Effect of Suggestion upon Experimental Pain Response Parameters

1965 ◽  
Vol 21 (3) ◽  
pp. 675-683 ◽  
Author(s):  
B. Berthold Wolff ◽  
Norman A. Krasnegor ◽  
Roberta S. Farr

The differential effects of permissive and non-permissive instructions upon pain threshold and pain tolerance were studied in 43 healthy human Ss, using cutaneous electrical stimulation. Non-permissive instructions resulted in very significant increases in both pain tolerance and pain sensitivity range, but no significant changes were observed for both pain threshold and detection threshold. Therefore, Gelfand's hypothesis, stating that pain threshold and pain tolerance have differential loadings of physiological and psychological components, was supported. It was also found that the left or non-dominant hand was consistently more sensitive to pain than the right hand. This result is consistent with Wolff's and Jarvik's suggestion that lateral dominance is important in pain perception.

2021 ◽  
Vol 11 ◽  
Author(s):  
Eszter Ferentzi ◽  
Mattis Geiger ◽  
Sandra A. Mai-Lippold ◽  
Ferenc Köteles ◽  
Christian Montag ◽  
...  

Pain perception is influenced by several factors, and among them, affect, sex, and perception of bodily signals are assumed to play a prominent role. The aim of the present study is to explore how sex, cardiac interoceptive accuracy, and the interaction of the latter two influence the perception of experimentally induced pain. We investigated a large sample of young adults (n = 159, 50.9% female, age: 23.45, SD = 3.767), assessing current positive and negative affective state with the Positive and Negative Affect Schedule (both involved as control variables), cardiac interoceptive accuracy with the mental heartbeat tracking task, and pain sensitivity with electrical stimulation on the back of the dominant hand, applying a repeated-measures staircase protocol. Males showed a significantly higher pain threshold and tolerance level than females, whereas cardiac interoceptive accuracy was not associated with pain sensitivity. The impact of sex × cardiac interoceptive accuracy interaction was significant for pain threshold only, while pain tolerance was predicted only by sex. According to these findings, the associations between pain sensitivity, cardiac IAc, and sex might be more complicated than it was supposed in previous studies. Interactions between factors impacting pain perception appear worthy of further investigation.


2014 ◽  
Vol 2 (1) ◽  
pp. 13-17
Author(s):  
Pratik Akhani ◽  
Samir Mendpara ◽  
Bhupendra Palan

Background: Pain is one of the most common reasons for patients to seek medical attention and it causes considerable human suffering. Pain is a complex perception that differs enormously among individual patients. Gender plays an important role in how pain is experienced, coped with and treated. Even young healthy individuals often differ in how they perceive and cope with pain. This study was done to investigate gender differences in response to experimental pain among medical students from a western state in India. Methods: A total of 150 medical students (86 males and 64 females) participated in this interventional study. The Cold Pressor Test was used to exert experimental pain. To study the response, cardiovascular measures (radial pulse, systolic blood pressure and diastolic blood pressure) and pain sensitivity parameters (pain threshold, pain tolerance and pain rating) were assessed. Results: No significant difference was found in cardiovascular response to experimental pain between both the genders (p>0.05). Pain threshold and pain tolerance were found to be significantly higher in males whereas pain rating was found to be significantly higher in females (p<0.01). Pulse reactivity showed a negative relationship with pain threshold and pain tolerance whereas a positive relationship with pain rating, however no statistically significant relation was found between these measures. Conclusion: Females display greater pain sensitivity than males. Different pain perception might account for gender difference in pulse reactivity.


2018 ◽  
Vol 2018 ◽  
pp. 1-6 ◽  
Author(s):  
Hyochol Ahn ◽  
Setor K. Sorkpor ◽  
Miyong Kim ◽  
Hongyu Miao ◽  
Chengxue Zhong ◽  
...  

Multiple studies in healthy populations and clinical samples have shown that ethnic minorities have greater pain sensitivity than their majority counterparts. Acculturation is speculated to be one of the sociocultural factors contributing to pain sensitivity since cultural beliefs and practices can influence the way patients perceive and respond to pain. However, the relationship of acculturation to pain sensitivity in minority populations remains poorly understood. Therefore, in this cross-sectional study, we examined the relationship between acculturation and experimental pain sensitivity in 50 Asian Americans residing in North Central Florida with knee osteoarthritis pain. The Suinn-Lew Asian Self Identity Acculturation Scale was used to assess acculturation, and multimodal quantitative sensory testing was performed to measure experimental sensitivity, including heat pain tolerance, pressure pain threshold, and punctate mechanical pain. Descriptive and regression analyses were performed. Participants’ mean age was 55.7 years, and about half of this sample were Korean American (56%). The participants had lived in the United States for 21 years on average. Regression analyses indicated that lower acculturation to American culture may contribute to greater experimental pain sensitivity. Asian Americans who were more acculturated to the American culture had higher heat pain tolerance (beta = 0.61, P=0.01), higher pressure pain threshold (beta = 0.59, P=0.02), and lower ratings of punctate mechanical pain (beta = −0.70, P<0.01). These findings add to the literature regarding sociocultural factors associated with pain in Asian Americans; additional research with a larger and more diverse sample of Asian Americans is warranted for cross-validation.


2012 ◽  
Vol 3 (3) ◽  
pp. 190-190
Author(s):  
H.B. Madsen ◽  
G. Handberg ◽  
T. Graven-Nielsen

Abstract Background/aims Exercise and experimental pain is known to cause an acute decrease of the pain sensitivity. Assessment of pain inhibitory mechanisms is often done by paradigms of exercise and experimental pain in both healthy subjects and pain patients. It is currently unknown whether pain and different types of exercise has similar effects on pain sensitivity. The aim of the present study was to investigate the effects of experimental pain and different types of exercise on deep tissue pain tolerance in healthy subjects. Methods On two separate days fifty-four healthy subjects (23 females, 33.8 ± 15.0 years) were assigned in random order to cold pressor tests (ice water at 1–2°C; 120 s duration) for the dominant hand and foot, bicycling exercises (100 W and 200 W; 20 min duration), and isometric contraction exercises (30% and 60% of maximal voluntary contraction, MVC; 180 s duration) of the dominant quadriceps and biceps brachii muscles. Before, immediately after, and 10 min after cold pressor tests and exercises, pressure pain tolerance (PTT) were assessed with computerized cuff-algometry at the non-dominant lower-leg and upper arm. Subjects reaching maximum stimulation intensity at baseline were excluded from the analysis. PTTs were analysed with repeated measures ANOVA and multiple comparisons. Results Immediately and 10 min after the cold pressor test in the dominant hand and foot significantly increased PTTs were found at the non-dominant upper arm and lower leg (P < 0.05). Both intensities of dominant biceps brachii isometric contractions produced a significant increase in the PTT at the non-dominant lower leg immediately after and 10 min after contractions (P < 0.05). After the 30% dominant quadriceps isometric contraction the PTT at the non-dominant lower leg was significantly increased (P < 0.05). Conclusion Cold pressor pain produced a contralateral and extrasegmental increase in deep tissue pain tolerance. Isometric arm exercise produced an extrasegmental increase in pain tolerance, whereas isometric leg contractions produced a contralateral effect. Aerobic exercise had no effect on pain tolerance. Thus, exercise and pain related inhibitory effects were not comparable. Acknowledgment/disclosures H.B. Madsen was supported by grants from the philanthropic foundation TrygFonden (7-11-0990), The Danish Rheumatism Association 8R95-A1871), The Research Foundation of the Danish Physiotherapy Association and The Fund for Physiotherapy in Private Practice.


Blood ◽  
2013 ◽  
Vol 122 (21) ◽  
pp. 2232-2232
Author(s):  
Catherine Seamon ◽  
Meghan Quinn ◽  
Gwenyth Wallen ◽  
Deepika S. Darbari ◽  
James G. Taylor

Abstract Introduction Sickle cell anemia (SCA) is the most prevalent Mendelian disease in the U.S. and is characterized by HbS polymerization, hemolytic anemia and vaso-occlusion. The hallmark clinical manifestation of SCA is acute vaso-occlusive pain crisis (VOC) with severe episodes requiring hospitalization for pain management. Vaso-occlusion resulting in pain is believed to occur with hypoxia, intra-vascular erythrocyte sickling and ischemia reperfusion injury. Recurring episodes of VOC often have no clear causation and may have effects upon physiological pain perception and intrinsic psychological characteristics like catastrophizing. It is not presently known if physiological pain processing or psychological factors influence pain in SCA compared to normal volunteers (NV). We hypothesized that adults with SCA would experience hypersensitivity to painful stimuli compared to NV as seen in other chronic painful conditions. Methods 18 subjects with SCA and 19 age and sex matched NV underwent quantitative sensory testing (QST) for thermal, pressure and ischemic experimental pain phenotypes. Thermal testing (cold and heat) was performed at 4 sites on the volar forearm for temperature at first detection, threshold for sensing pain, and pain tolerance. Pressure pain threshold and tolerance were measured bilaterally at the thumb, forearm, and trapezius with an algometer. Ischemic pain testing was performed on the non-dominant arm inflating a blood pressure cuff of 220 mmHg and determining time to threshold and tolerance. Subjects were also administered the Pain Catastrophizing Scale (PCS-E) which is composed of 13 questions that address 3 dimensions: rumination, magnification, and helplessness. SCA and NV subjects with chronic pain unrelated to complications of SCA were excluded. All SCA subjects tested at baseline pain levels at least 2 weeks since their last painful event requiring intravenous narcotics. Non-parametric t-tests were used to compare results between SCA subjects and NV. Results The mean age of SCA subjects was 33.4 (range 21-47) and NV was 32.1 (range 18-44). The only significant difference for thermal QST was temperature at first cold detection (SCA mean 24.5±6.3 ¢ªC vs. NV mean of 26.6±4.7 ¢ªC, P=0.05). There were no other significant thermal differences between SCA subjects and NV for cold pain threshold (P=0.84), cold pain tolerance (P=0.82), first heat detection (P=0.21), heat pain threshold (P=0.68) or heat pain tolerance (P=0.38). Furthermore, there were no differences in pressure between SCA and NV for pain thresholds at the thumb (P=0.31), forearm (P=0.44) or trapezius (P=0.10), nor were there pain tolerance differences at the thumb (P=0.63), forearm (P0.98) or trapezius (P=0.44). Surprisingly, ischemic pain QST showed no differences for initial pain threshold (468.3±263.1 seconds for SCA vs. 569.6±395.8 seconds for NV, P=0.69) or pain tolerance (642.5±245.4 seconds for SCA vs. 774.4±453.5 seconds for NV). Compared to NV, SCA subjects had significantly higher total catastrophizing (SCA median 30 vs. NV median 7, P=0.0005), rumination (SCA median 12 vs. NV median 3, P=0.0038), magnification (SCA median 8 vs. NV median 3, P=0.0006), and helplessness scores (SCA median 13 vs. NV median 3, P=0.0004). Conclusions Thermal detection of cold temperature change was the only observed difference, despite our hypothesis that recurrent painful episodes from SCA would alter sensitivity to experimental stimuli. Of particular interest are the results of ischemic pain QST, where SCA subjects appear to tolerate ischemia as well as NV despite the expectation this test would promote earlier forearm hypoxia, erythrocyte sickling and potentially vaso-occlusion. No significant difference in onset of ischemic pain between SCA and NV subjects appears to contradict the predominant pain vaso-occlusion paradigm for SCA. In addition, SCA subjects report significant levels of pain castastrophizing. Catastrophizing in other pain conditions may contribute to a psychological state that increases the severity of pain perception and a fear that pain control is impossible. Thus, catastrophizing may enhance chronic pain, pain impact, and its refractory response to pharmacotherapy. Further studies are necessary to determine if experimental pain or catastrophizing are associated with acute pain or chronic pain in SCA and to further elucidate the pathophysiology of pain in SCA. Disclosures: No relevant conflicts of interest to declare.


2019 ◽  
Vol 3 (Supplement_1) ◽  
pp. S338-S338
Author(s):  
Hyochol Ahn ◽  
Chengxue Zhong ◽  
Setor Sorkpor ◽  
Hongyu Miao

Abstract Osteoarthritis (OA) of the knee is one of the most common causes of pain in older adults. Clinic-based transcranial direct current stimulation (tDCS) is a noninvasive brain stimulation technique that has been shown to reduce pain, but no published studies have reported using home-based self-administered tDCS in older adults with knee OA. Thus, the purpose of this study was to examine the effect of home-based tDCS on experimental pain sensitivity in older adults with knee OA. Twenty community-dwelling participants aged 50–85 years with knee OA pain received ten daily sessions of 2 mA tDCS for 20 minutes at home. A multimodal quantitative sensory testing battery was completed, including heat pain tolerance, pressure pain threshold, and punctate mechanical pain. Participants (75% female) had a mean age of 61 years, and a mean body mass index in the sample was 28.33 kg/m2. All 20 participants completed all ten home-based tDCS sessions without serious adverse effects. The Wilcoxon Signed-Rank test showed that all the differences between the baseline measurements and experimental pain sensitivity measurements after 10 sessions were statistically significant. Effect sizes (Rosenthal’s R) were R = 0.35 for heat pain tolerance (P = 0.02), R = 0.40 for pressure pain threshold (P &lt; 0.01), and R = 0.32 for punctate mechanical pain (P = 0.02). We demonstrated that home-based self-administered tDCS was feasible and reduced experimental pain sensitivity in older adults with knee OA. Future studies with well-designed randomized controlled trials are needed to validate our findings.


2009 ◽  
Vol 23 (3) ◽  
pp. 104-112 ◽  
Author(s):  
Stefan Duschek ◽  
Heike Heiss ◽  
Boriana Buechner ◽  
Rainer Schandry

Recent studies have revealed evidence for increased pain sensitivity in individuals with chronically low blood pressure. The present trial explored whether pain sensitivity can be reduced by pharmacological elevation of blood pressure. Effects of the sympathomimetic midodrine on threshold and tolerance to heat pain were examined in 52 hypotensive persons (mean blood pressure 96/61 mmHg) based on a randomized, placebo-controlled, double-blind design. Heat stimuli were applied to the forearm via a contact thermode. Confounding of drug effects on pain perception with changes in skin temperature, temperature sensitivity, and mood were statistically controlled for. Compared to placebo, higher pain threshold and tolerance, increased blood pressure, as well as reduced heart rate were observed under the sympathomimetic condition. Increases in systolic blood pressure between points of measurement correlated positively with increases in pain threshold and tolerance, and decreases in heart rate were associated with increases in pain threshold. The findings underline the causal role of hypotension in the augmented pain sensitivity related to this condition. Pain reduction as a function of heart rate decrease suggests involvement of a baroreceptor-related mechanism in the pain attrition. The increased proneness of persons with chronic hypotension toward clinical pain is discussed.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Krzysztof Basiński ◽  
Agata Zdun-Ryżewska ◽  
David M. Greenberg ◽  
Mikołaj Majkowicz

AbstractMusic-induced analgesia (MIA) is a phenomenon that describes a situation in which listening to music influences pain perception. The heterogeneity of music used in MIA studies leads to a problem of a specific effect for an unspecified stimulus. To address this, we use a previously established model of musical preferences that categorizes the multidimensional sonic space of music into three basic dimensions: arousal, valence and depth. Participants entered an experimental pain stimulation while listening to compilations of short musical excerpts characteristic of each of the three attribute dimensions. The results showed an effect on the part of music attribute preferences on average pain, maximal pain, and pain tolerance after controlling for musical attributes and order effects. This suggests that individual preferences for music attributes play a significant role in MIA and that, in clinical contexts, music should not be chosen arbitrarily but according to individual preferences.


2020 ◽  
Vol 0 (0) ◽  
Author(s):  
Marie Udnesseter Lie ◽  
Bendik Winsvold ◽  
Johannes Gjerstad ◽  
Dagfinn Matre ◽  
Linda M. Pedersen ◽  
...  

AbstractObjectivesThe underlying mechanisms for individual differences in experimental pain are not fully understood, but genetic susceptibility is hypothesized to explain some of these differences. In the present study we focus on three genetic variants important for modulating experimental pain related to serotonin (SLC6A4 5-HTTLPR/rs25531 A>G), catecholamine (COMT rs4680 Val158Met) and opioid (OPRM1 rs1799971 A118G) signaling. We aimed to investigate associations between each of the selected genetic variants and individual differences in experimental pain.MethodsIn total 356 subjects (232 low back pain patients and 124 healthy volunteers) were genotyped and assessed with tests of heat pain threshold, pressure pain thresholds, heat pain tolerance, conditioned pain modulation (CPM), offset analgesia, temporal summation and secondary hyperalgesia. Low back pain patients and healthy volunteers did not differ in regards to experimental test results or allelic frequencies, and were therefore analyzed as one group. The associations were tested using analysis of variance and the Kruskal-Wallis test.ResultsNo significant associations were observed between the genetic variants (SLC6A4 5-HTTLPR/rs25531 A>G, COMT rs4680 Val158Met and OPRM1 rs1799971 A118G) and individual differences in experimental pain (heat pain threshold, pressure pain threshold, heat pain tolerance, CPM, offset analgesia, temporal summation and secondary hyperalgesia).ConclusionsThe selected pain-associated genetic variants were not associated with individual differences in experimental pain. Genetic variants well known for playing central roles in pain perception failed to explain individual differences in experimental pain in 356 subjects. The finding is an important contribution to the literature, which often consists of studies with lower sample size and one or few experimental pain assessments.


2014 ◽  
Vol 19 (1) ◽  
pp. e13-e18 ◽  
Author(s):  
Jacob M Vigil ◽  
Lauren N Rowell ◽  
Joe Alcock ◽  
Randy Maestes

BACKGROUND: There is no standardized method for cold pressor pain tasks across experiments. Temperature, apparatus and aspects of experimenters vary widely among studies. It is well known that experimental pain tolerance is influenced by setting as well as the sex of the experimenter. It is not known whether other contextual factors influence experimental pain reporting.OBJECTIVES: The present two-part experiment examines whether minimizing and standardizing interactions with laboratory personnel (eg, limiting interaction with participants to consenting and questions and not during the actual pain task) eliminates the influence of examiner characteristics on subjective pain reports and whether using different cold pain apparatus (cooler versus machine) influences reports.METHODS:The present experiment manipulated the gender of the experimenter (male, female and transgender) and the type of cold pressor task (CPT) apparatus (ice cooler versus refrigerated bath circulator). Participants conducted the CPT at one of two pain levels (5°C or 16°C) without an experimenter present.RESULTS:Men and women showed lower pain sensitivity when they were processed by biological male personnel than by biological female personnel before the CPT. Women who interacted with a transgendered researcher likewise reported higher pain sensitivity than women processed by biological male or female researchers. The type of CPT apparatus, despite operating at equivalent temperatures, also influenced subjective pain reports.DISCUSSION: The findings show that even minimal interactions with laboratory personnel who differ in gender, and differences in laboratory materials impact the reliable measurement of pain.CONCLUSION: More standardized protocols for measuring pain across varying research and clinical settings should be developed.


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