Chinese startup Gestala develops noninvasive brain-computer interface

Gestala, a new entrant in China's expanding brain-computer interface sector, aims to connect with the brain using ultrasound technology without needing implants. This approach highlights the industry's shift toward less invasive methods. The company emerges amid rapid growth in Chinese biotech innovation.

China's brain-computer interface (BCI) industry is experiencing swift expansion, with numerous firms exploring ways to link human cognition to machines. The latest addition is Gestala, a startup focused on noninvasive techniques to bypass the risks associated with surgical implants.

Gestala plans to employ ultrasound technology for brain access, offering a safer alternative to traditional invasive methods. This development underscores China's rising prominence in biotech and science, where companies are racing to innovate in neural interfaces.

As detailed in a WIRED article published on January 29, 2026, Gestala represents the burgeoning momentum in the sector. The industry's growth reflects broader investments in advanced technologies, potentially transforming fields like medicine and computing. While specifics on Gestala's timeline or prototypes remain limited, its ultrasound-based strategy positions it as a key player in noninvasive BCI advancements.

相关文章

Illustration of Northwestern University's wireless micro-LED brain implant delivering light patterns to mouse neurons for sensory signaling.
AI 生成的图像

Northwestern team develops wireless implant that ‘speaks’ to the brain with light

由 AI 报道 AI 生成的图像 事实核查

Scientists at Northwestern University have created a soft, wireless brain implant that delivers patterned light directly to neurons, enabling mice to interpret these signals as meaningful cues without relying on sight, sound or touch. The fully implantable device uses an array of up to 64 micro-LEDs to generate complex activity patterns across the cortex, a development that could advance next-generation prosthetics and sensory therapies, according to Northwestern and Nature Neuroscience.

Researchers have developed a paper-thin brain implant called BISC that creates a high-bandwidth wireless link between the brain and computers. The single-chip device, which can slide into the narrow space between the brain and skull, could open new possibilities for treating conditions such as epilepsy, paralysis, and blindness by supporting advanced AI models that decode movement, perception, and intent.

由 AI 报道

两名中国高位瘫痪患者成功使用脑机接口(BMI)技术,仅用意念控制动力轮椅、机器人狗取快递以及机械臂取杯饮水。这一突破于周三在上海中国科学院脑科学与智能技术卓越创新中心媒体通报会上公布,标志着BMI技术向实际临床应用迈进重大一步。

Australia-based start-up Cortical Labs has announced plans to construct two data centres using neuron-filled chips. The facilities in Melbourne and Singapore will house its CL1 biological computers, which have demonstrated the ability to play video games like Doom. The initiative aims to scale up cloud-based brain-computing services while reducing energy consumption.

由 AI 报道

一位中国神经学家在为母亲治疗其他疾病时,使用高强度聚焦超声(FUS)意外改善了她的阿尔茨海默病症状,使其认知功能显著恢复。孙博民医生表示,这是世界上首例有效的阿尔茨海默病FUS治疗。患者已九十多岁,患病约八年,此次治疗于2024年进行。

Researchers have developed a new bioluminescent imaging tool that allows neurons to glow from within, enabling real-time observation of brain activity without external lasers. This innovation, called CaBLAM, overcomes limitations of traditional fluorescence methods by providing clearer, longer-lasting recordings in living animals. The tool promises deeper insights into neural function and potential applications beyond the brain.

由 AI 报道

Researchers at the University of Michigan have developed an AI system called Prima that interprets brain MRI scans in seconds, identifying neurological conditions with up to 97.5% accuracy. The tool also flags urgent cases like strokes and brain hemorrhages, potentially speeding up medical responses. Findings from the study appear in Nature Biomedical Engineering.

 

 

 

此网站使用 cookie

我们使用 cookie 进行分析以改进我们的网站。阅读我们的 隐私政策 以获取更多信息。
拒绝