Search results for "Pain syndrome"

showing 10 items of 94 documents

Deep dry needling of trigger points located in the lateral pterygoid muscle: efficacy and safety of treatment for management of myofascial pain and t…

2014

Background To determine whether deep dry needling (DDN) of trigger points (TPs) in the lateral pterygoid muscle (LPM) would significantly reduce pain and improve function, compared with methocarbamol/paracetamol medication. Material and Methods Forty-eight patients with chronic myofascial pain located in the LPM were selected and randomly assigned to one of two groups (DDN test group, n=24; drug-treated control group, n=24). The test group received three applications of needling of the LPM once per week for three weeks, while control group patients were given two tablets of a methocarbamol/paracetamol combination every six hours for three weeks. Assessments were carried out pretreatment, 2 …

MaleAcupuncture TherapyLateral pterygoid musclelaw.inventionRandomized controlled triallawMyofascial Pain SyndromesDry needlingMethocarbamolMuscle Relaxants CentralEquipment DesignAnalgesics Non-NarcoticMiddle AgedTemporomandibular Joint Disorders:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludTreatment OutcomeNeedlesAnesthesiaUNESCO::CIENCIAS MÉDICASFemalePterygoid Musclesmedicine.drugAdultmedicine.medical_specialtyAdolescentOdontologíaMyofascial pain syndromeYoung AdultmedicineHumansPain ManagementGeneral DentistryMasticationAcetaminophenAgedOral Medicine and Pathologybusiness.industryResearchTrigger PointsPterygoid Musclesmedicine.diseaseSurgeryAcetaminophenOtorhinolaryngologySurgerybusinessAcupuncture PointsMethocarbamol
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A polymorphic locus in the intron 16 of the human angiotensin-converting enzyme (ACE) gene is not correlated with complex regional pain syndrome I (C…

2004

Exaggerated neurogenic inflammation has been recognized to be one reason for many CRPS symptoms. Since angiotensin-converting enzyme (ACE) is a key enzyme for the termination of neurogenic inflammation, it has been selected as a candidate gene for CRPS predisposition. A previous report of an insertion/deletion (I/D) polymorphism in intron 16 within the ACE gene implicated an increased risk to develop CRPS I associated with the D allele. However, in the present study the D allele frequency was not increased in CRPS I cases (0.51 for D allele, 0.49 for I allele). Furthermore, there was no co-segregation of any genotype (DD, ID, II) with the CRPS phenotype in 12 selected familial CRPS I cases …

MaleCandidate geneGenotypeDNA Mutational AnalysisPeptidyl-Dipeptidase Amedicine.disease_causeGene FrequencyPolymorphism (computer science)GenotypemedicineHumansGenetic Predisposition to DiseaseGenetic TestingAlleleAllele frequencyGeneticsMutationPolymorphism GeneticbiologyNeuropeptidesAngiotensin-converting enzymemedicine.diseaseIntronsPedigreeReflex Sympathetic DystrophyAnesthesiology and Pain MedicineComplex regional pain syndromePhenotypeImmunologyMutationbiology.proteinFemaleEuropean journal of pain (London, England)
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Warm and cold complex regional pain syndromes: Differences beyond skin temperature?

2009

Objective: To investigate clinical differences in warm and cold complex regional pain syndrome (CRPS) phenotypes. Background: CRPS represents inhomogeneous chronic pain conditions; approximately 70% patients with CRPS have “warm” affected limbs and 30% have “cold” affected limbs. Methods: We examined 50 patients with “cold” and “warm” CRPS (n 25 in each group). Both groups were matched regarding age, sex, affected limb, duration of CRPS, and CRPS I and II to assure comparability. Detailed medical history and neurologic status were assessed. Moreover, quantitative sensory testing (QST) was performed on the affected ipsilateral and clinically unaffected contralateral limbs. Results: Compared …

MaleDystoniamedicine.medical_specialtyHot TemperatureNeurologybusiness.industrySensationChronic painSensory lossMiddle Agedmedicine.diseasePathophysiologyCold TemperatureComplex regional pain syndromeAnesthesiaSensationmedicineHumansFemaleMedical historyNeurology (clinical)Skin TemperaturebusinessComplex Regional Pain SyndromesNeurology
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Bone Trauma Causes Massive but Reversible Changes in Spinal Circuitry.

2016

Abstract Bone fracture with subsequent immobilization of the injured limb can cause complex regional pain syndrome (CRPS) in humans. Mechanisms of CRPS are still not completely understood but bone fracture with casting in mice leads to a similar post-traumatic inflammation as seen in humans and might therefore be an analog to human CRPS. In this article we report behavioral and spinal electrophysiological changes in mice that developed swelling of the paw, warming of the skin, and pain in the injured limb after bone fracture. The receptive field sizes of spinal neurons representing areas of the hind paws increased after trauma and recovered over time—as did the behavioral signs of inflammat…

MalePain ThresholdTime FactorsAction PotentialsInflammationStatistics NonparametricWeight-Bearing03 medical and health sciencesFractures BoneMice0302 clinical medicine030202 anesthesiologyPhysical StimulationBiological neural networkMedicineAnimalsEdemaPain MeasurementNeuronsbusiness.industryBone fracturemedicine.diseaseSpinal cordElectric StimulationMice Inbred C57BLElectrophysiologyDisease Models AnimalAnesthesiology and Pain MedicineAllodyniamedicine.anatomical_structureComplex regional pain syndromeNeurologySpinal CordReceptive fieldHyperalgesiaAnesthesiaNeurology (clinical)medicine.symptomNerve NetbusinessSkin Temperature030217 neurology & neurosurgeryComplex Regional Pain SyndromesThe journal of pain
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Dysynchiria is not a common feature of neuropathic pain

2006

Patients with chronic neuropathic pain (non-CRPS) and brush-evoked allodynia watched a reflected image of their corresponding but opposite skin region being brushed in a mirror. Unlike complex regional pain syndrome Type 1, this process did not evoke any sensation at the affected area ('dysynchiria'). We conclude that central nociceptive sensitisation alone is not sufficient to cause dysynchiria in neuropathic pain. The results imply a difference in cortical pain processing between complex regional pain syndrome and other chronic neuropathic pain.

MalePain Thresholdmedicine.medical_specialtyPhysical medicine and rehabilitationThreshold of painmedicineHumansParesthesiaReferred painbusiness.industrydysynchiria; CRPS; neuropathic painNociceptorsMiddle Agedmedicine.diseaseAnesthesiology and Pain MedicineComplex regional pain syndromeAllodyniaNociceptionAnesthesiaChronic DiseaseNeuropathic painOther Psychology and Cognitive SciencesNeuralgiaNociceptorNeuralgiaFemalemedicine.symptombusinessEuropean Journal of Pain
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Complex regional pain syndrome patient immunoglobulin M has pronociceptive effects in the skin and spinal cord of tibia fracture mice.

2020

It has been proposed that complex regional pain syndrome (CRPS) is a post-traumatic autoimmune disease. Previously, we observed that B cells are required for the full expression of CRPS-like changes in a mouse tibia fracture model and that serum immunoglobulin M (IgM) antibodies from fracture mice have pronociceptive effects in muMT fracture mice lacking B cells. The current study evaluated the pronociceptive effects of injecting CRPS patient serum or antibodies into muMT fracture mice by measuring hind paw allodynia and unweighting changes. Complex regional pain syndrome serum binding was measured against autoantigens previously identified in the fracture mouse model. Both CRPS patient ser…

MalePathologymedicine.medical_specialtyTibia FractureArticle03 medical and health sciencesMiceYoung Adult0302 clinical medicine030202 anesthesiologyMedicineAnimalsHumansAgedSkinAutoimmune diseasebiologyTibiabusiness.industryIgM bindingMiddle Agedmedicine.diseaseSpinal cordDisease Models AnimalAnesthesiology and Pain Medicinemedicine.anatomical_structureAllodyniaComplex regional pain syndromeNeurologyImmunoglobulin MSpinal CordImmunoglobulin Mbiology.proteinFemaleNeurology (clinical)Antibodymedicine.symptombusiness030217 neurology & neurosurgeryComplex Regional Pain Syndromes
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Validation of proposed diagnostic criteria (the "Budapest Criteria") for Complex Regional Pain Syndrome

2010

Current IASP diagnostic criteria for CRPS have low specificity, potentially leading to overdiagnosis. This validation study compared current IASP diagnostic criteria for CRPS to proposed new diagnostic criteria (the "Budapest Criteria") regarding diagnostic accuracy. Structured evaluations of CRPS-related signs and symptoms were conducted in 113 CRPS-I and 47 non-CRPS neuropathic pain patients. Discriminating between diagnostic groups based on presence of signs or symptoms meeting IASP criteria showed high diagnostic sensitivity (1.00), but poor specificity (0.41), replicating prior work. In comparison, the Budapest clinical criteria retained the exceptional sensitivity of the IASP criteria…

MaleValidation studymedicine.medical_specialtyDatabases FactualSigns and symptomsDiagnostic accuracySensitivity and SpecificityArticleDiagnosis DifferentialmedicineRegional pain syndromeHumansOverdiagnosisPain Measurementbusiness.industryReproducibility of ResultsComplex Regional Pain Syndrome Reflex sympathetic dystrophy CRPS RSD Diagnosis Validation reflex sympathetic dystrophy syndrome type-i signs crpsmedicine.diseaseSurgeryAnesthesiology and Pain MedicineComplex regional pain syndromeNeurologyPhysical therapyFemaleNeurology (clinical)businessComplex Regional Pain Syndromes
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Autoantibodies in complex regional pain syndrome bind to a differentiation-dependent neuronal surface autoantigen.

2009

Complex regional pain syndrome, which is characterised by pain and trophic disturbances, develops frequently after peripheral limb trauma. There is an increasing evidence of an involvement of the immune system in CRPS, and recently we showed that CRPS patients have autoantibodies against nervous system structures. Therefore we tested the sera of CRPS patients, neuropathy patients and healthy volunteers for surface-binding autoantibodies to primary cultures of autonomic neurons and differentiated neuroblastoma cell lines using flow cytometry. Thirteen of 30 CRPS patients, but none of 30 healthy controls and only one of the 20 neuropathy sera had specific surface binding to autonomic neurons …

Nervous systemAdultMaleNeurogenesisMyenteric Plexusmedicine.disease_causeAutonomic Nervous SystemAutoantigensAutoimmunityAutoimmune Diseases of the Nervous SystemAntigenNeuroblastomaCell Line TumormedicineHumansCells CulturedAutoantibodiesNeuronsGanglia Sympatheticbusiness.industryAutoantibodyCell DifferentiationMiddle Agedmedicine.diseaseFlow CytometryAutonomic nervous systemAnesthesiology and Pain Medicinemedicine.anatomical_structureComplex regional pain syndromeNeurologyImmune SystemImmunologyAntigens SurfaceCholinergicFemaleNeurology (clinical)businessComplex Regional Pain SyndromesProtein BindingPainReferences
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Complex regional pain syndrome-significant progress in understanding.

2015

Research into complex regional pain syndrome (CRPS) has made significant progress. First, there was the implementation of the official IASP "Budapest" diagnostic criteria. It would be desirable to also define exclusion and outcome criteria that should be reported in studies. The next step was to recognize the complex pathophysiology. After trauma, some inflammation is physiological; in acute CRPS, this inflammation persists for months. There is an abundance of inflammatory and a lack of anti-inflammatory mediators. This proinflammatory network (cytokines and probably also other mediators) sensitizes the peripheral and spinal nociceptive system, it facilitates the release of neuropeptides fr…

Nervous systemInflammationNeuronal Plasticitybusiness.industryInflammationmedicine.diseaseProinflammatory cytokineAnesthesiology and Pain MedicineComplex regional pain syndromeNociceptionmedicine.anatomical_structureNeurologyNeuroplasticitymedicineNociceptorDisease ProgressionAnimalsHumansNeurology (clinical)Endothelial dysfunctionmedicine.symptombusinessNeuroscienceComplex Regional Pain SyndromesPain
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Neurogenic Inflammation in Complex Regional Pain Syndrome (CRPS)

2008

This chapter explains symptoms and nature of neurogenic inflammation and its importance in posttraumatic complex regional pain syndrome (CRPS). Neurogenic inflammation regularly accompanies excitation of primary afferent nociceptors. It has two major components – plasma extravasation and vasodilatation. The most important mediators are the neuropeptides calcitonin gene-related peptide (CGRP) and substance P (SP). After peripheral trauma, immune reaction (e.g., cytokines) and the attempts of the tissue to regenerate (e.g., growth factors) sensitize nociceptors and thereby amplify neurogenic inflammation. This cascade of events has recently been demonstrated in rat models of CRPS employing di…

Neurogenic inflammationbusiness.industrySubstance PCalcitonin gene-related peptidemedicine.diseaseExtravasationchemistry.chemical_compoundComplex regional pain syndromechemistryAnesthesiaImmunologyNociceptorMedicineBody regionAxon reflexbusiness
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