| Record Type: |
Electronic resources
: Monograph/item
|
| Title/Author: |
Bio-inspired information and communications technologies/ edited by Yifan Chen, Kun Yang, Yue Sun. |
| Reminder of title: |
15th EAI international conference, BICT 2024, Quzhou, China, August 15-16, 2024 : proceedings / |
| remainder title: |
BICT 2024 |
| other author: |
Chen, Yifan. |
| corporate name: |
BICT (Conference) |
| Published: |
Cham :Springer Nature Switzerland : : 2025., |
| Description: |
x, 174 p. :ill. (chiefly color), digital ;24 cm. |
| [NT 15003449]: |
Asia-Pacific Workshop on Molecular Communications. -- Industrial Perspectives for Molecular Communication in Future Networks. -- Optimizing Drug Delivery Strategies by Pathway Analysis for Waveform Modulation-based Molecular Communication. -- Enhancing DNA-based IoBNT Throughput and Reducing Congestion with Yin-Yang Coding. -- A Molecular Communication Model Driven by Magnetic Field Force. -- CDM Based on Izhikevich Neuron Model. -- Multi-user Diffusive Molecular Communication Systems with A Passive Relay node: Receiver Design and Performance Analysis. -- Machine Learning-Based Detection Time Estimation for Molecular Communication. -- Taming Signal-dependent Counting Noise with Machine Learning for Molecular Communication. -- Energy-Efficient Transmitter Creation in Molecular Communication. -- A Method for Determining Relay Node location in Molecular Communication. -- Glycemic Oscillation Decomposition-based Personalized Blood Glucose Prediction with Continuous Glucose Monitoring. -- Bio-inspired ICT. -- Bio-inspired Microstrip Antenna (Bi-MPA) for Medical Microwave Imaging Applications. -- Image Encryption and Decryption Algorithm based on DNA Sequence: Performance Analysis of Channel Fusion Processing. -- ICT-inspired Biomedicine. -- Optimizing the Classification of SSVEP Signals in Brain-computer Interfaces: A Novel Sliding Window Data Segmentation Method Based on Weighted Voting Mechanism. -- Spontaneous Motion of Nanorobots Inspired Computational Technology for Tumor Boundary Exploration. -- Light-Driven Aggregation of Nanorobot Swarms for Precision Tumor Targeting in Manhattan-Geometry Vasculature. |
| Contained By: |
Springer Nature eBook |
| Subject: |
Natural computation - Congresses. - |
| Online resource: |
https://doi.org/10.1007/978-3-031-81599-7 |
| ISBN: |
9783031815997 |