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Decoding difficulties of facial expression of emotions in mothers of children suffering from developmental obesity.

BACKGROUND: The relationship between developmental obesity and emotional problems has been particularly studied by Bruch. According to this author, the main reason for early-onset obesity has to be found in the difficulty of some mothers to adequately distinguish between emotional manifestations and the child's real need for food. In this paper an experiment was carried out in order to test the relationship between developmental obesity and poor ability to recognize facial expressions of some basic emotions. METHODS: A group of 20 mothers whose children suffered from serious early-onset obesity (experimental group) and another group of 20 mothers, whose children had slight overweight problems arising long after the first year of life (control group), were tested. Both mothers and their children were asked to recognize a set of facial expressions of emotions. 42 slides of facial expressions of emotions (anger, sadness, disgust, surprise, fear, happiness and neutral faces) were presented to subjects who were asked to mark on an answer sheet the name of the emotion expressed by the actor's face. RESULTS: A significant difference between the groups was found: a larger number of errors in the recognition of facial expression of emotions was made by mothers and their children in the experimental group. Furthermore a positive linear correlation between the number of errors made by the mothers and that made by their children was present. CONCLUSIONS: The findings do support Bruch's clinical observations. Further studies concerning other emotional signs (either nonverbal or verbal) are needed in order to assess the importance of emotional decoding difficulties in developmental obesity.

Adolescent↗

Correspondence of emotional self-rating with facial expression.

Emotional processing abilities are difficult to measure psychometrically. Ultimately their quantification has to rely on 'subjective' judgment thereby leaving open the problem of response biases. Assessments of autonomic arousal similarly provide a mere unspecified measurement of a specific emotion. A standardized mood induction procedure capable of obtaining reliable happy and sad mood changes in healthy subjects was used to demonstrate the effectiveness of this procedure. We performed a two-part experiment using a rater-based analysis of facial expressions. This entailed analyzing the emotion portrayed in the faces. The faces of 24 healthy subjects were videotaped during the mood induction procedure of happiness and sadness, respectively. A group of 20 raters naive to the experimental task and conditions rated the facial expressions on six basic emotions. Results showed that ratings corresponded with the facial expressions, which were reflecting the mood of the task condition. Subjects' facial expressions together with self-ratings demonstrate the successful applicability of this standardized mood induction procedure for eliciting happy and sad mood.

Adult↗

The understanding of the emotional meaning of facial expressions in people with autism.

Ten autistic individuals (mean age: 12.7 years, SD 3.8, range 5.10-16.0), 10 Down individuals (12.3 years, SD 3.0, range 7.1-16.0), and a control group of 10 children with normal development (mean age: 6.3 years, SD 1.6, range 4.0-9.4), matched for verbal mental age, were tested on a delayed-matching task and on a sorting-by-preference task. The first task required subjects to match faces on the basis of the emotion being expressed or on the basis of identity. Different from the typical simultaneous matching procedure the target picture was shortly presented (750 msec) and was not visible when the sample pictures were shown to the subject, thus reducing the possible use of perceptual, piecemeal, processing strategies based on the typical features of the emotional facial expression. In the second task, subjects were required to rate the valence of an isolated stimulus, such as facial expression of emotion or an emotional situation in which no people were represented. The aim of the second task was to compare the autistic and nonautistic children's tendency to judge pleasantness of a face using facial expression of emotion as a meaningful index. Results showed a significantly worse performance in autistic individuals than in both normal and Down subjects on both facial expression of emotion subtasks, although on the identity and emotional situation subtasks there were no significant differences between groups.

Adolescent↗

Development of responses by facial expressions and eye movements in neonates and young infants.

Eye movements and facial expressions were assessed in 177 normal neonates and infants under 150 days of age after the examiner gazed into their eyes for 20 seconds. Blinking to a threatening stimulus and turning of the eyes towards a red object near the examiner's face were tested. The eye movements abruptly changed from fine nystagmoid movements to distinct rolling movements suggesting observation of the examiner's face after 70-80 days of age. Rapid turning of the eyes towards the red object also appeared from the same age, while blinking developed gradually after 40 days of age. Most infants under 80-90 days of age knitted their brows and showed esophoria in response to the examiner's face or facial movements, but such responses gradually disappeared after 90 days of age when social smiles developed. Eye movements and facial expressions during early infancy are very informative in developmental evaluations.

Blinking↗

Decoding of facially expressed emotions in patients with psychosomatic gastrointestinal disorders.

The hypothesis that individuals with psychosomatic conditions are lacking in empathy was tested by investigating decoding abilities of facially expressed emotions. Fourteen subjects with psychosomatic gastrointestinal disorders and 14 matched controls participated. Slides of one male and one female model's facial expressions of anger, disgust, fear, happiness, sadness, and surprise, and a neutral face, were presented to subjects, with exposure durations of 1/60, 1/15, and 4 seconds. Subjects had to decide whether the face presented was neutral or expressed one of the basic emotions. There were no significant group differences in decoding neutral expressions, but significant differences resulted in decoding emotional expressions. This was mainly due to the significantly poorer performance of the psychosomatic group in decoding disgust. Subjects' responding was found to be reliable. The findings show that at least certain subgroups of psychosomatic patients tend to misinterpret another person's facial expressions that signal unpleasantness or interpersonal conflict.

Adult↗

Emotional facial expression decoding impairment in persons dependent on multiple substances: impact of a history of alcohol dependence.

OBJECTIVE: The decoding of emotional facial expressions is impaired in recovering alcoholics and less severely so in opiate-dependent persons without alcohol dependence antecedents. This study addressed two complementary questions: (1) How do these decoding deficits change with long-term abstinence during an institutionalized therapeutic program? and (2) Do alcohol-dependent antecedents constitute a factor impairing a potential recovery? METHOD: Sixty-five participants (54 men and 11 women) were recruited at a long-stay postdetoxification treatment center. They were assigned to one of four groups, depending on (1) whether or not they met alcohol dependence criteria in the past and (2) whether they were at therapeutic Stage 1 or Stage 2. Stage 1 was defined as being in the first 2 months of the therapeutic program, and Stage 2 was defined as being in the long-term therapeutic community (i.e., from 2 to 10 months of a therapeutic program). Participants were given an emotional facial-expression decoding test consisting of 16 photographs portraying happiness, anger, disgust and sadness. Participants were asked to rate the estimated intensity level of each photograph on eight scales labeled as happiness, sadness, fear, anger, disgust, surprise, shame and contempt--all presented successively. A complementary scale assessed the self-estimated difficulty in performing the task. RESULTS: Results show a greater deficit in individuals with substance dependence with past alcoholic dependence, compared with former substance-dependent persons who had never met the alcohol dependence criteria according to the Diagnostic and Statistical Manual of Mental Disorders, Fourth Edition. However, there was no effect of long-term abstinence on emotion decoding abilities whatever their past dependence. CONCLUSIONS: Substance dependence is associated with dysfunctions in emotional facial expression decoding processing, with alcohol dependence being linked with more impairments and no improvement after months of abstinence.

Adult↗

Differential effects of lesions of the amygdala and prefrontal cortex on recognizing facial expressions of complex emotions.

Humans can detect facial expressions of both simple, basic emotions and expressions reflecting more complex states of mind. The latter includes emotional expressions that regulate social interactions ("social expressions" such as looking hostile or friendly) and expressions that reflect the inner thought state of others ("cognitive expressions" such as looking pensive). To explore the neural substrate of this skill, we examined performance on a test of detection of such complex expressions in patients with lesions of the temporal lobe (n = 54) or frontal lobe (n = 31). Of the temporal group, 18 had unilateral focal lesions of the amygdala and of the frontal group, 14 patients had unilateral lesions of the ventromedial prefrontal cortex-two regions held to be pivotal in mediating social cognitive skills. Damage to either the left or right amygdala was associated with impairment in the recognition of both social and cognitive expressions, despite an intact ability to extract information relating to invariant physical attributes. Lesions to all of the right prefrontal cortex-not just the ventromedial portions-led to a specific deficit in recognizing complex social expressions with a negative valence. The deficit in the group with right prefrontal cortical damage may contribute to the disturbances in social behavior associated with such lesions. The results also suggest that the amygdala has a role in processing a wide range of emotional expressions.

Amygdala↗

The effects of intensive voice treatment on facial expressiveness in Parkinson disease: preliminary data.

OBJECTIVE: The purpose of the present retrospective study was to examine the effects of intensive voice therapy on facial expression in Parkinson disease. BACKGROUND: Parkinson disease (PD) often presents with symptoms that reduce communicative effectiveness on multiple levels, including decreased vocal loudness and reduced facial mobility. Recent advances in voice treatment have provided the first short- and long-term efficacy data indicating improvements in voice and speech following intensive voice therapy (Lee Silverman Voice Treatment [LSVT]). Anecdotal reports from both clinicians and patients indicate that the LSVT also has a positive impact on facial expression. These observations suggest a need to investigate more directly the effects of voice therapy on facial movement and expressiveness in PD. METHOD: Forty-four individuals with idiopathic PD participated in this study. Video data were taken from recordings of individuals with PD who had received either one month of phonation-based treatment (LSVT) or respiratory treatment (RT) as part of a large treatment efficacy study designed to examine the effects of different types of therapy on speech and voice in PD. Twenty-second video samples of all subjects taken before and after treatment were paired and played at random without sound to trained raters, who judged each pair of video clips for facial mobility and engagement. All recordings were made while subjects were engaged in conversational speech. RESULTS: Inter-rater reliability was extremely high (0.90) for both the rating of facial mobility and engagement. Overall, members of the LSVT group received more ratings of increased facial mobility (P = 0.036) and engagement (P = 0.056) following treatment relative to members of the RT group. In addition, the extent of change for facial mobility after treatment was perceived as greater (P = 0.05) for the LSVT group than for the RT group. CONCLUSIONS: These results indicate that intensive voice therapy may have a positive effect on facial expressivity in PD. Such findings lend support to contemporary theories relating multiple expressive modalities (e.g., voice, face, and gesture) and suggest that targeting voice may be an effective and efficient way to influence expressive output in general.

Aged↗

Reactions to facial expressions: effects of social context and speech anxiety on responses to neutral, anger, and joy expressions.

Male and female participants (n=19) high or low in speech fear viewed pictures of faces posed in anger, neutral, and joyful expressions for 8s each. Zygomaticus major and corrugator supercilii EMG, skin conductance, and heart rate were measured during picture viewing, and subjective ratings were made after each picture. Compared to anger expressions, joy expressions were responded to with greater zygomatic EMG, less corrugator EMG, and greater heart rate and skin conductance. Physiological response to neutral expressions was similar to response to anger expressions. Expressions posed by women were responded to physiologically more negatively than expressions posed by men. More fearful participants exhibited more negative and less positive facial expressions, and skin conductance responses suggesting greater attention when viewing negative expressions. Results suggest that reactions to facial expressions are influenced by social context, and are not simple mimicry.

Adult↗

Processing emotional facial expressions influences performance on a Go/NoGo task in pediatric anxiety and depression.

BACKGROUND: This study investigated whether processing emotionally salient information such as emotional facial expressions influences the performance on a cognitive control task in pediatric anxiety and depression. METHODS: The sample included 68 participants between 8 and 16 years of age selected into three diagnostic groups: Anxiety Disorder (ANX, n = 23), Major Depressive Disorder (MDD, n = 19), and Low-Risk Normal Control (LRNC, n = 26). Participants completed an Emotional Go/NoGo task in which participants must either respond to (Go trials) or not respond to (NoGo trials) specific facial expressions (angry, fearful, sad, happy, neutral). In order to manipulate the level of cognitive control needed to perform the task, the probability of occurrence of the Go trials was varied across 3 probability conditions (low, moderate, high). RESULTS: Analyses showed that the MDD group had significantly faster reaction times to sad face Go trials embedded in neutral face NoGo trials in the moderate probability condition and that the ANX group had significantly slower reaction times to neutral face Go trials embedded in angry face NoGo trials in the low probability condition. CONCLUSIONS: These data demonstrate that processing emotional facial expressions influences the performance on a cognitive control task in children and adolescents diagnosed with an anxiety disorder and major depression.

Adolescent↗

Facial expression and the affective component of cynical hostility in male coronary heart disease patients.

This study describes the affective component of hostility as measured by the Cook-Medley Hostility Scale (Ho; W. Cook & D. Medley, 1954) by examining the relationship between facial expressions of emotion and Ho scores in 116 male coronary heart disease patients. Patients underwent the videotaped Type A Structured Interview, from which facial expressions were later coded using the Facial Action Coding System. They also completed the Cook-Medley Ho scale. Facial expression of the emotion of contempt was significantly related to Ho scores; anger expression was not. Also, there was a significant interaction between hostility and defensiveness, wherein low-defensive, highly hostile people showed substantially more contempt expression than others. The implications of these findings for the construct validity of Ho and for identifying clinically important subtypes of hostility are discussed.

Adult↗

Affective Simon effects using facial expressions as affective stimuli.

Two experiments are reported in which facial expressions were presented and participants were asked to respond with the word POSITIVE or NEGATIVE on the basis of a relevant feature of the facial stimuli while ignoring the valence of the expression. Results showed that reaction times were influenced by the match between the valence of the facial expression and the valence of the correct response when the identity of the presented person had to be determined in order to select the correct response, but not when the gender of the presented person was relevant. The present experiments illustrate the flexibility of the affective Simon paradigm and provide a further demonstration of the generalizability of the affective Simon effect.

Adult↗

Violent media consumption and the recognition of dynamic facial expressions.

This study assessed the speed of recognition of facial emotional expressions (happy and angry) as a function of violent media consumption. Color photos of calm facial expressions morphed to either an angry or a happy facial expression. Participants were asked to make a speeded identification of the emotion (happiness or anger) during the morph. Results indicated that, independent of trait aggressiveness, participants high in violent media consumption responded slower to depictions of happiness and faster to depictions of anger than participants low in violent media consumption. Implications of these findings are discussed with respect to current models of aggressive behavior.

Adult↗

Processing emotional facial expressions: the role of anxiety and awareness.

In this paper, the role of self-reported anxiety and degree of conscious awareness as determinants of the selective processing of affective facial expressions is investigated. In two experiments, an attentional bias toward fearful facial expressions was observed, although this bias was apparent only for those reporting high levels of trait anxiety and only when the emotional face was presented in the left visual field. This pattern was especially strong when the participants were unaware of the presence of the facial stimuli. In Experiment 3, a patient with right-hemisphere brain damage and visual extinction was presented with photographs of faces and fruits on unilateral and bilateral trials. On bilateral trials, it was found that faces produced less extinction than did fruits. Moreover, faces portraying a fearful or a happy expression tended to produce less extinction than did neutral expressions. This suggests that emotional facial expressions may be less dependent on attention to achieve awareness. The implications of these results for understanding the relations between attention, emotion, and anxiety are discussed.

Adult↗

Reduced facial expression and social context in major depression: discrepancies between facial muscle activity and self-reported emotion.

The expression of emotion is determined by emotion and the presence and absence of others, i.e. social context. The present study examined social context differences in facial muscle activity and self-reported emotion of 11 major depressed and 11 non-depressed patients. Subjects were asked to imagine happy and sad situations with and without visualizing other people. Facial muscle activity over the brow and cheek region was reduced in depressed compared to non-depressed patients during happy and sad imagery whereas self-reported emotion showed no group differences. In both subject groups, happy imagery induced increased smiling and self-reported happiness whereas sad imagery induced increased frowning and self-reported sadness. Smiling and self-reported happiness were increased during happy-social compared to happy-solitary imagery in both groups. In contrast, frowning showed a lack of social context differences, although self-reported sadness was increased during sad-social vs. sad-solitary imagery in both groups. Reduced facial muscle activity in depression may indicate psychomotor retardation whereas the lack of social context differences in frowning may suggest social disengagement and an inhibition of sad facial expression in the presence of others.

Adult↗

Schematic drawings of facial expressions for emotion recognition and interpretation by preschool-aged children.

Schematic drawings of facial expressions were evaluated as a possible assessment tool for research on emotion recognition and interpretation involving young children. A subset of Ekman and Friesen's (1976) Pictures of Facial Affect was used as the standard for comparison. Preschool children (N = 138) were shown drawing and photographs in two context conditions for six emotions (anger, disgust, fear, happiness, sadness, and surprise). The overall correlation between accuracy for the photographs and drawings was .677. A significant difference was found for the stimulus condition (photographs vs. drawings) but not for the administration condition (label-based vs. context-based). Children were significantly more accurate in interpreting drawings than photographs and tended to be more accurate in identifying facial expressions in the label-based administration condition for both photographs and drawings than in the context-based administration condition.

Age Factors↗

Relationship between facial expressiveness and sympathetic activation in emotion: a critical review, with emphasis on modeling underlying mechanisms and individual differences.

Two important questions bearing on personality processes and individual differences are how do facial expressiveness and sympathetic activation vary as a function of the intensity of an emotional stimulus, and what is the functional mechanism underlying facial expressiveness and sympathetic activation in emotion? A formulation is proposed that is based on 2 propositions: (a) All strong emotions result in some degree of activation of the organism (i.e., principle of stimulus dynamism) and (b) there are individual differences in the gain (amplification) operating on the facial expressive and sympathetic response channels (i.e., principle of individual response uniqueness). This formulation organizes much of the existing data on internalizers and externalizers and yields novel predictions regarding the subpopulation labeled as generalizers.

Arousal↗

The Noh mask test for analysis of recognition of facial expression.

A preliminary study on the Noh mask test for analysis of recognition of facial expression was performed. The present study was conducted on 15 normal subjects (mean age: 32 years, SD 9.7 years) as the first step to test for the differences between psychiatric patients and normal subjects. Stimuli were created by photographs of 15 Noh masks at different vertical angles. Subjects were given 12 tasks (12 emotion items), and each task consisted of 15 trials (15 Noh mask images). In each trial, the subject viewed a colour monitor, and was shown an emotion item, followed by a Noh mask image. The subject pressed either the yes or no key to indicate whether the Noh mask image expressed the emotion item. The subject's response and reaction time to each Noh mask image showed no deviation, although the subject's response and reaction time to each emotion item showed some deviation. As the vertical angle of the Noh mask changed, normal subjects recognized all emotion items except the 'uncanny' expression. Factor analysis of the 15 Noh mask images produced three factors, and the analysis of 12 emotion items produced five factors. Thus, the Noh mask test was simplified to nine images and nine items. Further developments of the Noh mask test may include the evaluation of the dysfunction of perception on delicate facial expression in psychiatric patients.

Adult↗