1.
Evidence of a topological edge state in a superconducting nonsymmo..
[1195]
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2.
MEMS Bessel Beam Acoustic Transducer (MEMS-BBAT) with Air-Cavity L..
[713]
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3.
Real-time acoustic holography with physics-reinforced contrastive ..
[671]
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4.
一种声镊定位校准方法、系统、设备和介质
[564]
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5.
Visual Servo Control for Workspace Navigation of Nanorobot End-Eff..
[435]
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6.
Real-time Acoustic Holography with Iterative Unsupervised Learning..
[418]
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7.
Noncontact Particle Manipulation on Water Surface with Ultrasonic ..
[406]
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8.
A review of deep-learning-based super-resolution: From methods to ..
[347]
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9.
AcousNet: A Deep Learning Based Approach to Dynamic 3D Holographic..
[346]
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10.
非接触式的微粒操控方法、装置、机器可读介质及设备
[342]
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11.
一种超声换能器
[333]
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12.
Simultaneous Precision Assembly of Multiple Objects through Coordi..
[331]
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13.
Iterative Learning Embedded Composite Model Reference Adaptive Con..
[328]
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14.
Real-Time Acoustic Holography With Physics-Based Deep Learning for..
[324]
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15.
声镊装置及声镊控制系统
[324]
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16.
Robust Output Regulation for Uncertain Discrete-Time Linear System..
[315]
|
17.
Zooming-Free Hand-Eye Self-Calibration for Nanorobotic Manipulatio..
[295]
|
18.
超声换能器阵列及其制备方法
[292]
|
19.
MEMS First-Order Bessel Beam Acoustic Transducer for Particle Trap..
[286]
|
20.
Attention-Based Multiscale Feature Fusion for Efficient Surface De..
[284]
|
21.
Selective Acoustic Trapping, Translating, Rotating and Orienting o..
[282]
|
22.
Nanorobot-based Direct Implantation of Flexible Neural Electrode f..
[274]
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23.
Rotation-free high order Bessel beam acoustic transducer for parti..
[268]
|
24.
一种声场扫描系统、方法、设备和介质
[267]
|
25.
超声换能器、声场生成方法、系统、声场调控方法、设备及介质
[263]
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26.
多任务学习的相位声全息图生成方法、系统、设备和介质
[257]
|
27.
Particle Trapping and Transportation with MEMS Zeroth-order Bessel..
[256]
|
28.
Twin Trap Acoustic Transducer with PDMS Fresnel Lens for Particle ..
[254]
|
29.
Vision-Based Closed-Loop Control With Spatiotemporal Multiplexing ..
[253]
|
30.
自监督学习相位声全息图生成方法、系统、设备和介质
[252]
|
31.
3D Noncontact Micro-Particle Manipulation with Acoustic Robot End-..
[252]
|
32.
Real-time Acoustic Holography with Physics-based Deep Learning for..
[250]
|
33.
An Efficient Robot Precision Assembly Skill Learning Framework Bas..
[245]
|
34.
Ultrafast Acoustic Holography with Physics-Reinforced Self-Supervi..
[241]
|
35.
超声换能器阵列及其制备方法
[239]
|
36.
MoEmo Vision Transformer: Integrating Cross-Attention and Movement..
[234]
|
37.
Enhancing Convergence Speed of Multi-Agent Formation Control via L..
[230]
|
38.
Reconfigurable phase-only acoustic holography with surrogate model..
[229]
|
39.
Bottle Trap Acoustic Transducer with PDMS Lens for Particle Trappi..
[224]
|
40.
Data-Driven Modeling of Ground Effect For UAV Landing on a Vertica..
[220]
|
41.
Visual Tracking with Motion Distortion Removal for Nanomanipulatio..
[219]
|
42.
Ultrasonic Transducer encoding intersecting Bessel beams for parti..
[218]
|
43.
MoEmo Vision Transformer: Integrating Cross-Attention and Movement..
[209]
|
44.
Automated Surgical Knot Tying on Mini-Incision with Micro-Suture b..
[207]
|
45.
Iterative Learning Embedded Model Reference Adaptive Control for P..
[193]
|
46.
Real-Time Particle Cluster Manipulation with Holographic Acoustic ..
[189]
|
47.
Binary Amplitude-Only Hologram Generation for Acoustic End-Effecto..
[172]
|
48.
Dynamic Modeling of Robotic Fish considering Background Flow using..
[168]
|
49.
NanoNeRF: Robot-assisted Nanoscale 360° reconstruction with neura..
[162]
|
50.
Selective, Robust and Precision Manipulation of Particles in Compl..
[160]
|
51.
Synchronous Rotation-based Knot Tying on Mini-Incisions Using Dual..
[112]
|
52.
Obstacle-crossing Self Focused Acoustic Transducer based on Bessel..
[108]
|
53.
Accurate and real-time acoustic holography using super-resolution ..
[82]
|
54.
Low-Cost Acoustic Field Reconstruction with Physics-Incorporated D..
[73]
|
55.
Physics-based generative adversarial network for real-time acousti..
[69]
|
56.
A Light-Weight Framework for Open-Set Object Detection with Decoup..
[59]
|
57.
In place soft micro-fiber manipulation with ultrasonic transducer ..
[47]
|
58.
Acousto-dewetting enables droplet microfluidics on superhydrophili..
[27]
|