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DESIGN RESEARCH

Future textile sensing networksfor human motion monitoring.

智能织物传感网 · 人体运动监测

I explore how smart textiles, wearable sensing, and embodied interaction can augment human movement, support proactive healthcare, and enable more natural human-computer interaction. My research integrates textile sensor networks, motion capture, digital human modelling, and AI-driven interaction design.

聚焦智能织物传感网络、人体运动捕捉与具身交互设计,探索可穿戴感知如何支持主动健康、 运动康复及未来人机交互体验。研究融合织物电子、数字人体建模、人工智能与交互设计。

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31.2304° N121.4737° E
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RESEARCH INTERESTS / 研究方向

Smart Textiles智能织物

Sensing materials and wearable systems for the body.

面向身体的感知材料与可穿戴系统。

Human–Computer Interaction人机交互

Human-centred interfaces through wearables and AI.

基于可穿戴与智能界面的人机交互。

Human Motion Capture人体运动捕捉

Textile sensing and motion analysis for rehabilitation.

织物传感与面向康复的运动分析。

Proactive Healthcare主动健康

Continuous monitoring for rehab, sport, and wellbeing.

连续感知支持康复、运动与日常健康。

EDUCATION & RESEARCH / 教育与研究经历

2024–Present
PhD Candidate in Design设计学博士在读

Tongji University|同济大学设计创意学院

Textile sensing · Embodied interaction · Motion monitoring

织物传感 · 具身交互 · 人体运动监测

2020–2023
MEng in Fluid Machinery and Engineering流体机械及工程硕士

Xi'an Jiaotong University|西安交通大学

CFD · Digital simulation · Mechanical design

计算流体力学 · 数字仿真 · 机械设计

2016–2020
BE in Industrial Engineering工业工程学士

Jilin University|吉林大学

Human factors · Industrial design · Optimisation

人因工程 · 工业设计 · 工程优化

METHODS & TOOLS / 方法与工具

Research研究

Research through Design · User Study · Prototyping

研究型设计 · 用户研究 · 原型设计

Hardware硬件

Textile Sensors · ESP32 / Arduino · Soft Prototyping · Sewing Machine

织物传感 · ESP32 / Arduino · 软性原型 · 缝纫机

Computation计算

Python · Motion Capture · Machine Learning · Matlab

Python · 运动捕捉 · 机器学习 · Matlab

Design设计

UG · Figma · Blender

UG · Figma · Blender

BEYOND / 技能与爱好

Badminton super-fan

羽毛球超级爱好者

Casual / veteran football participant

老登足球参与者

Motorcycle rider — CF250NK

摩托车驾驶员 · CF250NK

Photography & hiking (still a beginner)

摄影和徒步菜鸡选手

Willing tryer of all kinds of sports

各种运动尝试者

Skilled with sewing machine & electronics soldering

缝纫机熟练工和电子焊接熟练工

PROJECTS / 项目

Selected work.

代表项目。

Open a case for gallery images and full write-ups.

2024–2025Design assistant tool / 设计辅助工具

Laytex

A data-driven design tool that translates body-surface deformation into practical textile sensor layouts for motion-capture garments.

一个将人体表面形变数据转化为织物运动传感布局的数据驱动设计工具。

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2025–2026Textile wearable system / 织物可穿戴系统

KinDex

A garment-integrated textile sensing system for recognising shoulder compensation and reconstructing multi-degree-of-freedom movement.

一套集成于服装的织物感知系统,用于识别肩部代偿模式并重建多自由度运动。

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2025UbiComp Companion ’25 / UbiComp Companion 2025

ShoulDex

A panel-woven textile sensing system for rotator cuff rehabilitation, combining soft garment construction with machine-learning feedback.

面向肩袖康复的面板编织织物传感系统,结合柔性服装结构与机器学习反馈。

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2024–2025Functional prototype / 功能原型

TeXpine

An interactive textile garment supporting active scoliosis rehabilitation through sensing, individual calibration, and understandable real-time feedback.

一套通过传感、个体标定与可理解实时反馈支持脊柱侧弯主动康复的交互织物服装。

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2025UbiComp Companion ’25 / UbiComp Companion 2025

Sensor Layout Evaluation传感布局评估框架

An evaluation framework for textile stretch sensor layouts based on mutual information, enabling rapid layout assessment before physical prototyping.

基于互信息的织物拉伸传感布局评估框架,在实物打样前快速评估布局有效性。

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2024–PresentOngoing doctoral research / 博士研究进行中

Textile Sensor Network织物传感网

Doctoral research on textile sensor networks, focusing on sensing layout design, high-density textile sensing architectures, and sensing mechanisms for scalable wearable interfaces.

博士课题聚焦织物传感网络构建,围绕传感布局设计、高密度织物传感网络及传感机制展开研究, 探索可扩展的智能织物感知系统。

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PUBLICATIONS / 发表

Writing & outputs.

论文与研究产出。

A living list...

持续更新中···

112026
A-MIrror: Augmented Reality Mirror System for Enhanced Visual Illusion in Post-Stroke Upper-Limb RehabilitationA-MIrror:面向脑卒中上肢康复的增强现实镜像系统L. Chen, Y. Yang, Y. Luo, R. Hu, N. Qu, Z. Pan, Y. Li, Z. Jiang, D. Chen, J. OuYang, B. Pang, S. Gao, L. Ding, Q. WangProceedings of the 2026 CHI Conference on Human Factors in Computing SystemsCHI 2026
102026
FoCUS: Leveraging Lower Limbs for Uninterrupted Procedural-Practical Tasks in Mixed RealityFoCUS:利用下肢交互支持混合现实中无间断的程序—实践任务L. Chen, N. Qu, D. Chen, H. Yuan, Y. Yan, R. Hu, P. An, Q. Wang, Y. LouInternational Journal of Human–Computer InteractionInternational Journal of Human–Computer Interaction
092026
From monitoring to proactive healthcare: Cases exploring embodiment and AI in smart textile design从监测到主动健康:智能织物设计中的具身与 AI 案例研究M. ten Bhömer, Q. Wang, Z. Bai, M. Jiang, N. Qu, Z. WuThe Design Journal, 29(1), 30–53The Design Journal, 29(1)
082025
Enhancing Situational Awareness in Hearing-Impaired Drivers: A Non-Contact Alert System Using Air-Based Tactile Stimulus面向听障驾驶员情境感知的非接触气动触觉提示系统D. Chen, X. Zhao, C. Xu, X. Feng, N. Qu, L. Chen, M. WangCompanion of the 2025 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp Companion ’25)UbiComp Companion 2025
072025
Designing Wearable-Supported Contextualised Eco-Feedback System for Enhancing Sustainable Office Energy Behaviour面向办公节能行为的可穿戴情境化生态反馈系统设计L. Chen, J. Chen, N. Qu, Q. Wang, Y. LouIASDR 2025 — International Association of Societies of Design ResearchIASDR 2025
062025
'I Felt a Sense of Flow': Rendering Spatial Vector Information through Five-Finger Electrotactile Feedback五指电触觉反馈渲染空间矢量信息L. Chen, X. Zhang, Y. Cheng, D. Chen, N. Qu, Q. WangCompanion of the 2025 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp Companion ’25)UbiComp Companion 2025
052025
ShoulDex: A Panel-Woven Textile Sensing System for Rotator Cuff RehabilitationShoulDex:面向肩袖康复的面板编织织物传感系统N. Qu, J. Mo, L. Liu, X. Pu, S. Zhang, Q. WangCompanion of the 2025 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp Companion ’25)UbiComp Companion 2025
042025
Laytex: A Data-Driven Tool for Automated and Customized Textile Sensor Layout Design in Motion CaptureLaytex:面向运动捕捉的数据驱动织物传感布局设计工具N. Qu, J. Mo, Y. Zhang, L. Chen, Y. Zhang, G. Wang, Y. Tao, Y. Wang, Q. Wang, T. HanProceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies (IMWUT), 9(3)ACM IMWUT 2025,第 9 卷,第 3 期
032025
An Evaluation Framework for Textile Stretch Sensor Layouts Based on Mutual Information基于互信息的织物拉伸传感布局评估框架J. Mo, N. Qu, Y. Wan, L. Chen, Y. Xiao, Q. WangCompanion of the 2025 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp Companion ’25)UbiComp Companion 2025
022025
TeXpine: A Body-Perception-Driven Training System for Adolescents with Idiopathic ScoliosisTeXpine:面向青少年特发性脊柱侧弯的身体感知驱动训练系统X. Zhao, Y. Wan, N. Qu, L. Liu, J. Mo, Q. WangCompanion of the 2025 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp Companion ’25)UbiComp Companion 2025
012023
LayTex: A Design Tool for Generating Customized Textile Sensor Layouts in Wearable ComputingLayTex:面向可穿戴计算的定制化织物传感布局设计工具Y. Zhang, N. Qu, R. Zhang, Y. Tao, G. Wang, Q. WangAdjunct Proceedings of the 2023 ACM International Joint Conference on Pervasive and Ubiquitous Computing (UbiComp/ISWC ’23 Adjunct)UbiComp/ISWC 2023 Adjunct

SPACE / 个人空间

Photos & notes.

照片与随笔。

Frames from travel, outdoors, and everyday moments.

旅途、户外与日常片刻。

Journal / 随笔

When material becomes interface

材料如何成为界面

From textile structure and sensing response to bodily acceptance, material decisions are interaction decisions.

从织物结构、传感响应到身体接受度,材料决策本身就是交互设计。

From laboratory to everyday wear

从实验室到日常穿戴

Reliability, maintenance, dressing, and social acceptability jointly determine whether a wearable system is usable.

可靠性、维护、穿脱与社会接受度共同决定可穿戴系统是否真正可用。

Feedback should support bodily understanding

反馈应帮助身体理解自身

Effective rehabilitation feedback does more than display data; it supports perception, action, and self-adjustment.

有效的康复反馈不只是显示数据,而是支持感知、行动与自我调整。