# Nanoscale Microscopy and Molecular Physiology of the Brain Cluster of Excellence 171 — DFG Research Center 103

> facility in Göttingen, Germany

**Wikidata**: [Q59536676](https://www.wikidata.org/wiki/Q59536676)  
**Source**: https://4ort.xyz/entity/nanoscale-microscopy-and-molecular-physiology-of-the-brain-cluster-of-excellence-171-dfg-research-center-103

## Summary
The Nanoscale Microscopy and Molecular Physiology of the Brain Cluster of Excellence 171 — DFG Research Center 103 (CNMPB) is a research institute in Göttingen, Germany, established in 2002. It focuses on advancing nanoscale microscopy and molecular physiology to study the brain at unprecedented resolution.

## Key Facts
- **Inception**: Founded in 2002.
- **Location**: Göttingen, Germany.
- **Coordinates**: 51.544157° N, 9.939987° E.
- **Type**: Research institute.
- **Website**: [http://www.cnmpb.de/index.php?lang=en_EN](http://www.cnmpb.de/index.php?lang=en_EN).
- **Aliases**: CNMPB.
- **Funding**: Supported by the German Research Foundation (DFG).
- **Identifiers**: ROR ID 02wkzzr31, GRID ID grid.500236.2.

## FAQs
### Q: What is the Nanoscale Microscopy and Molecular Physiology of the Brain Cluster of Excellence 171 — DFG Research Center 103?
A: It is a research institute in Göttingen, Germany, focused on nanoscale microscopy and molecular physiology to study the brain at high resolution.

### Q: Where is the institute located?
A: The institute is located in Göttingen, Germany, with coordinates 51.544157° N, 9.939987° E.

### Q: When was the institute founded?
A: The institute was founded in 2002.

### Q: What is the institute's website?
A: The institute's website is [http://www.cnmpb.de/index.php?lang=en_EN](http://www.cnmpb.de/index.php?lang=en_EN).

### Q: What is the institute's ROR ID?
A: The institute's ROR ID is 02wkzzr31.

## Why It Matters
The Nanoscale Microscopy and Molecular Physiology of the Brain Cluster of Excellence 171 — DFG Research Center 103 plays a crucial role in advancing brain research through nanoscale microscopy and molecular physiology. By studying the brain at unprecedented resolution, the institute contributes to understanding neural processes, potentially leading to breakthroughs in neuroscience, medicine, and technology. Its work supports the German Research Foundation’s mission to push the boundaries of scientific knowledge, particularly in the field of neuroscience.

## Notable For
- **Nanoscale Resolution**: Specializes in high-resolution microscopy techniques to study brain structures.
- **Molecular Physiology**: Focuses on the molecular mechanisms underlying brain function.
- **DFG Funding**: Supported by the German Research Foundation, ensuring sustained research funding.
- **Göttingen Hub**: A key research center in Göttingen, contributing to the city’s scientific ecosystem.
- **Interdisciplinary Approach**: Combines physics, biology, and neuroscience to advance brain research.

## Body
### Overview
The Nanoscale Microscopy and Molecular Physiology of the Brain Cluster of Excellence 171 — DFG Research Center 103 (CNMPB) is a research institute dedicated to studying the brain at the nanoscale level. Established in 2002, it is located in Göttingen, Germany, and operates under the German Research Foundation (DFG).

### Research Focus
The institute specializes in nanoscale microscopy and molecular physiology, aiming to uncover the molecular mechanisms underlying brain function. Its work involves high-resolution imaging techniques to study neural structures and processes.

### Location and Accessibility
- **Address**: Göttingen, Germany.
- **Coordinates**: 51.544157° N, 9.939987° E.
- **Website**: [http://www.cnmpb.de/index.php?lang=en_EN](http://www.cnmpb.de/index.php?lang=en_EN).

### Funding and Recognition
- **Funding**: Supported by the DFG.
- **Identifiers**: ROR ID 02wkzzr31, GRID ID grid.500236.2.

### Impact
The institute’s research contributes to neuroscience, potentially leading to advancements in brain disorders, neural engineering, and cognitive science. Its work is recognized for its innovative approaches to studying the brain at the molecular level.

## References

1. GRID Release 2018-11-14