CELLULAR IMAGING CORE (CORE C) ABSTRACT The research efforts of IDDRC investigators at Boston Children's Hospital and Harvard Medical School have increasingly come to rely on high-end and expensive microscopy and digital imaging approaches. Understanding the underlying mechanisms and structural changes associated with neurodevelopmental disorders require that researchers visualize the morphological and cell signaling events in fixed tissue and in intact network of cells in situ, such as in in vitro organ explants and in vivo awake behaving organisms. The IDDRC Cellular Imaging Core furthers research and advancement of knowledge by lowering barriers to entry for state-of-the-art light microscopy.
Our specific aims are: 1) To provide affordable access to high-end microscopy instruments and image analysis workstations. 2) To provide training, consultation and education to IDDRC researchers, and 3) To identify and obtain new equipment and technology that is relevant to the research of IDDRC investigators. The core offers multiphoton, confocal and widefield microscopes as well as image analysis workstations and software that are widely used by IDDRC investigators. Over the past grant period, 32 IDDRC labs have used the core an average of 9,187 hours/year. During this period, the core expanded its capacity and capabilities by raising $1.4 million in outside funding for the purchase of new instrumentation, including a $500,000 NIH shared instrumentation grant for a multiphon/confocal. IDDRC investigators have used the core to investigate and advance our understanding of normal and pathological neural development, plasticity, and function. The goal of the Boston Children's Hospital IDDRC Cellular Imaging Core for this next funding period is to continue to provide IDDRC investigators with affordable access to state-of-the-art equipment, services, training and advice for projects using light microscopy. In fulfilling this goal, the core helps to insure that instrument cost or technical complexity will not slow or thwart research into intellectual disabilities and developmental disorders.

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 #
5U54HD090255-04
Application #
9748881
Study Section
Special Emphasis Panel (ZHD1)
Project Start
Project End
Budget Start
2019-06-01
Budget End
2020-05-31
Support Year
4
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Boston Children's Hospital
Department
Type
DUNS #
076593722
City
Boston
State
MA
Country
United States
Zip Code
02115
Smith, Richard S; Kenny, Connor J; Ganesh, Vijay et al. (2018) Sodium Channel SCN3A (NaV1.3) Regulation of Human Cerebral Cortical Folding and Oral Motor Development. Neuron 99:905-913.e7
Wagner, Jennifer B; Luyster, Rhiannon J; Moustapha, Hana et al. (2018) Differential Attention to Faces in Infant Siblings of Children with Autism Spectrum Disorder and Associations with Later Social and Language Ability. Int J Behav Dev 42:83-92
Tsai, Peter T; Rudolph, Stephanie; Guo, Chong et al. (2018) Sensitive Periods for Cerebellar-Mediated Autistic-like Behaviors. Cell Rep 25:357-367.e4
Cobos, Enrique J; Nickerson, Chelsea A; Gao, Fuying et al. (2018) Mechanistic Differences in Neuropathic Pain Modalities Revealed by Correlating Behavior with Global Expression Profiling. Cell Rep 22:1301-1312
Dao, Duy T; Vuong, Jacqueline T; Anez-Bustillos, Lorenzo et al. (2018) Intranasal delivery of VEGF enhances compensatory lung growth in mice. PLoS One 13:e0198700
Liu, Changliang; Kershberg, Lauren; Wang, Jiexin et al. (2018) Dopamine Secretion Is Mediated by Sparse Active Zone-like Release Sites. Cell 172:706-718.e15
Hsu, Cynthia P; Moghadaszadeh, Behzad; Hartwig, John H et al. (2018) Sarcomeric and nonmuscle ?-actinin isoforms exhibit differential dynamics at skeletal muscle Z-lines. Cytoskeleton (Hoboken) 75:213-228
van der Burg, Jelske W; O'Shea, T Michael; Kuban, Karl et al. (2018) Are Extremely Low Gestational Age Newborns Born to Obese Women at Increased Risk of Cerebral Palsy at 2 Years? J Child Neurol 33:216-224
Zhang, Fan; Wu, Weining; Ning, Lipeng et al. (2018) Suprathreshold fiber cluster statistics: Leveraging white matter geometry to enhance tractography statistical analysis. Neuroimage 171:341-354
Joyal, Jean-Sébastien; Gantner, Marin L; Smith, Lois E H (2018) Retinal energy demands control vascular supply of the retina in development and disease: The role of neuronal lipid and glucose metabolism. Prog Retin Eye Res 64:131-156

Showing the most recent 10 out of 498 publications