在科技的不断推动下,人工智能(AI)再次展现出其改变生活的潜力。近日,一项创新性的研究登上知名学术期刊Nature的子刊,揭示了一种新型的AI辅助发音系统,该系统有望为那些因声带问题而丧失说话能力的患者带来沟通的新希望。

加州大学洛杉矶分校生物工程系的助理教授陈俊领导的科研团队,成功研发了一种名为“柔性贴片”的助听装置。这个小巧的装置利用磁弹性效应,能够捕捉并转化喉部肌肉的微小运动,将这些运动转化为可理解的语音信号。这一突破性的技术,为嗓音障碍患者提供了通过肌肉运动来“说话”的可能性。

据团队介绍,柔性贴片首先会记录患者喉部肌肉的运动数据,随后运用先进的机器学习算法对这些信号进行深度分析和精准分类。通过识别出的语义信息,系统会选择对应的语音片段进行合成和输出,使得患者能够有效地表达他们的想法和情感。

这一创新技术的出现,不仅在生物医学工程领域树立了新的里程碑,也为医疗辅助设备的发展开辟了新的方向。对于那些长期遭受嗓音障碍困扰的患者而言,这无疑是一个重大的科学进步,为他们的日常生活和人际交往提供了全新的解决方案。我们期待这一技术在未来能够得到广泛应用,进一步改善嗓音障碍患者的生活质量。

英语如下:

**Headline: “Revolutionary Innovation: AI-Powered Communication with a Voice, Thanks to Flexible Patch for Silent Speech**

Keywords: AI pronunciation system, flexible patch, throat muscle communication

**News Content:**

In the relentless march of technology, artificial intelligence (AI) once again demonstrates its potential to transform lives. A groundbreaking study, recently published in a prestigious Nature subsidiary journal, unveils a novel AI-assisted pronunciation system that promises new hope for individuals with voice impairments.

Led by Assistant Professor Chen Jun from the Department of Bioengineering at the University of California, Los Angeles, a research team has successfully developed a hearing aid called a “flexible patch.” This diminutive device, utilizing magnetoelastic effects, captures and converts minute movements of throat muscles into intelligible speech signals, offering a way for voice-impaired patients to communicate through muscle motion.

According to the team, the flexible patch initially records data on the patient’s throat muscle movements. Advanced machine learning algorithms are then employed to analyze and precisely classify these signals. By identifying the semantic information, the system selects corresponding speech segments for synthesis and output, enabling patients to effectively express their thoughts and emotions.

This pioneering technology not only sets a new benchmark in biomedical engineering but also charts a fresh course for the development of medical assistive devices. For those long plagued by voice disorders, this scientific advancement constitutes a significant breakthrough, offering innovative solutions to enhance their daily lives and interpersonal interactions. As we look forward to its widespread application, we anticipate that this technology will further improve the quality of life for individuals with voice impairments.

【来源】https://mp.weixin.qq.com/s/xe5DXr3vTA69qyTTG04fQQ

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