# Instrumentation Core

> **NIH NIH P30** · VANDERBILT UNIVERSITY MEDICAL CENTER · 2021 · $154,839

## Abstract

PROJECT SUMMARY: INSTRUMENTATION SERVICE MODULE
 The Vanderbilt Vision Research Center (VVRC) includes faculty investigators with strong interest in
discerning relationships between visual circuits and behavior, between cortical structures and physiology, and
between brain regions and perception/behavior. These cellular- and systems-level investigations require
access to expert design, fabrication, digital programming and maintenance of custom equipment and interface
systems, especially for the use of non-human primates and human experimentation. The purpose of the VVRC
Instrumentation Module is to is to provide a comprehensive service for the design, fabrication, maintenance,
repair and electronic programming and interfacing of equipment to ensure the integrity of ongoing
experimentation requiring custom services either unavailable commercially or prohibitively expensive. The
Instrumentation Module provides not only machine shop fabrication of custom equipment, but electronics and
systems engineering for digital interfacing of equipment. This module is a VVRC-intrinsic core and is not part of
a VUMC institutional facility; therefore, the service is provided to VVRC members by request and not through
the VUMC Office of Research scholarship platform. In the current funding period the instrumentation module
contributed resources in support of 14 investigators with 68 publications resulting from use of the service.
These are indicated as such in our Progress Report Core Publications by Investigator document. Availability of
this module during the current period saved VVRC investigators $513,070 in machinist and systems engineer
costs that otherwise would have to be obtained commercially. A survey of researcher plans indicates that the
use of this service will increase, with moderate to extensive use by 22 of 36 VVRC investigators. The
instrumentation module, housed in 2000 sq ft of machine shop in the Hobbs Building proximal to VVRC
investigators with additional electronics shop space (160 sq ft) in Wilson Hall near primary users, is directed by
VVRC Investigator Geoffrey Woodman, PhD. Using this space and personnel supported in part by this Core
mechanism, the VVRC Instrumentation Module will: (1) design and fabricate custom equipment, (2) design,
fabricate and program custom interface systems, (3) maintain and repair existing equipment in VVRC
laboratories, and (4) modify and refine equipment and digital interface components as VVRC faculty needs
evolve. These services and resources will enhance the scope of experimentation NEI-funded VVRC
investigators conduct, promote innovation through creation of specialized equipment and interface
components, and enhance collaboration by providing instrumentation support to those who otherwise would
not have such capabilities, including early-career vision scientists and clinician-scientists competing for
extramural funding for their laboratories.

## Key facts

- **NIH application ID:** 10246446
- **Project number:** 5P30EY008126-34
- **Recipient organization:** VANDERBILT UNIVERSITY MEDICAL CENTER
- **Principal Investigator:** GEOFFREY F WOODMAN
- **Activity code:** P30 (R01, R21, SBIR, etc.)
- **Funding institute:** NIH
- **Fiscal year:** 2021
- **Award amount:** $154,839
- **Award type:** 5
- **Project period:** 1997-04-01 → 2024-08-31

## Primary source

NIH RePORTER: https://reporter.nih.gov/project-details/10246446

## Citation

> US National Institutes of Health, RePORTER application 10246446, Instrumentation Core (5P30EY008126-34). Retrieved via AI Analytics 2026-05-22 from https://api.ai-analytics.org/grant/nih/10246446. Licensed CC0.

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