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At least 19 recordsLinked to original sources

[Cervical plexus block and continuous cervical peridural block with ropivacaine for carotid surgery: a comparison between the 2 methods].

OBJECTIVE: To evaluate the efficacy and security of the cervical plexus block and the continuous cervical peridural anaesthesia in carotid surgery, using ropivacaine as local anaesthetic. METHODS: 90 patients (ASA II-III, age 67-84) who had signed informed consent were randomised in two groups. In Group C continuous cervical plexus block was performed using ropivacaine 0,75% 2,5 mg/kg. In Group P continuous cervical peridural anaesthesia was performed, at level C6-C7 or C7-T1, introducing the catheter for 5 cm into the epidural space and injecting in 20 min ropicavacine 0,5% 0,9 mg/kg together with 50-100 g of fentanyl. ECG, HR, arterial blood pressure, neurological status of conscious patient and eventual complications were all monitored. RESULTS: Demographical data, duration of surgery and level of anaesthesia were all uniform in both groups. At the onset of the block the values of the systolic arterial blood pressure were significantly lower in Group P compared to Group C. One case of intradural injection of ropivacaine was reported and one case of intravascular injection, without remaining deficits. There were no perioperative complications. CONCLUSIONS: cervical plexus block and continuous cervical peridural anaesthesia performed with ropivacaine are both effective for anaesthesia in carotid surgery. Ropivacaine, for its minor cardiotoxicity, yields eventual complications related to the two methods, less severe.

Aged↗

Syndrome of the cervical plexus caused by high cervical nerve root compression.

Lesions affecting the roots of the cervical plexus can cause a syndrome not previously described. The C3-C4 disc space is the most likely to be involved, but pressure on the C5 root can also produce facial, auricular, or retroauricular pain. Motor innervation to the diaphragm can be affected, and even the uppermost disc space at C2-C3 might be implicated. Findings on examination findings are sparse, although sensory impairment in areas of cervical plexus innervation has been observed. In a series of 1000 cervical decompression cases (both anterior and posterior) for disc disease or similar processes, only 10 instances of this syndrome have been found. Paresthesia or episodic shock-like pain affecting the ear, para-auricular, lower occipital, and mandibular areas prompted by head turning or extension are the most common complaints.

Aged↗

Incidence of phrenic nerve block and hypercapnia in patients undergoing carotid endarterectomy under cervical plexus block.

Deep cervical plexus blockade blocks the second, third and fourth cervical nerve roots. The phrenic nerve arises from C3, C4, C5 and should therefore be commonly blocked with cervical plexus blockade. The aim of this study was to report the incidence of phrenic nerve block and to assess the effect of this on arterial carbon dioxide tension (PaCO2) in premedicated and sedated patients. Forty patients were studied, blood gases being taken on the day before surgery, immediately before performing the block and then every 20 minutes until the operation was completed. Fluoroscopy was used to determine ipsilateral hemidiaphragmatic dysfunction due to phrenic nerve block. The patients were then divided into two groups of analysis. Group A patients had evidence of phrenic nerve block, Group B patients had no evidence of phrenic nerve block. Fluoroscopy showed that 22 patients (55%) had evidence of phrenic nerve block (Group A), 18 patients showed no change (Group B). PaCO2 levels increased in both groups following premedication, from 41 +/- 5 mmHg (mean +/- SD) to 46 +/- 5 mmHg in Group A, and 41 +/- 4 mmHg in Group B; twenty minutes after cervical plexus block the PaCO2 rose to 49 +/- 6 mmHg in Group A, and 48 +/- 6 mmHg in Group B. These changes were not statistically significantly different when the two groups were compared.

Aged↗

The intradural cervical plexus. An absent cervical nerve root.

Whilst dissecting the intradural and peripheral pathways of the spinal accessory n. (Sp. XI) as part of a larger study into its microsurgical anatomy, we have discovered an unusual and previously unreported anatomical variant. In one cadaver the intradural C2 dorsal n. root was completely absent on the left side. Considerable speculation surrounds the function of the spinal accessory n. in human subjects. Recent anatomical and clinical studies have drawn attention to the intradural plexus-like morphology of the Sp. XI and raised the possibility of integration of pro-prioception and motor control of the neck musculature at this level. The general anatomy of the Sp. XI is reviewed along with current ideas from recent studies.

Accessory Nerve↗

Cervical plexus block helps in diagnosis of orofacial pain originating from cervical structures.

Headache associated with cervical lesions is called cervicogenic headache and involves the occiput but not the orofacial region. However, patients occasionally present with orofacial pain accompanied by neck symptoms. This study investigates whether orofacial pain can originate from the neck and whether cervical plexus block can help in diagnosis. We enrolled eight patients suffering from chronic orofacial pain that had not been relieved by dental treatment. Radiographic and magnetic resonance imaging revealed abnormal findings in the neck in seven of them. To identify the origin of the orofacial pain, we firstly blocked peripheral sensory input from the oral cavity and surrounding tissues, followed by that from deep cervical structures. We injected local anesthetics around the painful orofacial region, then to the tender points in the masticatory and superficial cervical muscles (trigger point injection), and consequently around the cervical plexus. Pain was assessed using a pain relief score compared with pre-treatment control values. Local anesthesia in the painful oral region provided insufficient relief whereas trigger point injection significantly relieved pain. The amount of pain relief generated by the deep cervical plexus block was more significant than that produced by any other procedures. We conclude that certain types of orofacial pain originate from cervical structures and that a deep cervical plexus block can be helpful in differentially diagnosing such pain.

Adult↗

Extracapsular spread and the perineural extension of squamous cell cancer in the cervical plexus.

Extracapsular spread of squamous cell carcinoma in cervical lymph nodes is associated with approximately 50% decrease in survival and a twofold increase in regional recurrence. This study examines the hypothesis that increased regional recurrence may be, in part, due to unrecognized microscopic perineural invasion of the nerve rootlets of the cervical plexus. Thirty patients with head and neck squamous cell carcinoma with clinically N+ necks undergoing radical neck dissection were prospectively studied. Neck dissection specimens were evaluated for extracapsular spread, and the cervical plexus rootlets were histologically examined for perineural invasion. The incidence of extracapsular spread was 83% (25 of 30 patients). Only one (4%) of 25 had involvement of the cervical plexus, and this patient had gross as well as microscopic cervical plexus invasion. Microscopic perineural spread of squamous cell carcinoma in the cervical plexus occurs infrequently when extracapsular spread is present. Routine histologic evaluation of cervical rootlets for margins is warranted only when gross tumor is in close proximity to the cervical plexus.

Aged↗

Superficial and deep cervical plexus block: technical considerations.

Regional anesthetic block of the cervical plexus is a safe and useful alternative to general endotracheal anesthesia for surgery of the neck, upper shoulder, and occipital scalp area. The sensory component of the cervical plexus can be blocked separately and easily by a superficial cervical plexus block. Both motor and sensory block can be obtained by deep cervical plexus block. Minor transient side effects are common to deep cervical plexus blocks, but they are rarely of any consequence. Recent years have seen an increase in interest in the use of the cervical plexus block, because its popularity for surgical procedures such as carotid endarterectomies has grown. An understanding of the anatomy and principles of this anesthetic technique will enable the clinician to offer the patient and surgeon an important anesthetic option.

Cervical Plexus↗

[Origin of shoulder pain after "neck dissection". Importance of the cervical plexus].

BACKGROUND: The role of sensitive parts of the cervical plexus for the development of neuropathic pain is not yet clear. Our study investigated the correlation between shoulder pain and cervical plexus damage after different types of neck dissection (ND). MATERIAL AND METHODS: The sensitivity for warm/cold and sharp/blunt was tested in the dermatomes of C2, C3, C4, and the minor occipital nerve. Shoulder pain was measured semiquantitatively by a rating scale. RESULTS: Motion-dependent shoulder pain was observed 6 months postoperatively in 50% after resection and in 29.2% after preservation of these structures. Pain occurred more frequently following radical ND than after modified radical types 1 and 3 ND. DISCUSSION: Our investigations showed that the superficial cervical plexus function is assessable by cutaneous sensitivity tests. The minor occipital nerve seemed to be less affected. Fewer pain symptoms in cases with preserved cervical plexus could be demonstrated. We can conclude that preservation of the superficial cervical plexus is important to diminish postoperative shoulder pain.

Cervical Plexus↗

A comparative ultrastructural study of primary afferents from the brachial and cervical plexuses to the external cuneate nucleus of gerbils.

The synaptic organisation of the primary afferents from the brachial and cervical plexuses to the external cuneate nucleus of gerbils was compared following an intraneural injection of horseradish peroxidase into the musculocutaneous, median, ulnar and radial nerves of the brachial plexus or the main branches of the cervical plexus; 407 labelled primary afferent terminals from the brachial and 459 from the cervical plexus were studied. These boutons made synaptic contacts with 586 and 633 dendritic profiles, respectively. 99.0% of the primary afferent boutons from the brachial plexus contained clear round synaptic vesicles (R boutons); the remaining 1% of boutons contained pleomorphic synaptic vesicles (P boutons). For boutons from the cervical plexus, 95% were R boutons and 5% were P boutons. The labelled R bouton profiles had a wide range of cross-sectional area from 0.4 to 13.1 microns 2, while the P boutonal profiles were of a small variety (range, 0.4-2.3 microns 2; mean, 1.5; S.D., 0.6 micron 2). The R boutons from the brachial plexus (mean, 3.9 microns; S.D., 2.1 microns 2) were generally larger than those from the cervical plexus (mean, 3.3 microns 2; S.D., 1.9 microns 2). On close analysis, 72.4% of R boutons from the brachial plexus were found to synapse on distal dendrites, 15.9% on secondary dendrites, 9.5% on dendritic spines and 2.2% on proximal dendrites. For R boutons from the cervical plexus, 81.1% synapsed on distal dendrites, 12.1% on dendritic spines and 6.8% on secondary dendrites; none was observed on proximal dendrites. Such a different synaptic organisation between the two nerve plexuses may be related to their different perceptuomotor executions.

Animals↗

A comparison of two techniques for cervical plexus blockade: evaluation of efficacy and systemic toxicity.

UNLABELLED: We compared two techniques of cervical plexus blockade (CPB) for carotid endarterectomy. Cervical plexus nerve block was performed with a combination of bupivacaine and lidocaine, with injections at the C2-C3, C3-C4, and C4-C5 transverse processes in 11 patients (classical CPB) or with a single injection after localization of the cervical plexus with a nerve stimulator in 12 patients (interscalene CPB). Pain scores were obtained during block placement and at predetermined phases of the operation. Arterial blood was sampled before and 3, 5, 8, 10, 15, 25, 40, and 60 min after CPB for measurement of bupivacaine and lidocaine concentrations. Interscalene CPB was less painful than classical CPB. The techniques appeared equally effective. Patients in both groups required equivalent supplementation with IV fentanyl and additional local infiltration with lidocaine during the most painful stages of surgery. The maximal concentration of bupivacaine was lower in interscalene CPB compared with classical CPB (1.0 microg/mL versus 1.5 microg/mL, P < 0.01). The time required to reach the maximal concentration of bupivacaine was 15 (10-40) min in interscalene CPB and 10 (5-17) min in classical CPB (P < 0.05). Lidocaine maximal concentration was similar in both groups, however the time required to reach the maximal concentration was longer (P < 0.05) in interscalene CPB (15 [10-60] min) than in classical CPB (10 [8-20] min). We conclude that the interscalene CPB is as effective as the classical CPB as a regional technique for carotid endarterectomy and may be associated with a lower systemic absorption of bupivacaine. IMPLICATIONS: Cervical plexus blockade for carotid endarterectomy can be effectively performed with a single injection after localization of the cervical plexus with a nerve stimulator. This technique is simple and was associated with less systemic absorption of local anesthetic than the multiple-injection technique.

Aged↗

Surgical anatomy of the spinal accessory nerve and the trapezius branches of the cervical plexus.

BACKGROUND: A thorough understanding of the topographical anatomy of the spinal accessory nerve and the cervical plexus branches is a basic prerequisite for positive results when operating on the neck. OBJECTIVE: To give an exact description of the topographical and surgical anatomy of the spinal accessory nerve (SAN) and the trapezius branches of the cervical plexus. DESIGN: Anatomic analysis of the SAN and the trapezius branches of the cervical plexus. SETTING: The topographical anatomy of the SAN and the cervical plexus branches were studied in the anterior and posterior triangles of the necks of 46 perfusion-fixed human cadavers of both sexes, which ranged in age from 55 to 97 years (mean age, 83 years). RESULTS: The SAN can be identified on the posterior border of the sternocleidomastoid (SCM) muscle, 8.2 + 1.01 cm cranial to the clavicle. In 37% of cases, the SAN enters the posterior triangle of the neck dorsal to the SCM muscle, where it passes through the muscle in 63% of these cases. In the anterior triangle of the neck, the SAN crosses the internal jugular vein ventrally in 56% of the cases and dorsally in 44%. Regarding the cervical plexus, 1 trapezius branch could be found in 9% of the specimens, 2 in 61%, and 3 in 30%. None of the branches merged with the SAN medial to the anterior border of the trapezius muscle. In most cases, a tiny additional branch could be found arising from the SAN about 2 cm medial to the trapezius muscle. This branch enters the descendant part of the muscle approximately 2 to 3 cm cranial to the main nerve. CONCLUSIONS: Surprisingly, available data on topographical as well as surgical anatomy of the SAN and the trapezius branches of the cervical plexus are confusing and often wrong. The descriptions given herein can help to minimize the risk of injuring the SAN during neck surgery and preserve the additional innervation of the trapezius muscle granted by the rami trapezii of the cervical plexus.

Accessory Nerve↗

Comparison of clonidine and epinephrine in lidocaine for cervical plexus block.

BACKGROUND AND OBJECTIVES: Carotid endarterectomy under cervical plexus block offers the advantage of awake neurologic assessment. The hypothesis was tested that the addition of clonidine 5 micrograms/mL to lidocaine 1.5% for the block is as effective clinically as the addition of epinephrine 5 micrograms/mL but without the associated tachycardia. METHODS: In a double-blind, randomized, prospective trial of 40 patients, local anesthetic solutions of lidocaine 1.5% containing either clonidine 5 micrograms/mL or epinephrine 5 micrograms/mL were compared for cervical plexus block in patients undergoing carotid endarterectomy. Each solution was administered to 20 patients with a total lidocaine dose of 7 mg/kg. The electrocardiogram, heart rate, and arterial pressure (radial artery catheter) were continuously monitored. Blood samples were drawn for determination of serum lidocaine levels during the first hour. RESULTS: The block onset time (8.4 +/- 0.6 minutes for epinephrine, 8.8 +/- 0.8 minutes for clonidine) and duration (139 +/- 6.7 minutes for epinephrine, 148 +/- 5.8 minutes for clonidine) were not different between the two groups. During the period from completion of the block until incision there was a significant heart rate increase in the epinephrine group (23% mean rise) as compared with the clonidine group (4% mean rise) (P < .003). There was no difference in blood pressure between the two groups. The maximum plasma concentrations of lidocaine were 2.5-7.6 micrograms/mL (mean, 4.5 +/- 0.3 micrograms/mL) for the epinephrine group and 4.7-18.4 micrograms/mL (mean, 7.5 +/- 0.7 micrograms/mL) for the clonidine group (P < .0002). The maximum concentrations were reached 0-30 minutes (mean, 8 +/- 1.4 minutes) after injection for the epinephrine group and 0-10 minutes (mean, 4.5 +/- 7.1 minutes) for the clonidine group (P < .03). CONCLUSIONS: Clonidine 5 micrograms/mL is a useful additive to lidocaine 1.5% for cervical plexus block to reduce the incidence of tachycardia; however, omission of epinephrine results in higher serum lidocaine levels.

Adrenergic alpha-Agonists↗