Devices

Beijing Zhiran's fully implanted wireless intracortical flexible BCI with over 100 channels, in a multicenter registration-style trial (LEAP) that launched at Tiantan Hospital in May 2026. Details come from Chinese hospital and state media releases and company statements.

Catalog specification sheet - Intracortical

Zhiran ultra-100-channel flexible BCI (LEAP trial)

Record ID
BTSD-STUP-0011
Reviewed
2026-10-08
Interface
intracortical
Evidence stage
human

Independent, source-linked catalog sheet. Not a manufacturer-issued datasheet, regulatory decision or instructions for clinical use. Human evidence does not establish approval. Source-specific restrictions, conflicts and missing specifications are retained below.

Zhiran ultra-100-channel flexible BCI (LEAP trial)

Beijing Zhiran Medical’s system combines micrometre-thick flexible intracortical electrodes with a fully implanted wireless unit. The first implantation was in October 2025 in a glioma patient. A multicenter GCP trial for tetraplegia, LEAP, began on May 18, 2026. Figures here are company or hospital statements; no data are published.

Identity

FieldValue and source scope
Device智冉医疗 ultra-100-channel invasive flexible BCI (超百通道侵入式柔性脑机接口系统): intracortical ultra-thin flexible electrodes and a fully implanted wireless signal acquisition unit, with a robot for electrode implantation. Trial name LEAP [1, 2, 3]
Manufacturer北京智冉医疗科技有限公司 (Beijing Zhiran Medical Technology), founder and CEO Song Qi; trial sponsor [1, 2, 3]
Interface classIntracortical flexible electrodes with a fully implanted wireless unit [1, 3]
OriginBeijing Zhiran Medical, with Tiantan Hospital as lead clinical site [1]
First demonstratedFirst clinical implantation reported October 24, 2025 at China-Japan Union Hospital of Jilin University in a 52-year-old glioma patient, with electrode placement error under 0.5 mm under robot guidance and intraoperative MRI (hospital statement via China News Service) [4]
First human implantOctober 2025 at China-Japan Union Hospital of Jilin University, described as the first domestic ultra-100-channel invasive flexible BCI implantation [4]. That patient had a brain tumor in a functional area, not paralysis
Species studiedHuman
Regulatory statusMulticenter GCP clinical trial (LEAP) launched May 18, 2026 at Tiantan Hospital, 11 institutions joined, first cohort of 32 patients planned [1, 2]. The company says its electrodes hold Chinese and US patents [3]. Not approved
FunctionRecords single-neuron action potentials at high throughput to decode movement intent for tetraplegia after spinal cord injury [1, 2]
Target tissueCerebral cortex, intracortical electrodes [1, 4]

Geometry and architecture

FieldValue and source scope
Interface typeUltra-thin flexible intracortical electrodes, micrometre thickness, about one tenth of a hair in diameter, implanted with a robot [3, 4]
Array layout
Electrode count128 channels in the first implantation [4]. Tiantan and Xinhua call the trial system ‘over 100 channels’ without a number [1, 2]. Zhiran’s CEO said a next-generation product of up to 1,000 channels has finished initial development (company statement) [3]
Pitch
Electrode lengths
Shank width and thickness
Tip and exposed site geometry
Contact coating
Insulation
Insertion methodRobot-guided, with intraoperative MRI to find functional cortex and error under 0.5 mm, in the first implantation [4]
Anchoring and fixation

Electrode and channel physics

FieldValue and source scope
Exposed site area
Electrode material
Impedance (with measurement frequency)
Noise floor or SNR
Recording modality
Sampling rate
Stimulation capability
Charge injection limit
Reference and ground

Tissue interface and bioresponse

FieldValue and source scope
Target tissue
Insertion trauma and BBB disruption
Vascular disruption risk
Micromotion sensitivity
Gliosis and encapsulation
Neuron loss near sites
Foreign-body response mitigation
Typical failure modes

System architecture

FieldValue and source scope
Onboard electronicsFully implanted acquisition unit supporting 30 kHz high-throughput signal acquisition [3]
Data pathWireless; Bluetooth transmission per the CEO [3]. A coin-sized wireless module placed under the scalp per China News Service [4]
Telemetry bandwidth
Sampling rate30 kHz per the CEO’s description of the acquisition unit [3]
PowerBuilt-in rechargeable medical-grade battery with wireless charging, per Tiantan and Xinhua [1, 2, 3]
Thermal management
Packaging and hermeticity
MRI compatibility
Surgical complexity
Output connectors

Performance envelope

FieldValue and source scope
Acute yield
Chronic yield
Stability over time
Longevity
Revision and explant experience
Adverse events
Notable demonstrationsHospital statement that first implantation recorded high-throughput single-neuron action potentials [4]. Tiantan states earlier trials showed good safety and effectiveness (no data) [2]

Clinical and preclinical evidence

FieldValue and source scope
Human subjectsAt least 1 in the October 2025 implantation; LEAP plans 32 in its first cohort [2, 4]
Preclinical cohort
Follow-up duration
IndicationsMotor function improvement in tetraplegia from spinal cord injury, per Tiantan and Xinhua [1, 2]
Trials and registriesLEAP: prospective multicenter GCP trial, Tiantan Hospital as lead site, sponsored by Beijing Zhiran, 11 hospitals as of May 18, 2026 [1, 2]. No ClinicalTrials.gov or ChiCTR identifier was found for LEAP in this search
Primary outcomes
Key limitationsCompany and hospital statements only, no results published. Hospital release for the first implant used a glioma patient. The count ‘over 100 channels’ is stated as 128 only in a news report of the first case

Engineering tradeoffs

FieldValue and source scope
StrengthsSingle-neuron recording, wireless fully implanted design with rechargeable battery, robot-assisted placement, per the company [1, 3]
LimitationsIntracortical penetration; no chronic human data published [1]
Scaling constraints

Version boundary

The 128-channel configuration of the first implantation is the one specified here. A higher-channel generation of up to 1,000 channels is described by the company as early development and is not covered.

References

  1. Beijing Tiantan Hospital (Chinese). LEAP trial launch, 18 May 2026.
  2. Xinhua (Chinese). Over-100-channel fully invasive BCI enters clinical trial, 19 May 2026.
  3. Guangzhou Daily (Chinese). BCI conference report including Zhiran CEO Song Qi, December 2025.
  4. China News Service (Chinese). First domestic over-100-channel flexible BCI implantation, 24 October 2025.