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The effect of quadriceps femoris muscle strengthening exercises on spasticity in children with cerebral palsy.

BACKGROUND AND PURPOSE: The Bobath neurodevelopmental treatment approach advised against the use of resistive exercise, as proponents felt that increased effort would increase spasticity. The purpose of this study was to test the premise that the performance of exercises with maximum efforts will increase spasticity in people with cerebral palsy (CP). Spasticity, in the present study, was defined as a velocity-dependent hyperexcitability of the muscle stretch reflex. SUBJECTS: Twenty-four subjects with the spastic diplegic form of CP (mean age=11.4 years, SD=3.0, range=7-17) and 12 subjects without known neurological impairments (mean age=11.6 years, SD=3.5, range=7-17) were assessed. METHODS: Knee muscle spasticity was assessed bilaterally using the pendulum test to elicit a stretch reflex immediately before and after 3 different forms of right quadriceps femoris muscle exercise (isometric, isotonic, and isokinetic) during a single bout of exercise training. Pendulum test outcome measures were: (1) first swing excursion, (2) number of lower leg oscillations, and (3) duration of the oscillations. RESULTS: There were no changes in spasticity following exercise between the 2 groups of subjects. DISCUSSION AND CONCLUSION: These results do not support the premise that exercises with maximum efforts increase spasticity in people with CP.

Adolescent↗

Botulinum neurotoxin intramuscular chemodenervation. Role in the management of spastic hypertonia and related motor disorders.

There is a range of interventions available in the management of spastic hypertonia among patients with central nervous system injury. Many of these treatment options can be used concurrently with great effectiveness. Although manifestations of spastic hypertonia vary from patient to patient, they usually are not limited to one site. Nevertheless, problematic spastic muscle overactivity may be localized to one or more specific extremities, and these may be referred to as examples of focal dysfunctional spasticity. Botulinum neurotoxin (BTX) intramuscular chemodenervation procedures are an important therapeutic technique in focal spasticity management. Magnitude and duration of response varies with successful selection and localization of targeted muscles, spasticity severity, BTX dosage, and chosen functional goals. In focal dysfunctional spasticity and related motor disorders, BTX injections have demonstrated efficacy and safety when performed by clinicians familiar with the agent, regional anatomy, the specific condition, and patient being treated.

Anti-Dyskinesia Agents↗

The role of botulinum toxin a in the management of lower limb spasticity in patients with cerebral palsy.

This study aimed to determine the effects of botulinum toxin-A (btA) on spasticity in children with cerebral palsy (CP). Thirty-five children with spastic CP were evaluated. The injection group consisted of 25 patients who were injected with btA and received conventional physical therapy. The control group consisted of 10 patients who were treated with conventional physical therapy only. In the injection group, btA was applied to the lower extremity spastic muscles at a total dose of 8-10 lU/kg. Spasticity was measured by the Ashworth scale. Gait function was evaluated by clinical gait assessment in all patients and temporal distance factors in 16 patients. All the parameters were recorded before treatment, after three days and after one month of therapy. Following injection of btA, significant improvement in all parameters was observed. No statistically significant progression was noted in the control group except clinical gait analysis scores. Comparing the three-day and one-month measurements of spasticity of the two groups, statistically significant results were obtained in favour of the injection group in all parameters except for clinical gait analysis scores. The findings of this study showed btA injection to be an effective treatment for reducing spasticity and improving gait function in patients with spastic CP

Adolescent↗

[Interest of anesthetic blocks for assessment of the spastic patient. A series of 815 motor blocks].

BACKGROUND: The purpose of the study was to emphasize the value of anesthetic blocks in the approach to the spastic patient. The report relates our experience concerning 566 patients (ranging in age from 4 to 72 years, mean 48 years) tested by 815 motor blocks performed within a "spasticity and dystonia evaluation" unit. The spasticity was mainly due to stroke (56%), cerebral palsy (21%) and traumatic brain injury (14%). METHODS: Motor blocks were performed with standardized procedure (specific needle, neurostimulator, localization technique), analytic and functional assessment. RESULTS: The anesthetic was mostly 1% non-adrenalized etidocaine, chosen for its onset and duration of action. Re-injections were few and side effects exceptional. Quality and motor blocks results were technique-dependent and required patient cooperation. The spasticity disappeared in blocked muscles. Tardieu and Ashworth modified scale showed constantly decreased spasticity (2 to 3 points) with better sensitivity for the Tardieu modified score. Local anesthetic blocks determined the relative contributions of overactivity and of muscle shortening in the generation of the pathologic posture, the muscle or muscles responsible for the spastic pattern and the level of active performance of the antagonistic muscle. New stability was evaluated by functional assessment of gait posture and prehension. CONCLUSION: At the present time, anesthetic motor blocks represent a necessary and decisive stage procedure as regards spastic patient assessment. This method is particularly useful to anticipate a new functional balance and simulate treatment. Motor blocks provide acute knowledge of the pathological pattern and a better adjustment of therapeutic directions.

Adolescent↗

[Peripheral neurotomies for the treatment of focal spasticity of the limbs].

Introduced by Stoffel in 1912 for the treatment of spastic equinus foot, selective fascicular neurotomy consists in a partial section of the motor collaterals of the muscles presenting excessive spasticity. This peripheral surgery for spasticity is based on two main concepts: 1) Spinal reflexes and muscles are heterogeneous and have a regional organization depending on their role during normal movements. This is the physiological base of focal spasticity and peripheral treatment. 2) There is a differential re-innervation after a partial section, leading to motor recovery without spindles reinnervation (therefore without spasticity). Before performing neurotomies, a careful clinical assessment is required: what kind of spasticity? For what kind of goal (functional or comfort)? The surgery effects can be mimicked by motor nerve blocks (anesthetic drugs) to give to the patient an idea of the expected result. There are many neurotomies, depending on the clinical status, either in the lower or the upper limb. The most frequent is tibial neurotomy for spastic equinus foot.

History, 20th Century↗

Flexor reflex for assessment of common interneurone activity in spasticity.

The purpose of this investigation was to evaluate the alterations of flexor reflex parameters in spasticity and the possibilities to take advantage of them as a method for assessment of common interneurone activity. Clinical and electromyographical examinations were performed on 120 patients with spastic hemiparesis after stroke. The flexor reflex was obtained after supramaximal electrostimulation of the tibial nerve behind the ankle. The stimulus consisted of 50 msec train of 1 msec duration pulses given at 100 Hz. The reflex activity was recorded from the tibialis anterior muscle. As all patients were with hemiparesis the healthy side was used as a control. The patients were subdivided into four groups, each treated with different myorelaxants (Baclofen, Sirdalud, Myolastan and electroacupuncture). After about 25 days treatment the clinical and electromyographic examinations were repeated. The flexor reflex was recorded with two clearly distinguishable responses on the healthy, as well as on the spastic side. On the spastic side a reflex with prolonged latencies and durations, as well as with decreased amplitudes and thresholds of both reflex responses was found. On the spastic side the first reflex response had higher threshold than the second one, while on the healthy side it was vice versa. Moderate correlations were found between most of the reflex parameters. No correlations were found between the reflex parameters and the degree of spasticity. Only after Baclofen treatment all reflex parameters tended to normalized. After treatment with Myolastan, Sirdalud and electroacupuncture only the second response's duration shortened. In conclusion the flexor reflex is a sensitive method for assessment of altered common interneurone activity in spasticity.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Change of stretch reflex threshold in spasticity: effect of botulinum toxin injections.

Spasticity is a disorder of hypertonus associated with neurological diseases, characterized by a decrease in stretch reflex threshold. Stretch reflex threshold of wrist flexors has been recorded in subjects affected by forearm spasticity due to acute neurological lesions, occurred from one to sixty-one months before. In all the subjects a decreased stretch reflex threshold was recorded and a negative correlation between stretch reflex threshold and time of the disease resulted. In five subjects affected by mild spasticity the velocity stretch reflex threshold was tested one-three months after stroke and then six months later. In three cases a further decrease in stretch reflex threshold was recorded. Sixteen subjects affected by heavy forearm spasticity (quantified by Ashworth scale), were treated with Botulinum toxin injections to reduce spasticity. Fourteen of 16 subjects were responsive to the antispastic therapy: a decrease of at least 1 point in the Ashworth scale was detected after the treatment. In all the responsive cases an increase of stretch reflex threshold was recorded. The results confirm that the stretch reflex threshold is decreased in spastic muscles; it decreases progressively in time after the acute lesion. In addition, these results demonstrate that the decreased stretch reflex threshold can be reversed with Botulinum toxin injections. It is known that Botulinum toxin reduce the presynaptic release of Acetylcholine of neuromuscular synapses, but there are experimental evidences that it acts even on spindle's fibres, decreasing the sensitivity of intrafusal muscle fibres. This effect explains how Botulinum toxin increases the stretch reflex threshold in spastic muscles.

Action Potentials↗

[Rhizotomy for children with severe spastic cerebral palsy].

INTRODUCTION: Severe spasticity is a limiting factor for motor development in children with spastic cerebral palsy. Botulinum toxin, intrathecal baclofen and peroral baclofen all reduce spasticity but might also limit improvements in functional development over time. In the selective dorsal or posterior rhizotomy (SDR) approach, afferent sensory nerve fibers are cut while efferent motor fibers are preserved. In this way spasticity is reduced and motor functions can improve. SDR is an established treatment method, and the first Danish study is reported. MATERIAL AND METHODS: Twenty Danish children with severe spastic cerebral palsy were evaluated, operated on and trained over a 10-year period from 1992 to 2002. Those on whom operation was performed ranged from 4 to 16 years of age (median 8 years), and training and follow-up took place during the ensuing 60 months. At time of operation, 20-40% of 100-120 dorsal root filaments were cut, corresponding to the II-V lumbar and I-II sacral nerve roots. RESULTS: Spasticity in the lower extremities measured before SDR showed an average Asworth score of 2.0-4.2 (median 3.1). Eighteen months after SDR, scores were 0.8-1.8 (median 1.0), and at 60 months 0.8-1.8 (median 1.0). Both post-operative values were significant (t-test, p < 0.001). Mobility improved over a longer period of time: the Illinois St. Louis scale values before SDR were 1-9 (median 6), while at 18 months post-operative they were 1-9 (median 5) and at 60 months post-operative 1-9 (median 4). At 18 months, scores were non-significant (t test, p > 0.05), but at 60 months they were significant (t < 0.05). According to the Montgomery scale, 4 children had worse post-operative scores and 12 children had better scores. When comparing age at operation with outcome, we observed a certain degree of concordance between relatively younger age and better post-operative muscular function (Pearson's r = 0.8). CONCLUSION: SDR resulted in early and lasting reduction in spasticity in all 20 children operated upon. Improved muscular function, however, required training and time. Not until 60 months after operation were functional measures significantly better than the preoperative values.

Adolescent↗

The guidelines for the diagnosis and treatment of spasticity.

Spasticity is a predominant clinical sign appearing in different neurological diseases. It is always flanked by various degrees of muscle weakness. The clinical evaluation of a spastic patient is score according to varius internationally approved evaluation scales (Ashworth scale, muscle spasms scale, and FIM disability scale). The treatment of spasticity is mostly a symptomatic treatment aimed to relief muscle hypertonus thus increasing both motor performance and improving nursing. Many molecules are frequently being used orally with poor results or with the onset of undesired side effects. In fact oral baclofen, diazepam and tizanidine often have poor effect on spasticity and bring frequently to the appearance of undesired side effects caused by the concentration of these molecule at the brain level. Intrathecal baclofen is a good option to treat diffuse spasticity through the infusion of baclofen into the spinal CSF space. When baclofen is administered intrathecally at the spinal level it distributes with a concentration-gradient between caudal and rostral level of the spine that was calculated as 4:1 thus avoiding its concentration at the brain level when given at a therapeutical dosage. This fact avoids any undesired side effect due to the action of baclofen at the brain level. Botulinum toxin as well as peripheral neurotomies are very helpful in those cases in whom spasticity is mainly restricted to few muscular groups. A correct flow-chart to diagnose and treat the patient is mandatory to achieve the best results for each patient according to his spasticity and residual motor ability.

Baclofen↗

Physiologic and pharmacologic approaches to spasticity.

The term spasticity is used to describe many relatively unrelated syndromes and, because they share few common pathophysiologic mechanisms, it is not possible to define the physiology or pharmacology of spasticity. In patients with spastic paresis, it is the latter negative symptom (rather than the spasticity) that accounts for almost all the functional disability. Clinical neurophysiologic techniques are useful for categorization of patients with clinically identical syndromes into subgroups which respond to different therapies. Fusimotor or spindle primary afferent hyperactivity have not been demonstrated in spastic patients; reduction in central inhibitory mechanisms probably accounts for spastic hyper-reflexia. Increased passive muscle stiffness may also be clinically significant. Therapies for spasticity include elimination of causative or enhancing factors, frequent muscle stretching, surgical approaches and chemotherapy. The latter includes dantrolene (which weakens muscles), baclofen (particularly useful for reduction of flexor spasms and flexor dystonia in patients with spinal lesions) and diazepam.

Animals↗

Dorsal myelotomy for relief of spasticity in spinal injury patients.

Seven male patients, five complete quadriplegic and two complete high thoracic paraplegic, were treated by dorsal longitudinal myelotomy to relieve intractable spasticity of the lower extremities. All had intact neurogenic bladders before surgery. All patients had initial relief of spasticity but had recurrence of spasticity in varying degrees at two to three months postoperation. One patient had repeat myelotomy with similar results. One patient had successful relief of spasticity but lost neurogenic bladder function. Three patients required surgical releases of spastic contractures after surgery. Only one patient was satisfied with the procedure but required additional procedures for relief of spasticity. None of the procedures was considered successful. Dorsal longitudinal myelotomy is not successful in the treatment of spasticity in the spinal-injured patient.

Adult↗

The quantitative measurement of spasticity: effect of cutaneous electrical stimulation.

The goal of this research was to determine if cutaneous electrotherapy would temporarily reduce muscle spasticity. Five traumatically brain injured (TBI) and five spinal cord injured (SCI) subjects, all with clinically evident spasticity, received surface electrical stimulation over the tibialis anterior muscle. Using the Spasticity Measurement System, stiffness around the ankle was measured before, immediately after, and 24 hours after treatment. With stimulation, ipsilateral ankle viscoelastic stiffness immediately decreased in 9 of 10 subjects and remained significantly depressed for up to 24 hours. Contralateral ankle spasticity did not significantly change. Using the same subjects under sham conditions, no significant decrements in spasticity occurred. In a subjective survey, only SCI participants reported functionally evident spasticity reductions. Also within this subgroup, efficacy of treatment was directly proportional to the severity of pre-stimulation clonus. We conclude that (1) cutaneous electrotherapy transiently decreases both TBI and SCI related spasticity and (2) pre-stimulation clonus may function as a clinical indicator of SCI patients most likely to benefit from this process.

Adult↗

Glycine receptors in the retinas of normal and spastic mutant mice.

PURPOSE: Spastic mutant mice have abnormal gait and righting behavior, and the responses of their retinal ganglion cells have recently been shown to be abnormal. The former defects have been linked to a reduction of glycine-receptor density in the spinal cord of spastic mutants, but the cause of the retinal defects has not yet been determined. The authors thus tested for reduced glycine-receptor density in the mutant retina by comparing the levels of glycine receptors in the retinas of spastic mutant mice with those found in normal mice. METHODS: Indirect immunofluorescence histochemistry was employed, using monoclonal antibodies directed against the alpha- and beta-subunits of the receptor and against the 93-kd cytoplasmic receptor-associated protein, gephyrin. RESULTS: In normal mice, all glycine-receptor antibodies labeled two laminae of the inner plexiform layer (IPL): a broad band in the distal third of the IPL and a narrow band in the middle of the IPL. Lighter labeling was also seen in the outer plexiform layer with these antibodies. In spastic mutant mice, the glycine-receptor labeling of the IPL was reduced markedly. However, the overall structure of the spastic mutant retina was not disrupted because the distribution and intensity of both a presynaptic marker (synaptophysin) and a marker for the rod bipolar cell (protein kinase C) in the mutant retina were indistinguishable from those in normal retinas. CONCLUSIONS: The glycine-receptor distribution in normal mice was consistent with that previously reported for the rat and with the distribution of glycine responsiveness of dissociated rodent bipolar cells. The reduced levels of glycine receptors in spastic mice help explain the abnormal ganglion cell responses in the spastic mutant.

Animals↗

Spasticity. Mechanisms and nursing care.

Spasticity is a motor dysfunction affecting persons with an UMN injury in varying ways. Nurses can identify spasticity in their patients by the presence of hyperactive DTRs and hypertonicity (increased muscle tone). Other characteristics often present with spasticity are clonus and spasms. Spasticity interfering with recreation, work, or basic activities of daily living may be decreased through the use of a variety of nursing interventions. Some of these interventions are more advantageous for spasticity caused by brain injury, whereas others are more helpful for spasticity caused by the spinal cord injury. Interventions research has begun; however, more research needs to be done to identify the most effective nursing measures to decrease spasticity.

Brain Injuries↗

[Selective peripheral neurotomy of the hamstring branches of the sciatic nerve in the treatment of spastic flexion of the knee. Apropos of a series of 11 patients].

BACKGROUND: A series of 11 patients (9 adults and 2 children) were operated on by selective peripheral neurotomy for spastic knee in flexion. The objective of surgery was to restore bipodal stance and therefore walking for the adult patients and to improve walking for the diplegic children. METHODS: Spasticity was secondary to stroke or cranial trauma for the adult patients. The two children presented with Little disease. The delay between onset and surgery was on the average of 2 years. All the patients had a passive flexum of the knee of 20 degrees, and an excessive spasticity of the hamstrings (average Held score of 4.55). Peripheral selective neurotomies consist of a partial section of the spastic muscle's motor fascicles. The partial section concerns the afferent fibers to the spinal cord whose interruption leads to the disappearance of spasticity. The section also involves the motoneurones' axons and thus leads to partial denervation. RESULTS: The spasticity of the treated muscles disappeared in the 11 patients. Average follow-up was 16 months. The neurotomies led to improvement of walking without splint for 3 walking patients, and restored walking with a splint for 5 patients. One patient failed to walk. The two children had a dramatic improvement of their walk. CONCLUSION: Our results incite us to increasingly indicate this type of neurotomy in the treatment of the spastic lower limb.

Adolescent↗

Botulinum treatment for post-stroke spasticity: low dose regime.

The purpose of this study was to investigate the effects of botulinum A toxin for the treatment of post-stroke spasticity patients. Twenty two post-stroke spasticity patients were recruited in the study. All patients had moderate to severe spasticity of upper and lower extremities. Botulinum toxin was injected intramuscularly according to the spasticity pattern. Injections were performed at either 2, 3, or 6 month intervals as determined by the neurologist. The total dose of each session of injection varied between 50-100 IU. Subjective and objective examinations were conducted by the physiotherapist prior to the first injection and subsequently at 1st week, 2nd week and every month after each injection. All patients were asked subjectively about their satisfaction with the treatment. The objective examinations used in this study were Ashworth scale and Fugl-Meyer Sensorimotor Assessment Form. All patients were satisfied with the treatment. Marked reduction of the spasticity was found after one to two weeks of injection. The duration of effectiveness of botulinum toxin for spasticity is from 3-6 months. The average improvement in Ashworth score was between 1 and 1.5 points. The Fugl-Meyer scores showed significant improvement in most patients for the motor function of upper and lower extremities, and balance. All patients demonstrated increase in passive range of joint motion and decrease in joint pain. This study demonstrates that botulinum toxin therapy is safe and effective in treating chronic upper and lower extremities' spasticity following stroke. The dosage used in this study is about one-half of the recommended dosage in the literature. The only drawback of this therapy is its high cost (300 US dollars for 100 I.U.).

Adult↗

Traditional pharmacological treatments for spasticity. Part I: Local treatments.

Spasticity is a velocity-dependent increase in stretch reflex activity. It is one of the forms of muscle overactivity that may affect patients with damage to the central nervous system. Spasticity monitoring is relevant to function because the degree of spasticity may reflect the intensity of other disabling types of muscle overactivity, such as unwanted antagonistic co-contractions, permanent muscle activity in the absence of any stretch or volitional command (spastic dystonia), or inappropriate responses to cutaneous or vegetative inputs. In addition, spasticity, like other muscle overactivity, can cause muscle shortening, which is another significant source of disability. Finally, spasticity is the only form of muscle overactivity easily quantifiable at the bedside. Under the name pharmacological treatments of spasticity, we understand the use of agents designed to reduce all types of muscle overactivity, by reducing excitability of motor pathways, at the level of the central nervous system, the neuromuscular junctions, or the muscle. Pharmacologic treatment should be an adjunct to muscle lengthening and training of antagonists. Localized muscle overactivity of specific muscle groups is often seen in a number of common pathologies, including stroke and traumatic brain injury. In these cases, we favor the use of local treatments in those muscles where overactivity is most disabling, by injection into muscle (neuromuscular block) or close to the nerve supplying the muscle (perineural block). Two types of local agents have been used in addition to the newly emerged botulinum toxin: local anesthetics (lidocaine and congeners), with a fully reversible action of short duration, and alcohols (ethanol and phenol), with a longer duration of action. Local anesthetics block both afferent and efferent messages. The onset of action is within minutes and duration of action varies between one and several hours according to the agent used. Their use requires resuscitation equipment available close by. When a long-lasting blocking agent is being considered, we favor the use of transient blocks with local anesthetics for therapeutic tests or diagnostic procedures to answer the following questions: Can function be improved by the block? What are the roles played by overactivity and contracture in the impairment of function? Which muscle is contributing to pathologic posturing? What is the true level of performance of antagonistic muscles? A short-acting anesthetic can also serve as preparation to casting or as an analgesic for intramuscular injections of other antispastic treatment. Alcohol and phenol provide long-term chemical neurolysis through destruction of peripheral nerve. Experience with ethanol is more developed in children using intramuscular injection, while experience with phenol is greater in adults with perineural injection. In both cases, there are anecdotal reports of efficacy but studies have rarely been controlled. Side effects are numerous and include pain during injection, chronic dysesthesia and chronic pain, and episodes of local or regional vascular complications by vessel toxicity. In the absence of controlled studies, a theoretical comparison of neurolytic agents with botulinum toxin is proposed. Neurolytic agents may be preferred to botulinum toxin on a number of grounds, including earlier onset, potentially longer duration of effect, lower cost, and easier storage. Conversely, pain during injection, tissue destruction with chronic sensory side effects, and lack of selectivity on motor function with neurolytic agents may favor the use of botulinum toxin. Neurolytic agents and botulinum toxin may be used in combination, the former for larger proximal muscles and the latter for selective injection into distal muscles. In the future, neurolytic agents may prove more appropriate in very severely affected patients for whom the purposes of the block are comfort and hygiene. (ABSTRACT TRUNCATED)

Adult↗

Diffuse disorder of coronary artery vasomotility in patients with coronary spastic angina. Hyperreactivity to the constrictor effects of acetylcholine and the dilator effects of nitroglycerin.

OBJECTIVES: We examined the vasomotility of the entire epicardial coronary artery system in patients with and without coronary spastic angina. BACKGROUND: The coronary arteries of patients with variant angina are hyperreactive to diverse constrictor stimuli. It is unclear whether the abnormal responses to constrictive or dilative stimuli, or both, result from a localized or diffuse disorder in the coronary artery tree. METHODS: Coronary artery diameter responses to intracoronary acetylcholine and nitroglycerin were examined at the proximal, middle and distal segments of three principal coronary arteries in 36 patients with coronary spastic angina without significant stenosis and in 12 young (< or = 30 years old) and 20 older control subjects (> 30 years old) with normal coronary arteriographic findings. In 10 patients with significant coronary stenosis, the responses of the prestenotic segments were also examined. RESULTS: In patients with coronary spastic angina, coronary spasm was induced in 23 left anterior descending, 13 left circumflex and 17 right coronary arteries by acetylcholine. Multivessel spasm was observed in 15 patients. Acetylcholine had a dilator effect on most segments in young control subjects and a mild constrictor effect in older control subjects and in patients with significant stenosis. Comparison of the responses to acetylcholine among groups demonstrated that the constrictor response of the artery with spasm was enhanced significantly and diffusely. That of the artery without spasm also tended to be enhanced. Coronary artery diameters after nitroglycerin did not differ in any segment among patients with coronary spastic angina and both control groups. In patients with coronary spastic angina, nitroglycerin significantly enhanced dilation in all segments of the artery with spasm compared with that observed in both control groups and in most segments of the artery without spasm. Patients with significant coronary stenosis had a reduced response compared with that in control subjects. CONCLUSIONS: Hyperreactive responses not only to the constrictor effects of acetylcholine, but also the dilator effects of nitroglycerin were detected diffusely in the epicardial coronary arteries of patients with coronary spastic angina. This finding indicates that a diffuse, not localized, disorder in vasomotility is involved in the pathogenesis of coronary spastic angina.

Acetylcholine↗