Juan Tu

About Juan Tu

Juan Tu, With an exceptional h-index of 30 and a recent h-index of 25 (since 2020), a distinguished researcher at Nanjing University, specializes in the field of Acoustics.

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

Depressive disorder benefits of cities: Evidence from the China

Improved assessment sensitivity of time-varying cavitation events based on wavelet analysis

Improved ultrasound thermal strain imaging using frequency domain segmentation

Phase-Dislocation-Mediated High-Dimensional Fractional Acoustic-Vortex Communication

Real-time cavitation monitoring based on the entropic analysis of ultrasound RF signals

Depression prediction based on LassoNet-RNN model: A longitudinal study

Enhanced thrombolytic effect induced by acoustic cavitation generated from nitrogen-doped annealed nanodiamond particles

Infodemic: Challenges and solutions in topic discovery and data process

Juan Tu Information

University

Position

Professor of Physics

Citations(all)

4030

Citations(since 2020)

2470

Cited By

2385

hIndex(all)

30

hIndex(since 2020)

25

i10Index(all)

80

i10Index(since 2020)

66

Email

University Profile Page

Google Scholar

Juan Tu Skills & Research Interests

Acoustics

Top articles of Juan Tu

Depressive disorder benefits of cities: Evidence from the China

Journal of Affective Disorders

2024/4/1

Improved assessment sensitivity of time-varying cavitation events based on wavelet analysis

Ultrasonics

2024/3/1

Improved ultrasound thermal strain imaging using frequency domain segmentation

ACTA ACUSTICA

2024

Phase-Dislocation-Mediated High-Dimensional Fractional Acoustic-Vortex Communication

Research

2023/12/1

Real-time cavitation monitoring based on the entropic analysis of ultrasound RF signals

The Journal of the Acoustical Society of America

2023/10/1

Depression prediction based on LassoNet-RNN model: A longitudinal study

Heliyon

2023/10/1

Enhanced thrombolytic effect induced by acoustic cavitation generated from nitrogen-doped annealed nanodiamond particles

Ultrasonics Sonochemistry

2023/10/1

Infodemic: Challenges and solutions in topic discovery and data process

2023/9/7

Automatic depression recognition by intelligent speech signal processing: A systematic survey

2023/9

Economic development, weak ties, and depression: evidence from China

Journal of Affective Disorders

2023/8/1

Ultrasonic imaging based on pulsed Airy beams

IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control

2023/7/25

Ultrasound-driven exercise training ameliorates degeneration of ultrasonic responses in Caenorhabditis elegans

Neuroscience Research

2023/7/1

In vivo multi-Thread Ultrasound Thermal Strain Imaging

IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control

2023/6/28

Perfect acoustic-vortexes constructed by the Fourier transform of quasi-Bessel beams based on the simplified ring-array of sectorial planar transducers

IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control

2023/5/19

General principle and optimization of magneto‐acousto‐electrical tomography based on image distortion evaluation

Medical Physics

2023/5

Intensified and controllable vaporization of phase-changeable nanodroplets induced by simultaneous exposure of laser and ultrasound

Ultrasonics Sonochemistry

2023/3/1

Machine learning and human‐machine trust in healthcare: A systematic survey

2023

3D ultrasonic imaging of surface-breaking cracks using a linear array

Ultrasonics

2022/9/1

Juan Tu
Juan Tu

H-Index: 18

Zheng Fan
Zheng Fan

H-Index: 13

Optimization of a random linear ultrasonic therapeutic array based on a genetic algorithm

Ultrasonics

2022/8/1

Non-invasive local acoustic therapy ameliorates diabetic heart fibrosis by suppressing ACE-mediated oxidative stress and inflammation in cardiac fibroblasts

Cardiovascular Drugs and Therapy

2022/6

See List of Professors in Juan Tu University(Nanjing University)