"Sympathectomy is a technique about which we have limited knowledge, applied to disorders about which we have little understanding." Associate Professor Robert Boas, Faculty of Pain Medicine of the Australasian College of Anaesthetists and the Royal College of Anaesthetists

http://www.pfizer.no/templates/Page____886.aspx

No significant change in tissue blood flow after sympathectomy

Lumbar sympathectomy is widely used in the treatment of peripheral vascular disease involving the lower extremity. The obvious increase in skin temperature postoperatively has led to the belief that there is a concommitant increase in perfusion of all tissues in the leg. 

Recent evidence suggests that this increase in total blood flow represents, in the main, arteriovenous shunting with a little, if any effect on the nutritive blood flow at the tissue level. Studies aimed at investigating the effect of lumbar sympathectomy on regional tissue circulation have utilized the local clearance of radioactive isotopes. No significant change in the clearance of these substances in muscle have been noted following lumbar sympathectomy in man.
Tissue Blood Flow in the Canine Lower Limb Following Lumbar SympathectomyVASC ENDOVASCULAR SURG November 1972 6227-238,

increased blood supply is associated with decreased vascular permeability

The influence of the sympathetic nervous system on capillary permeability was studied in cats. The dye penetration from the blood through the synovial membrane was tested by perfusing the two knee joints, one of which was deprived of its sympathetic nerve supply by unilateral lumbosacral
sympathectomy.
In confirmation of previous experiments, it was found in a great majority of experiments that, in spite of marked vasodilatation, the dye excretion was considerably reduced on the sympathectomised side.
A permeability factor under the influence of the sympathetic nervous system has been postulated; its character and mechanism is still unknown.
Further unpublished experiments seem to support the view that increased blood supply is associated with decreased vascular permeability.
Res Exp Med (Berl) 173, 1--8 (1978)

The effect of cervical sympathectomy on retinal vessel responses to systemic autonomic stimulation

The retinal vessel calibre responses to systemic sympathetic stimulation, were studied in nine patients (eight male; mean age: 31.7 years; range: 19-58 years) with unilateral disruption of their cervical sympathetic tract. All patients had ipsilateral decreased/absent facial sweating and a Horners syndrome, evidence of unilateral sympathetic denervation. Both eyes of each patient were studied and the results were analysed in two groups: the group of nine sympathectomised eyes and the control group of unaffected fellow eyes. During handgrip contraction there was a significant difference in the mean retinal arteriolar constriction (mean +/- SEM) between the group of sympathectomised eyes (4.6 +/- 0.89%) and control eyes (7.1 +/- 1.13%), p less than 0.01. Similarly, there was a significant difference in mean venule constriction during sustained handgrip contraction between the group of sympathectomised eyes (1.5 +/- 0.67%) and control eyes (4.9 +/- 0.98%), p less than 0.05. There was no significant difference in the mean rise in diastolic blood pressure between the two groups: control eyes +27.9 +/- 2.38 mmHg and sympathectomised eyes +27.8 +/- 2.25 mmHg. There was no correlation between the blood pressure and retinal vessel responses in either group. These results suggest that the sympathetic nervous system plays an integral role in retinal blood flow regulation.
http://www.ncbi.nlm.nih.gov/pubmed/2323469

GUSTATORY SWEATING AND OTHER RESPONSES AFTER SYMPATHECTOMY


Gustatory sweating on the head, neck and arms, often occurs after cervico-thoracic sympathectomy. Haxton (1948) reported an incidence of 36 percent, the same as in the present series. It was thought that some information about regeneration in the cervical sympathetic might be revealed by investigation of this surgical curiosity.
Although sweating is the common gustatory response after cervical sympathectomy, other changes are experienced. Haxton (1948) described associated paresthesia and flushing, gooseflesh may occur (Herxheimer, 1958) and vaso-constriction is reported in this paper. These occur together or separately and occasionally sweating might be absent. The subject has been confused by comparison with post-parotidectomy gustatory sweating which has a different mechanism (Glaister et al.,1958; Bloor, 1958).

Sweating is produced by cholinergic sympathetic fibres. In normal individuals both vasocontriction and gooseflesh are adrenergic. This also holds in gustatory responses.  Figure 2 shows blocking of sweating by atropine, whilst gooseflesh continues unchanged.
   The tingling sensations were described as bing unlike normal sensation, and likened to plucking out of hair. In one patient in was so unpleasant that she refused to take a test stimulus. Flushing usually occurs on the upper chest and neck, and is an erythema with sharp demarcation, not associated with a rise in skin temperature.
   Of the patients, 29 were found to have gustatory responses, and 24 were studied in detail. Of 22 patients with sweating who could be studied, 11 had gooseflesh, 10 tingling, 6 flushing, and 4 vasoconstriction. Four patients, however, had no sweating and their gustator responses consisted of gooseflesh and tingling in one, tingling alone, and flushing in two. None of these four showed vasoconstriction.
   The stimulus for testing used was usually Worcester sauce, but specificity of the response was sometimes great, and one patient reacted only to boiled sweets made by one particular firm.

http://brain.oxfordjournals.org/content/92/1/137.extract   &
http://ang.sagepub.com/content/17/3/143.extract

cervical sympathectomy works systemically through hypothalamus endocrine system

Background: To investigate the general action of stellate ganglion block (SGB), we examined the effects of heat stimulation and cold stress on the behavior and stress hormone of the bilateral cervical sympathectomy rats as a long-term and repeated SGB model. Methods: Wistar's male rats were divided into three groups: control (C), sham operation (S) and sympathectomy (Sx) groups. After 2 weeks, two experiments were done. One was measurement of escape response time from the heat stimulus and the other was hormone measurement. Serum adreno-corticotropic hormone (ACTH), .ALPHA.-melanocyte stimulating hormone (.ALPHA.-MSH) and .BETA.-endorphine (.BETA.-END) levels were measured assigning 3 groups to 2 subgroups with and without cold stress. Results: Escape response time was significantly extended in the Sx group. ACTH in the Sx group was significantly higher than in other groups, but changes of ACTH by cold stress were similar in 3 groups. In the Sx group .ALPHA.-MSH was hardly changed by cold stress while .ALPHA.-MSH was significantly decreased in the S group. Changes of .BETA.-END by cold stress were similar in the S and Sx groups. Conclusions: These results suggest that SGB works systemically through hypothalamus endocrine system and affects stress hormone differently. (author abst.)

http://sciencelinks.jp/j-east/article/200402/000020040204A0020288.php

The cerebral vessels became hypersensitive to epinephrine after cervical sympathectomy

The cerebral vessels became hypersensitive to epinephrine after cervical sympathectomy.
HERTZMAN, A. B., AND DILLON, J. B.
Annual Review of Physiology
Vol. 4: 187-214 (Volume publication date March 1942)

Nerve regeneration commonly occurs following both surgical of chemical ablation

This systematic review found only one small study (20 participants) of good methodological quality, which reported no significant difference between surgical and chemical sympathectomy for relieving neuropathic pain. Potentially serious complications of sympathectomy are well documented in the literature, and one (neuralgia) occurred in this study.
The practice of sympathectomy for treating neuropathic pain is based on very weak evidence. Furthermore, complications of the procedure may be significant.

http://www2.cochrane.org/reviews/en/ab002918.html

This is a Cochrane review abstract and plain language summary, prepared and maintained by The Cochrane Collaboration, currently published in The Cochrane Database of Systematic Reviews 2011 Issue 3, Copyright © 2011 The Cochrane Collaboration. Published by John Wiley and Sons, Ltd.. The full text of the review is available inThe Cochrane Library (ISSN 1464-780X).

decreased brain metabolism, rather than an increased intracranial pressure, is the cause of decreased cerebral blood flow after superior cervical sympathetic ganglionectomy

"The reduced brain metabolism and consequently reduced cerebral perfusion in the late 
postsympathectomy period could account for reduction in CSF production (Bering3)."

"In support of the above statement we mention that on the late postsympathectomy (11 to 24 months) group of dogs besides the lowered CBF 
(31.36 ml/100 gm brain weight/minute) and MCP (79.3 mm NS) also a lowered MVP (46.5 mm NS) was found. These data indicate that cervicalsympathectomy has a profound and intricate effect on the dynamics of cerebrovascular fluids and probably, in the background of all observedphenomena, a decreased cerebral metabolism as a sympathectomy effect is the underlying cause. Correspondingly the cerebral metabolic rate ofoxygen (CMR O2) decreased to 2.94 and 2.43 ml of O2/IOO gm brain weight/ minute in the sympathectomized groups." 


"Decreased brain metabolism, rather than an increased intracranial pressure, is the cause of decreased cerebral blood flow after superior 
cervical sympathetic ganglionectomy."
http://archsurg.ama-assn.org/cgi/content/summary/90/3/418

Surgical Denervation of Ocular Sympathetic Afferents Decreases Local Transforming Growth Factor-β and Abolishes Immune Privilege

Mounting evidence points to a role for the sympathetic nervous system in suppressing inflammation. This role might be of specific relevance for immune privilege in the eye, where, sporadically, patients with denervated sympathetic fibers develop chronic inflammation.

Our results show that in the absence of functional sympathetic fibers, the eye loses its ability to prevent either the immune rejection of intraocular allogeneic tumor cells or the suppression of delayed type hypersensitivity responses against soluble antigens injected in the anterior chamber. This loss of immune privilege is accompanied by a decrease in the concentration of transforming growth factor-β in the aqueous humor. These results suggest that immune privilege is lost in the absence of a functional sympathetic innervation of the eye, allowing intraocular immune responses to become exaggerated. We conclude that ocular sympathetic nerves are critical for the generation and maintenance of immune privilege in the eye through the facilitation of local transforming growth factor-β production.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2731140/

Chemical sympathectomy leads to lowering of aqueous humor production


Volume 200, Number 3223-226DOI: 10.1007/BF01028537

Cervical sympathectomy causes photoreceptor-specific cell death in the rat retina

Changes in the regulation of the vasculature of the eye may be related to some age-related ocular diseases. We have previously shown that loss of sympathetic innervation, as can normally occur with age, resulted in substantial vascular growth of the choroid. The current study was designed to determine whether changes induced by sympathetic denervation causes significant loss of photoreceptors and increased glial cell reactivity in the retina. Sympathetic denervation was performed followed by immunohistochemistry, TUNEL staining, and protein expression analysis to investigate photoreceptor loss. There was a significant reduction (30%) in photoreceptor numbers in the sympathectomized eye. This loss was due to apoptosis, as there was over a doubling in apoptotic cell numbers after sympathectomy. This loss of photoreceptors in the sympathectomized eye resulted in a significantly reduced width of the outer nuclear layer of the retina when compared to the contralateral eye. Increased glial fibrillary acidic protein (GFAP) staining was also noted after sympathectomy in the ganglion cell layer with streaking toward the bipolar cell layer. These results suggest that loss of sympathetic innervation may cause significant changes to the physiology of the choroid.


Autonomic Neuroscience
Volume 120, Issues 1-2, 15 June 2005, Pages 46-51 

morphological changes in the retina noted after sympathectomy

Results: Mice treated with PDGF inhibitor AG 1296 showed an inhibition of corneal neovascularization and a reduction of pericytes in the new formed vessels compared to untreated animals. 

Retina from sympathectomized eyes receiving saline treatment had significantly  reduced PEDF mRNA and protein expression relative to the contralateral eye receiving saline treatment. These results are similar to previous work and indicate that injection alone did not alter the results. Intravitreal PEDF administration to sympathectomized eyes returned both mRNA and protein levels to those of the contralateral eye. PEDF administration also normalized retinal morphometry to prevent the sympathectomy-induced increases 
in capillary density of the outer plexiform layers, as well as the ganglion cell layer. 

Conclusions: These results suggest that one injection of PEDF can restore protein and mRNA 
levels to those noted in an untreated animal. Furthermore, these results also indicate that 
one injection of PEDF can reverse the morphological changes noted after sympathectomy 
in the retina. 
CR:  J.J. Steinle,  B.L. Lashbrook,

files.abstractsonline.com/SUPT/25/1421/SessionPDF/119.pdf

Secondary Effects of Sympathectomy - Disturbance of Sexual Function

If a portion of the autonomic nervous system is removed to modify a specific disease process, unrelated physiologic mechanisms will also be affected. The degree to which these other mechanisms may be affected often governs the selection of operative procedures. The results produced by interfering with mechanisms other than those for which the operation is performed might be designated as side-effects or secondary effects. . . .
N Engl J Med 1951; 245:121-130July 26, 1951
http://www.nejm.org/doi/full/10.1056/NEJM195107262450401

We disagree that surgery and botulinum toxin are treatments of choice in severe cases of hyperhidrosis

The truth is exactly the opposite. Surgery is only rarely necessary, and the editorial quite properly warns of numerous surgical pitfalls, which include recurrence of hyperhidrosis, almost certain impotence, compensatory sweating, permanent neurological damage from anoxia, and death (their words). Botulinum toxin, which they recommend for axillary or plantar hyperhidrosis, requires 12 injections per axilla and 24-36 injections per foot. Even this horrendous procedure gives only 11 months' relief, and antibody formation may reduce long term efficiency.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1118569/

Iontophoresis should be tried before other treatments

Iontophoresis is easy to perform, effective in about 90% of patients in two studies with 54 and 30 participants, free of hazardous side effects, and well accepted by almost all patients.
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1118569/

the Kuntz nerve played no part in the success or failure of ETS surgery

If you research the topic of ETS, you will come across various claims and counter-claims
about the importance or otherwise of the Kuntz nerve. The Kuntz nerve is a small nerve
fibre sometimes seen on the second rib not far from the main sympathetic chain. Its
function is not known in humans. Some web-sites on ETS claim success rates of up to
100% for facial blushing because they search for and destroy the Kuntz nerve(s). These
same people also claim to be able to correct failed ETS operations by reoperating and
destroying the Kuntz nerve.
At the meeting of the International Society for Sympathetic Surgery in Germany, May
2003, attended by a majority of the world’s experts in ETS surgery (including us), all but
one of the surgeons present were of the opinion that the Kuntz nerve played no part in the
success or failure of ETS surgery for facial blushing. We share this majority opinion.
www.lapsurgeryaustralia.com.au

Fake websites in the service of the ETS industry - who protects the patients?

Mia:
Many surgeons compete with each other for the attention of the 'costumer' in the saturated market of the www. Adaptations to a business model raises ethical questions that should have been explored long ago and should have raised the ire of the medical community. The occasional whimper of discord is silenced by the cacophony of (ignorant) enthusiasm. Not quite the scientific behavior one would expect.

How does the entrepreneurial aspect of medicine impact on the information patients are given? In the area of elective procedures, is it in the interest of the service provider to provide full disclosure? Does self-interest influence and modify how the information is conveyed? How information morphs into little facts and more emoting, to appeal to the irrational in all of us, to seduce us.

Fake websites that pretend to be independent,  informative, with the sole raison d'etre to praise the surgeon's skill, expertise and experience, - and to hook the patient into reading more on the surgeons' website, with many obvious links to the surgeon on every page.
Why are predatory practices of medical professionals tolerated?

In 70 % compensatory sweating severe, recurrence rates were 15% and 19% at 1 and 2 years after surgery

In T2 and T3 resection, all patients experienced Compensatory Sweating and over 70% of the patients felt it was severe. Even in T2 resection, 90% of patients experienced CS and in 50% of these it was severe. High rates of CS are reported in Asian countries with hot and humid climates.

In T2 resection, recurrence rates were 15% and 19% at 1 and 2 years after surgery.It was not rare for a patient to experience recurrence more than 3 years after surgery.
Motoki Yano, MD, PhD and Yoshitaka Fujii, MD, PhD
Journal Home
Volume 138, Issue 1, Pages 40-45 (July 2005)

a strong association of autonomic dysfunction and impaired cerebral autoregulation

Furthermore, we found a strong association of autonomic dysfunction and impaired autoregulation indicated by a correlation between the LF/HF ratio and Sx (p < 0.001).

Drug and Alcohol Dependence

Volume 110, Issue 3, 1 August 2010, Pages 240-246

After sympathectomy for hyperhidrosis, very severe discomfort and hyperhidrosis occurred with alarming frequency and intensity

"After thoracoscopic sympathectomy for hyperhidrosis, very severe discomfort and hyperhidrosis in the neighboring non-sympathectomized regions occurred with alarming frequency and intensity."
(p.879)

Cousins and Bridenbaugh's Neural Blockade in Clinical Anesthesia and Pain Medicine by Michael J Cousins, Phillip O Bridenbaugh, Daniel B Carr, and Terese T Horlocker
Wolters Kluwer Health
Edition: 4 - 2008

Sympathectomy is one of the causes or Orthostatic Hypotension

Causes of Orthostatic Hypotension

Peripheral

Amyloidosis

Diabetic, alcoholic, or nutritional neuropathy

Familial dysautonomia (Riley-Day syndrome)

Guillain-Barré syndrome

Paraneoplastic syndromes

Pure autonomic failure (formerly called idiopathic orthostatic hypotension)

Surgical sympathectomy

http://www.merckmanuals.com/professional/sec07/ch069/ch069d.html

cervical ganglionectomy produces a significant reduction in the noradrenergic innervation of ip- silateral extraparenchymal arteries

Immediately following experimentation the cerebral vessels were examined
for the presence of noradrenergic fibers. The results of the study demonstrate that:
(1) superior cervical ganglionectomy produces a significant reduction in the noradrenergic innervation of ipsilateral extraparenchymal arteries;
(2) the peripheral sympathetic nervous system contributes to overall cerebral vascular resistance primarily by affecting resistance in extraparenchymal arteries; and
(3) as a result, it determines the contribution of the extraparenchymal arteries tooverall cerebral blood flow autoregulation.
1975;6;284-292 Stroke

interrupting sympathetic efferent fibers innervating the heart and baroreflex

The results suggest that cardiac sympathectomy induced by epidural anesthesia can suppress partially baroreceptor function by interrupting sympathetic efferent fibers innervating the heart during high levels of epidural anesthesia, but that lumbar sympathectomy during epidural anesthesia is unlikely to affect baroreceptor activity.
Baroreflex control of heart rate during cardiac sympathectomy by epidural anesthesia in lightly anesthetized humans.

Dohi S, Tsuchida H, Mayumi T
Anesth Analg 1983; 62:815-20.

Baroreflex sensitivity, measured as cardiac acceleration in response to nitroglycerin, was significantly lower (p < style="font-weight: bold;">The results suggest that baroreflex-mediated response to decreases in arterial pressure is dependent on the integrity of the sympathetic nervous system.

Baroreflex control of heart rate during high thoracic epidural anaesthesia. A randomised clinical trial on anaesthetised humans.
Goertz A, Heinrich H, Seeling W
Anaesthesia 1992; 47:984-7.

Other causes of autonomic dysfunction: sympathectomy

Patients with progressive autonomic dysfunction (including diabetes) have little or no increase in plasma noradrenaline and this correlates with their orthostatic intolerance (Bannister, Sever and Gross, 1977). In patients with pure autonomic failure, basal levels of noradrenaline are lower than in normal subjects (Polinsky, 1988). Similar low values are observed in patients with sympathectomy and in patients with tetraplegia. (p.51)

The finger wrinkling response is abolished by upper thoracic sympathectomy. The test is also abnormal in some patients with diabetic autonomic dysfunction, the Guillan-Barre syndrome and other peripheral sympathetic dysfunction in limbs. (p.46)

Other causes of autonomic dysfunction without neurological signs include medications, acute autonomic failure, endocrine disease, surgical sympathectomy . (p.100)

Anhidrosis is the usual effect of destruction of sympathetic supply to the face. However about 35% of patients with sympathetic devervation of the face, acessory fibres (reaching the face through the trigeminal system) become hyperactive and hyperhidrosis occurs, occasionally causing the interesting phenomenon of alternating hyperhidrosis and Horner's Syndrome (Ottomo and Heimburger, 1980). (p.159)

Disorders of the Autonomic Nervous System
By David Robertson, Italo Biaggioni
Edition: illustrated
Published by Informa Health Care, 1995
ISBN 3718651467, 9783718651467

bradycardia and other cardiac complications are common side effects?

The most common side effects of sympathectomy are compensatory sweating, gustatory sweating and cardiac changes including decreasing heart rate, systolic-diastolic and mean arterial pressure. The mechanism of bradycardia and other cardiac complications that develop after thoracic sympathectomy are still unclear.

http://tipbilimleri.turkiyeklinikleri.com/abstract_54802.html

"It is a lie that sympatholysis may specifically cure patients

with unqulified "reflex sympathetic dystrophy". This was already stated by the father of sympathectomy, Rene Leriche, more than half a century ago.
...it is not an error. but a lie. While conceptual errors are not only forgivable, but natural to inexact medical science, lies, particularly when entrepreneurially inspired are condemnable and call for a peer intervention.

J. Neurology (1999) 246: 875-879

Lack of disclosure to ETS patients is unethical and would be criminal in a just society

It is the doctor's moral and ethical duty to provide you with full and honest disclosure of the facts prior to surgery. The whole doctrine of informed consent is to prevent patients from having to realize they made a mistake in hindsight. You shouldn't have had to find out from a former patient's wife that the surgery would cause drenching sweating on your back. It was Garza's job to do that. He completely lied to you regarding the supposed reversibility. Anyone who goes through medical school knows that can't crush a nerve with a metal clamp, remove it later and have the nerve return to normal functioning.

Although it is not possible to predict exactly what will occur in each individual case, there is nearly 100 years of published scientific and medical research available on the effects of sympathectomy. That research paints a very different picture of the effects of this surgery than the one presented to patients considering this surgery. That's the issue. Generally, they lie and tell patients that CS is inconsequential in all but a tiny fraction of cases and simply fail to disclose a huge number of verified adverse effects of the surgery. They take advantage of the patient's ignorance on medical matter. It's unethical and would be criminal in a just society.

In short, you do have a way of knowing what will likely occur as a result of the surgery before you have it done. All the information necessary to make an informed decision exists. It's just not getting to patients.

http://etsandreversals.yuku.com/reply/22927/Would-you-do-it-again#reply-22927

Surgical sympathectomy listed as neurologic disorder

Other neurologic disorders
- Idiopathic orthostatic hypotension
- Multiple sclerosis
- Parkinsonism
- Posterior fossa tumor
- Shy-Drager syndrome
- Spinal cord injury with paraplegia
- Surgical sympathectomy
- Syringomyelia
- Syringobulbia
- Tabes dorsales (syphillis)
- Wernicke's encephalopathy
Dizziness: Classification and Pathophysiology
The Journal of Manual and Manipulative Therapy, Vol. 12, No 4 (2004)

Sympathectomy induces adrenergic excitability of cutaneous C-fiber nociceptors

1: J Neurophysiol. 1996 Jan;75(1):514-7.

nerve damage causes an inflammatory response

Damage to peripheral nerves often results in pain and hyperalgesia. We suggest that nerve damage causes an inflammatory response in which cells associated with the nerve release inflammatory mediators such as
eicosanoids; these mediators may contribute to the hyperalgesia which results from nerve injury. The cell types most likely to be responsible include macrophages and postganglionic sympathetic neurones.
http://www.springerlink.com/content/pjh3832058475340/
D. J. Tracey1 J. S. Walker1
School of Anatomy, University of New South Wales, 2052 Sydney, NSW, Australia

The brain and the immune system are the two major adaptive systems of the body. During an immune response the brain and the immune system “talk to each other” and this process is essential for maintaining homeostasis. Two major pathway systems are involved in this cross-talk: the hypothalamic-pituitary-adrenal (HPA) axis and the sympathetic nervous system (SNS). This overview focuses on the role of SNS in neuroimmune interactions, an area that has received much less attention than the role of HPA axis. Evidence accumulated over the last 20 years suggests that norepinephrine (NE) fulfills the criteria for neurotransmitter/neuromodulator in lymphoid organs.
http://pharmrev.aspetjournals.org/content/52/4/595.abstract

82.9% Were Disturbed Because CS Was More Than Expected

Endoscopic thoracic sympathectomy (ETS) for palmar hyperhidrosis was performed using a 3-mm small endoscope at our hospital, and we conducted a questionnaire for the purpose of studying the conditions and satisfaction after surgery. The subjects were comprised of 50 patients, of which 35 patients (75%) answered the survey. The average age of the respondents was 27 years old (range: 12?62 years old) including 13 males and 22 females and the average postoperative observation period was 33 months (1?114 months). The results showed the good effects of surgery in all of the patients for palmar sweating while patient satisfaction was 79.4 points, which concluded that ETS was sufficiently accepted as treatment for palmar hyperhidrosis. However, compensatory sweating (CS) developed in 97.1% of the patients, and 82.9% answered that they were disturbed because it was more than they had expected. This result makes us realize further the importance of preoperative informed consent for CS. The problem of palmar hyperhidrosis is very serious for patients, and hence it is important to give treatment with a thorough understanding of the effectiveness and problems of ETS for palmar hyperhidrosis according to the analytical results of this questionnaire.

http://ci.nii.ac.jp/naid/110006980508/en

Safety and Ethics in Healthcare

"...professionals may adopt unreasonable practices. Practices may develop in professions, particularly as to disclosure, not because they serve the interests of the clients, but because they protect the interests or convenience of members of the profession. The court has an obligation to scrutinize professional practices to ensure that they accord with the standard of reasonableness imposed by the law."

Incresingly, the question is not whether the defendant's conduct conforms with the practices of the profession, but whether it conforms with standards of reasonableness. (p. 150)

"The right of patients self-determination is well entrenched both in law and in ethical codes. Respect for patient autonomy now occupies centre stage in medical ethics. In considering patient autonomy one needs to think about truth telling, confidentiality, privacy, disclosure of information and consent. Each is important and all have important implications for healthcare professionals." (p. 167)

Safety and Ethics in Healthcare: A Guide to Getting it Right, By Bill Runciman, Alan Merry

Published by Ashgate Publishing, Ltd., 2007

Effect of cervical sympathectomy and circulatory hypoxia on time course of prostaglandin concentration in brain tissues

http://www.springerlink.c...ontent/j705306763158841/


Some workers suggest a possible "transmembrane" role of PG in the nervous system.


If the increase in the PG level during ischemia is regarded as a protective reaction, it must be admitted that no increase took place 1 day after CSE (cervical sympathectomy) and it was considerably weakened 7-40 days after CSE.


The effect of cerebral ischemia was virtually indistinguishable from the action of CSE itself.


It can be tentatively suggested that PGF plays the main role in the regulation of tone of the vascular wall and in the regulation of metabolism under conditions of ischemia when the sympathetic regulation is disturbed.