockade, and the inhibited circulatory state lasted twenty minutes after blockade. No significant skin temperature changes were observed after blockade among four groups. The results suggest that the patient after upper thoracic sympathetic ganglion blockade should be cared with these circulatory changes in mind.

Anesthesia, Inhalation↗

Vasoconstricting effect of vasopressin on regional vascular beds in conscious rats after ganglionic blockade.

We analyzed the vasoconstrictor effects of arginine vasopressin (AVP) on regional arteries before and after ganglionic blockade with hexamethonium. Simultaneous measurements of mean arterial pressure and regional flows were obtained in conscious rats, using chronically implanted electromagnetic flow probes. Regional vascular resistance was calculated as mean arterial pressure divided by regional flow. AVP was applied intravenously as a bolus, at doses ranging from 5 x 10(-11) to 5 x 10(-8) g/kg. AVP increased mean arterial pressure, decreased superior mesenteric, renal and terminal aortic flows (supplied mainly for the hindquarter vascular area), and increased superior mesenteric, renal and terminal aortic (hindquarter) resistances in a dose-dependent manner. Ganglionic blockade decreased mean arterial pressure and renal resistance significantly, whereas there were no significant differences between changes in resistance before and after ganglionic blockade in superior mesenteric or terminal aortic areas. This suggested the presence of basal sympathetic vasoconstrictor tone in the renal area. After ganglionic blockade, the pressor effect of AVP was enhanced significantly. The increase in renal resistance induced by AVP was augmented after ganglionic blockade, whereas increases in superior mesenteric or terminal aortic resistance remained unchanged following ganglionic blockade. Our data suggest that the vasoconstrictor effect of AVP on renal vascular area is reduced by a mechanism which inhibits renal sympathetic basal tone.

Animals↗

The effects of unilateral stellate ganglion blockade on human cardiac function during rest and exercise.

INTRODUCTION: Left-sided stellate ganglion predominance has been proposed as a mechanism responsible for lethal ventricular arrhythmias, due to heterogenous ventricular repolarization. To determine the cardiovascular effects of such asymmetric sympathetic ganglion innervation in man, studies were performed in 15 patients undergoing unilateral stellate ganglion blockade for the management of chronic arm pain. METHODS AND RESULTS: Standard 12-lead ECGs, systemic blood pressure, body surface potential mapping, and radionuclide angiography were performed during rest and graded exercise before and after blockade. Successful unilateral blockade was accomplished in 13 of the patients, 11 of whom had right-sided blockade and two left-sided blockade. No significant changes due to blockade of stellate ganglia, including QT intervals, were detected during rest or graded exercise in standard ECGs. No cardiac rhythm disturbances occurred in these states. Body surface potential maps and arterial blood pressure were similar during resting supine and upright positions, as well as immediately after exercise before and after blockade. Unilateral ganglionic blockade did not modify resting or exercise cardiac ejection fractions. CONCLUSION: Unilateral stellate blockade in man does not induce untoward cardiovascular effects during rest or exercise.

Adult↗

Ganglionic blockade improves neurologic outcome from incomplete ischemia in rats: partial reversal by exogenous catecholamines.

The authors investigated the effects of nitrous oxide (N2O), ganglionic blockade, and combined infusion of epinephrine and norepinephrine (0.1 microgram.kg-1.min-1 each) on neurologic outcome and brain histopathology in a model of incomplete cerebral ischemia in the rat. Thirty-eight Sprague-Dawley rats were assigned to one of four groups: group 1 (n = 10) received 70% N2O in O2; group 2 (n = 12) received 70% N2O in O2, plus ganglionic blockade; and group 3 (n = 10) received 70% N2O in O2, plus ganglionic blockade and catecholamine infusion. In groups 1-3, ischemia was produced by right carotid occlusion combined with hemorrhagic hypotension (35 mmHg) for 30 min. Group 4 (n = 6) received 70% N2O in O2 and hemorrhagic hypotension without carotid occlusion for 30 min. At the end of ischemic and nonischemic hypotension, the carotid artery was unclamped and the blood slowly reinfused. Neurologic outcome was evaluated for a 5-day period with a graded deficit score (0 = normal to 39 = stroke-related death). Brain histopathology was evaluated in coronal section at the level of the caudate nucleus according to a 6-point scale, from 0 = normal to 5 = total hemispheric infarction. Arterial blood gases, pH, and body temperature were kept constant in all groups. Compared to N2O alone (group 1), treatment with ganglionic blockade (group 2) decreased plasma catecholamines by 75% and significantly improved neurologic outcome from incomplete cerebral ischemia (P less than 0.05). Administration of exogenous epinephrine and norepinephrine in the presence of N2O and ganglionic blockade (group 3) worsened neurologic outcome compared to group 2 (P less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Clinical and physiologic evaluation of stellate ganglion blockade for complex regional pain syndrome type I.

OBJECTIVE: The efficacy of peripheral sympathetic interruption after stellate ganglion blockade was assessed by a sympathetic function test. Results were compared with clinical signs such as temperature changes, pain reduction, and the development of Horner syndrome to evaluate the correlation with clinical investigations. DESIGN: Stellate ganglion blockade with local anesthetics was carried out via an anterior paratracheal approach in 33 patients suffering from complex regional pain syndrome type I. Patients were examined before and after the procedure. For assessment of sympathetic nervous function, the vasoconstrictor response to sympathetic stimuli was assessed using laser Doppler flowmetry. Clinical parameters like surface temperature changes (thermography), pain relief (visual analogue scale), and Horner syndrome were monitored. RESULTS: Twenty-three (70%) of 33 patients developed an increase in temperature difference between the treated hand and the contralateral hand of more than 1.5 degreesC after the procedure, which is a clinical sign of sympathicolysis. In 48% (n = 11) of these patients, the sympathetic function test showed an undisturbed sympathetic nervous function. In 10 patients, no significant increase in temperature difference was observed. Although these patients presented with a normal sympathetic vasoconstrictor response, 4 felt pain relief of more than 50%, suggesting a placebo effect. Only 7 patients with pain relief revealed both clinical sympathicolysis and extinguished sympathetic nervous function and qualified for sympathetically maintained pain. CONCLUSIONS: Clinical investigation is not reliable in the assessment of stellate ganglion blockade. Proof of sympathetically maintained pain based on pain relief after stellate ganglion blockade is not conclusive.

Adult↗

Ganglionic blockade in conscious dogs with chronic caval constriction.

Chronic constriction of the thoracic inferior vena cava decreases venous return and cardiac output, increases the secretion of renin and aldosterone, and produces sodium retention with ascites and edema formation. The arterial pressure is maintained at normotensive levels in this caval model by an increase in total peripheral resistance. The objective of the present study was to compare renal and hemodynamic responses to ganglionic blockade in the conscious thoracic caval dog to responses obtained in another low-output model, the chronic sodium-deplete dog, and also to the responses obtained in the normal sodium-replete dog. The control base-line pressures averaged 103 +/- 2, 110 +/- 3, and 110 +/- 3 mmHg, respectively, in the sodium-replete, sodium-deplete, and thoracic caval dogs (P greater than 0.05). Ganglionic blockade in the conscious dog with caval constriction resulted in a sustained 20- to 30-mmHg fall in the arterial pressure; a sustained fall of 20 mmHg occurred in the sodium-deplete dogs. In contrast, ganglionic blockade failed to decrease the blood pressure at any time in the normal sodium-replete animals. Effective renal blood flow and creatinine clearance failed to demonstrate sustained changes after ganglionic blockade in any group of dogs; renal sodium excretion increased only in the normal sodium-replete dogs. These results suggest an enhanced contribution of the sympathetic nervous system to blood pressure maintenance in both the sodium-deplete and the caval dogs. Although the data fail to demonstrate an important contribution of the adrenergic system in the chronic sodium retention in these two experimental models, decreases in renal perfusion pressure may have blunted any potential natriuresis in these animals following ganglionic blockade.

Animals↗

[Celiac ganglion blockade: the effectiveness of CT guided percutaneous anterior approach].

PURPOSE: To investigate the effectiveness and safety of celiac ganglion blockade in cases with abdominal malignancies who are narcotic analgesic dependent for control of severe abdominal pain. MATERIALS AND METHODS: A total of 30 celiac ganglion blockades were performed in 27 patients between the ages of 19 and 75. A 22 G Chiba needle was placed through the percutaneous anterior approach into the celiac ganglion region under the guidance of CT, and 98% alcohol was administered. The procedure was repeated in three cases due to insufficient response. RESULTS: In 24 (88.8%) of the 27 cases, the severity of pain decreased. Total relief of the pain was achieved in 13 (48.1%) cases. In 9 (33.3%) cases pain was controlled with non-narcotic analgesics. In 2 (7.4%) cases, the dose of the narcotic analgesic decreased. There was no change in the severity of the pain in 3 (11.1%) cases. Transient complications were diarrhea in 4 (14.8%), hypotension in 6 (22.2%) cases and hemiparesis in one (3.7%) case. CONCLUSION: Celiac ganglion blockade through the percutaneous anterior approach under the guidance of CT should be preferred for the control of pain in the early periods in cases with abdominal malignancies, especially gastric and pancreatic, due to easy performance, safety, lower incidence of complications, high success rate and low cost.

Abdominal Neoplasms↗

Ganglion blockade does not prevent cortisol-induced hypertension in man.

1. The aim of the present study was to assess the effect of ganglion blockade on blood pressure in cortisol treated human subjects. 2. Four healthy male subjects were treated with cortisol 80 mg/day for a 5-day period. Ganglion blockade was achieved by intravenous trimethaphan. 3. Ganglion blockade did not significantly alter blood pressure in the pretreatment phase or on the last day of cortisol treatment. 4. Taken together with our previous observations that sympathetic activity is unaltered or reduced by cortisol, these results suggest that cortisol induced hypertension in humans is not a result of overactivity of the autonomic nervous system.

Autonomic Nervous System↗

Effect of the stellate ganglion blockade upon the electrical systole (Q-T interval) of the heart.

The effect of the Novocain blockade of the stellate ganglion upon the duration of the electrical systole (Q-T) of the heart was studied in 38 patients. Basic Q-T was normal in 17 patients; in these cases stellate ganglion blockade did not influence the Q-T interval. Of the 21 cases with Q-T prolongation, in 10 the Q-T interval became considerably shorter upon the effect of blockade. In the 11 cases that did not respond to the blockade, ECG repolarization was regular, and there was no arrhythmia. Of the 10 responsive cases with Q-T prolongation, in 9 the repolarization was pathological, and in 6 there was no chronic arrhythmia. The authors discuss the role of the sympathetic nervous system in certain forms of Q-T prolongation.

Adult↗

Effect of ganglion blockade on cerebrospinal fluid norepinephrine.

The source of norepinephrine (NE) in CSF has been unclear. It has been suggested that CSF NE indicates central neural noradrenergic tone and is determined differently from plasma NE. If CSF NE depended specifically on NE release in the CNS, then interference with ganglionic neurotransmission would be expected to decrease plasma NE but not CSF NE. Hypotension caused by ganglionic blockade might be expected to increase CSF NE reflexively. We infused the ganglion blocker, trimethaphan, intravenously into anesthetized dogs and measured the effects on mean arterial blood pressure (MAP) and on cisterna magna CSF levels of NE. The results were compared with those obtained on administration of saline, clonidine (2 micrograms/kg), yohimbine (0.25 mg/kg), or nitroprusside and with those obtained when hypotension during ganglion blockade was prevented by concurrent treatment with phenylephrine. Trimethaphan decreased MAP by 40%, arterial NE by 64%, and CSF NE by 61%. Nitroprusside administered intravenously to produce the same 40% depressor response increased arterial NE by 612% and CSF NE by 155%. Prevention of ganglion blockade-induced hypotension using phenylephrine did not prevent the decrease in CSF NE caused by trimethaphan, and when phenylephrine was discontinued, the resulting hypotension was not associated with increases in CSF NE. The similar decreases in plasma NE and CSF NE during ganglionic blockade, and the abolition of reflexive increases in CSF NE during hypotension in ganglion-blocked subjects, cast doubt on the hypothesis that CSF NE indicates central noradrenergic tone and are consistent instead with at least partial derivation of CSF NE from postganglionic sympathetic nerve endings.

Animals↗

Possible inadvertent subdural block following attempted stellate ganglion blockade.

A case is reported of suspected inadvertent subdural block following attempted stellate ganglion blockade for relief of cervicobrachial pain in a patient suffering from reflex sympathetic dystrophy. Possible complications due to neuraxial spread of local anaesthetics while performing a cervicothoracic ganglion blockade are considered.

Adult↗

Cerebral hemodynamics during the Valsalva maneuver: insights from ganglionic blockade.

BACKGROUND AND PURPOSE: The aim of this study was to differentiate the mechanical effects of the Valsalva maneuver (VM) from the effects of changes in autonomic neural activity on cerebral hemodynamics in humans. METHODS: Nine healthy subjects performed the VM before and after autonomic ganglionic blockade with trimethaphan. Blood pressure (BP) was measured in the radial artery with an indwelling catheter or at the finger by Finapres. Cerebral blood flow (CBF) velocity was measured in the middle cerebral artery with transcranial Doppler; end-tidal CO2 was measured by mass spectrometry. RESULTS: Before blockade, during phase II of the VM, BP was reduced by 27% and CBF velocity was reduced by 33% (magnitude of changes during phase II divided by baseline measurements before the VM, P<0.05). Cerebrovascular conductance index (CVCI) increased by 21%. During phase IV, overshoot of CBF velocity was proportionately greater than that of BP (46% versus 30%). After blockade, during phase II, BP fell to a much greater degree by 50%, while CBF velocity decreased even more by 60% associated with an increase in CVCI by 33%. During phase IV, despite the absence of BP overshoot, CBF velocity still increased by 55% and CVCI by 33%. Both were significantly greater than before blockade. CONCLUSIONS: After ganglionic blockade, cerebral autoregulation is unable to prevent the substantial fall in CBF induced by the marked reduction in BP during the VM. Enhanced phase IV increases in both CBF velocity and CVCI reflect the intrinsic characteristics of cerebral hyperemic responses, which are likely modified in part by the removal of vasoconstrictor effects of autonomic neural activity elicited during the VM.

Adult↗

An electrophysiological study of ganglion blockade by paraquat and diquat.

1. The bipyridilium herbicides, particularly paraquat, have chemical and toxicological features in common with the bi-quaternary ammonium ganglion blockers. 2. Paraquat and diquat were tested for ganglion blocking activity. Rabbit cervical ganglia were superfused with both agents and subsequently with hexamethonium to confirm susceptibility to ganglion blockade. 3. No evidence for ganglion blockade was found at either supra maximal or sub maximal stimulation, and none following repetitive stimulation. 4. The similarities and differences between the bipyridyl herbicides and bi-quaternary ganglion blockers can be explained on the basis of their structures. 5. It is concluded that neither paraquat nor diquat have significant ganglion blocking activity.

Animals↗

Cardiovascular effects of acute changes in extracellular ionized calcium concentration induced by citrate and CaCl2 infusions in conscious, chronically instrumented dogs and their interactions with ganglionic blockade.

To assess the hemodynamic effects of acute changes in extracellular ionized calcium concentration, [Ca2+], seven dogs were chronically instrumented to measure heart rate, aortic, left atrial, and left ventricular (LV) pressures, cardiac output, and coronary and renal blood flows. [Ca2+] was lowered 0.35 mmol.l-1 by citrate infusion and then increased 0.35 mmol.l-1 above control level by CaCl2 infusions. This protocol was performed in the conscious dogs with and without ganglionic blockade (chlorisondamine 2 mg.kg-1). LV dP/dtmax decreased at low [Ca2+] and increased at high [Ca2+] during all conditions. The other hemodynamic variables measured were only slightly changed by changing [Ca2+] without ganglionic blockade and surprisingly even less with ganglionic blockade. Therefore, the lesser hemodynamic effects induced by acute changes in [Ca2+] in the conscious compared with anesthetized dogs cannot be explained by the depressant effects of the anesthetics upon the autonomic nervous system. We have suggested that the binding of Mg2+ to citrate may be of importance for the minor hemodynamic effects in the conscious dogs.

Animals↗