Comparing Neural Responses to Explicit and Subliminal Food Images in EDNOS Patients and Healthy Controls Using fMRI
试验速览
- 阶段
- 不适用
- 状态
- 暂停
- 发起方
- 入组人数
- 150
- 试验地点
- 2
- 主要终点
- Measure functional differences in adolescents with eating disorders and healthy controls.
研究概览
简要总结
Currently, there is not a robust, testable neural model available that sufficiently explains the development and maintenance of anorexia nervosa (AN) a severe, often fatal, adolescent-onset eating disorder. Using state of the art neuroimaging and neuropsychological techniques, our objective is to identify neural mechanisms in the adolescent brain underlying AN. This is of high clinical relevance in as much as it will provide a robust platform for a diagnostic battery so that physicians can identify those who are prone to develop AN at a very early stage of life.
The aim of this research plan is: 1) To develop knowledge of cognitive dysfunction in adolescents who have recently been diagnosed with AN, with a battery of cognitive tests during a series of clinical visits. 2) To provide a scientific basis for our knowledge about how the brain of an adolescent with an eating disorder differs from that of a healthy adolescent, by conducting functional and structural magnetic resonance imaging on adolescent females with AN.
详细描述
Adolescents with eating disorders have debilitating cognitive disturbances that impact on their social, educational and physical health. One cognitive trait that is found to form core cognitive disturbances in AN is superior working memory (WM). WM is the ability to ruminate on a cognitive strategy while attending to the details of another task, excluding non-relevant stimuli, and is linked to activation of the dorsolateral prefrontal cortex (DLPFC). By administering functional Magnetic Resonance Imaging (fMRI) we have recently found that females with AN have increased activation in the DLPFC and reduced appetitive brain responses when thinking about eating food shown in visual images. This suggests that the increased WM capacity in AN may serve to suppress food intake, but this has not yet been clarified. In line with this assumption, we have also shown that restraint of appetite in those with AN was linked to greater plasticity in the DLPFC. Furthermore, Transcranial Magnetic Stimulation (TMS) of the DLPFC reduces appetitive responses to food stimuli in adults with eating disorders. Conversely, we have shown that being obese is linked to reduced structure and abnormal function in the DLPFC, as well as reduced attentional control/WM performance. Therefore, it is likely that DLPFC-related WM function is associated with eating disorders, particularly cognitive restraint of appetite.
It is likely that the interaction between appetitive brain regions and specific prefrontal cortex (PFC) cognitions determines whether an adolescent develops anorexia nervosa. We aim to provide neuropsychological and brain imaging measures showing how a specific cognitive function is linked to early-onset disordered eating behaviour, and we will do this before and after standard clinical treatment. We suggest that such understanding could enable school nurses to use the unique paradigm we use in our fMRI study, to detect illness before it damages the child's life and becomes difficult to treat.
The study has now been increased to include genetic components to examine the genetic and epigenetic variation for genes found to be linked with eating disorders.
研究设计
- 研究类型
- Observational
- 观察模型
- Case Control
- 时间视角
- Cross Sectional
入排标准
- 年龄范围
- 13 Years 至 18 Years(Child, Adult)
- 性别
- Female
- 接受健康志愿者
- 是
入选标准
- •Age 13 - 18 yrs
- •Right handed
- •For controls: BMI within the "normal" range
- •For patients: Be admitted to treatment for an eating disorder
排除标准
- •On medication
- •Suffering from any other illnesses
- •Left handed
- •Metal implants which can impact the fMRI image
- •Severe claustrophobia
- •Pregnancy
- •Regular alcohol drinker
研究组 & 干预措施
Eating disorder
Patients currently in treatment for eating disorders.
Healthy Controls
Age- and gender matched healthy controls.
结局指标
主要结局
Measure functional differences in adolescents with eating disorders and healthy controls.
时间窗: This is measured during scanning shortly after patient admittance to treatment, and one year later. Controls have their scans shortly after being recruited to the study, then again 1 year later.
The analysis of each groups' neural activity will be carried out with statistical parametric mapping (SPM) implemented in Matlab. This will compare the statistical parametric maps between the group using ANOVAs, ANCOVAs and t-tests.
次要结局
- Measure structural differences in adolescents with eating disorders and healthy controls.(This is measured during scanning shortly after patient admittance to treatment, and one year later. Controls have their scans shortly after being recruited to the study, then again 1 year later.)
- To examine whether clinical variables can predict neural activity.(The neural activity is measured during scanning shortly after subject recruitment, and one year later. The clinical measurements are measured with questionnaires given to them on their first meeting after recruitment, which are later posted back to us.)
- Develop knowledge of cognitive dysfunction in adolescents with eating disorders.(The cognitive measures are conducted shortly after recruitment of the study. The subjects are given the questionnaires upon their first meeting, and are posted back to us shortly after.)
