Ting Du

Ting Du

University of Rochester

H-index: 24

North America-United States

About Ting Du

Ting Du, With an exceptional h-index of 24 and a recent h-index of 15 (since 2020), a distinguished researcher at University of Rochester,

His recent articles reflect a diverse array of research interests and contributions to the field:

Artificial intelligence velocimetry reveals in vivo flow rates, pressure gradients, and shear stresses in murine perivascular flows

Loss of aquaporin-4 results in glymphatic system dysfunction via brain-wide interstitial fluid stagnation

ALAIV: Assessing Lymphatic Flows through Artificial Intelligence Velocimetry

Age-and glaucoma-induced changes to the ocular glymphatic system

Sizes and shapes of perivascular spaces surrounding murine pial arteries

Measurements of cerebrospinal fluid production: a review of the limitations and advantages of current methodologies

Cerebrospinal fluid is a significant fluid source for anoxic cerebral oedema

Bulk flow of cerebrospinal fluid observed in periarterial spaces is not an artifact of injection

Ting Du Information

University

Position

___

Citations(all)

2615

Citations(since 2020)

2027

Cited By

1204

hIndex(all)

24

hIndex(since 2020)

15

i10Index(all)

32

i10Index(since 2020)

18

Email

University Profile Page

Google Scholar

Top articles of Ting Du

Artificial intelligence velocimetry reveals in vivo flow rates, pressure gradients, and shear stresses in murine perivascular flows

Proceedings of the National Academy of Sciences

2023/4/4

Loss of aquaporin-4 results in glymphatic system dysfunction via brain-wide interstitial fluid stagnation

Elife

2023/2/9

ALAIV: Assessing Lymphatic Flows through Artificial Intelligence Velocimetry

Bulletin of the American Physical Society

2023/11/19

Age-and glaucoma-induced changes to the ocular glymphatic system

Neurobiology of Disease

2023/11/1

Sizes and shapes of perivascular spaces surrounding murine pial arteries

Fluids and Barriers of the CNS

2023/7/17

Measurements of cerebrospinal fluid production: a review of the limitations and advantages of current methodologies

2022/12/15

Bulk flow of cerebrospinal fluid observed in periarterial spaces is not an artifact of injection

Elife

2021/3/9

Direct measurement of cerebrospinal fluid production in mice

Cell reports

2020/12/22

Surface periarterial spaces of the mouse brain are open, not porous

Journal of the Royal Society Interface

2020/11/25

See List of Professors in Ting Du University(University of Rochester)