# High-throughput optical investigation into intact large-scale nervous systems for Alzheimers disease

> **NIH NIH K99** · MASSACHUSETTS GENERAL HOSPITAL · 2020 · $137,084

## Abstract

Project Summary
Alzheimer’s disease (AD) is an irreversible neurodegenerative disease with its underlying cause poorly under-
stood. Although many research have been conducted to understand its pathological origin using advanced
imaging technologies, current discoveries have mainly stemmed from studies on microscopic systems with lim-
ited number of cells. While increasingly many evidences have indicated that the interaction among various
groups of cells across the entire nervous system holds the key to those unanswered questions in AD, large-
scale volumetric investigation are limited by current imaging technologies. First, microscale methods used
in conventional histopathology, such as electron or light microscopy, require extensive tissue sectioning for
thick samples, leading to prolonged imaging time and the diﬃculty of 3D reconstruction from 2D images due
to tissue deformation. On the other end, insuﬃcient spatial resolution and limited molecular speciﬁcity of
macroscale approaches, such as MR/PET/CT, have made them less attractive for pathological studies. Thus,
the goal of this project is to develop an optical imaging method that not only provides high resolution and
molecular contrast suitable for the pathology of the nervous systems in AD mouse models, but also oﬀers en-
abling high-throughput for those large-scale investigations demanded by many of today’s AD research. This
proposal plans to address the above imaging needs by creating coherent optical imaging apparatus to pro-
vide the enabling high-throughput and high resolution, by developing new tissue processing methods to oﬀer
the molecular contrast in intact tissues, by building computational tools to assist the biological interpretation
of imaging results. The outcome of the proposed research is expected to be a set of new research tools that
facilitate large-cohort studies on AD mouse models with brain-wide big-data acquisition and analysis. This
mentored project is aimed to facilitate the PI (Dr. Jian Ren) to achieve his goal of obtaining research inde-
pendence. Through the proposed research, the PI will obtain complementary expertise from his mentors, a
team of leading scientists including Dr. Brett Bouma (optical imaging), Dr. Bradley Hyman (neurology and
AD), Dr. Sangeeta Bhatia (nanomedicine and tissue engineering), Dr. Tayyaba Hasan (photodynamic ther-
apy), Dr. Edward Boyden (neuroscience and optogenetics), and Dr. Bruce Fischl (computational neuroimag-
ing and MRI). This combined technical strength will be integrated with training on career development skill,
facilitating the transition of the PI to an independent investigator in the biomedical ﬁeld. The PI will con-
duct this project mainly in the Wellman Center for Photomedicine at Massachusetts General Hospital, which
is surrounded by several world-renowned universities and research institutions in both life and physical sci-
ences. Leveraging the support from the PI’s mentors, he will have access to numerous researc...

## Key facts

- **NIH application ID:** 9973044
- **Project number:** 5K99AG059946-02
- **Recipient organization:** MASSACHUSETTS GENERAL HOSPITAL
- **Principal Investigator:** Jian Ren
- **Activity code:** K99 (R01, R21, SBIR, etc.)
- **Funding institute:** NIH
- **Fiscal year:** 2020
- **Award amount:** $137,084
- **Award type:** 5
- **Project period:** 2019-07-15 → 2023-03-31

## Primary source

NIH RePORTER: https://reporter.nih.gov/project-details/9973044

## Citation

> US National Institutes of Health, RePORTER application 9973044, High-throughput optical investigation into intact large-scale nervous systems for Alzheimers disease (5K99AG059946-02). Retrieved via AI Analytics 2026-05-22 from https://api.ai-analytics.org/grant/nih/9973044. Licensed CC0.

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