Waisman Center investigators study intellectual and developmental disabilities (IDD) through investigating the brain structure and function of individuals exhibiting these conditions or at risk for these conditions, or in animal models of these conditions. The Waisman Brain Imaging Core (BIC) provides all of the tools and services required for these types of investigations and includes facilities for magnetic resonance imaging (MRI), human positron emission tomography (PET), high-resolution PET for animal imaging, ancillary physiological recordings during imaging, and extensive software tools and training for image analysis. This facility occupies a key role in providing systems level neuroscience that lies at the interface between the behavioral and molecular levels of analysis. We propose the following specific aims for the next project period.
Aim 1 is to develop and translate hardware and software technologies for magnetic resonance imaging (MRI) neuroimaging studies of normal development, atypical development, and neurodegeneration in both humans and animal models. The objectives of this aim encompass all of the major modalities of MRI and include structural MRI, diffusion weighted imaging to examine white matter connectivity, and functional MRI. We also provide access to a highly realistic MRI simulator to enable participants to acclimate to the procedures and rehearse the behavioral protocols that are used in scanning.
Aim 2 is to develop and translate radiotracers and methodologies for using positron emission tomography (PET) neuroimaging to study normal development, atypical development and neurodegeneration in humans. The objectives of this aim include radio- pharmaceutical development to translate the use of novel radiotracers for the study of molecules relevant to understanding IDD. The BIC provides access to expertise in radiotracer development and PET physics expertise to characterize the kinetics and quantification of novel PET neuroligands. The BIC also performs regular maintenance and quality control for the Siemens PET scanner.
Aim 3 is to provide high quality macaque and rodent PET neuroimaging services. The objectives of this aim include the maintenance of two microPET scanners and the development of protocols with PIs to use high resolution microPET imaging to characterize the neurochemistry of IDD in non-human primates and rodents.
Aim 4 is to provide training and technical support for investigators and their staffs in the use of all of the imaging modalities in the BIC. The objectives of this aim include the conduct of courses and training workshops, regular technical updates at BIC monthly meetings and lab meetings of the participating PIs, specialized consultation with the staff and students of PIs, development of specialized scanning sequences and data acquisition protocols for novel applications and consultation, and support in statistical analysis of imaging data.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
5U54HD090256-05
Application #
10005050
Study Section
Special Emphasis Panel (ZHD1)
Project Start
Project End
Budget Start
2020-06-01
Budget End
2021-05-31
Support Year
5
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Type
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Travers, Brittany G; Mason, Andrea H; Mrotek, Leigh Ann et al. (2018) Biofeedback-Based, Videogame Balance Training in Autism. J Autism Dev Disord 48:163-175
Phillips, M Joseph; Capowski, Elizabeth E; Petersen, Andrew et al. (2018) Generation of a rod-specific NRL reporter line in human pluripotent stem cells. Sci Rep 8:2370
Song, Jieun; Mailick, Marsha R; Greenberg, Jan S (2018) The Impact of the Great Recession on Midlife and Older parents of Individuals With a Mental Health Problem or a Developmental Disability. Gerontologist 58:448-455
Eisinger, Brian E; Zhao, Xinyu (2018) Identifying molecular mediators of environmentally enhanced neurogenesis. Cell Tissue Res 371:7-21
St John, Brittany; Mihaila, Iulia; Dorrance, Katelyn et al. (2018) Reflections From Co-Researchers With Intellectual Disability: Benefits to Inclusion in a Research Study Team. Intellect Dev Disabil 56:251-262
Dong, Qiping; Liu, Qing; Li, Ronghui et al. (2018) Mechanism and consequence of abnormal calcium homeostasis in Rett syndrome astrocytes. Elife 7:
Roebuck, Hettie; Sindberg, Heidi; Weismer, Susan Ellis (2018) The Role of Language in Nonlinguistic Stimuli: Comparing Inhibition in Children With Language Impairment. J Speech Lang Hear Res 61:1216-1225
Rubenstein, Eric; Durkin, Maureen S; Harrington, Rebecca A et al. (2018) Relationship Between Advanced Maternal Age and Timing of First Developmental Evaluation in Children with Autism. J Dev Behav Pediatr 39:601-609
Usher, Lauren V; DaWalt, Leann S; Greenberg, Jan S et al. (2018) Unaffected siblings of adolescents and adults with fragile X syndrome: Effects on maternal well-being. J Fam Psychol :
Sakash, Ashley; Broman, Aimee Teo; Rathouz, Paul J et al. (2018) Executive function in school-aged children with cerebral palsy: Relationship with speech and language. Res Dev Disabil 78:136-144

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