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Biology subjects

Pu, C.

Publications and source records attributed to Pu, C..

2 recordsLinked to original sources

Flexible Skull-Conformal Phased Array for Aberration-Corrected Transcranial Focused Ultrasound Therapy

Transcranial focused ultrasound (tFUS) is a promising non-invasive tool for precise deep-brain interventions, including neuromodulation, blood-brain barrier opening, and drug delivery. However, conventional rigid tFUS arrays suffer from poor skull conformity, compromising patient comfort and targeting precision, while skull-induced aberrations degrade focal accuracy and efficiency. To address these challenges, we present the first flexible, skull-conformal aberration-corrected phased array (F-SCAPA), a transformative solution integrating mechanical adaptability with advanced acoustic correction. The 0.5-MHz array--comprising 8x8 elements--features an optimized fabrication process that enhances material efficiency, ensures flexibility and stretchability, and maintains uniform electrical performance. Coupled with CT-based skull modeling and time-reversal aberration correction, F-SCAPA dynamically conforms to cranial anatomy while compensating for phase distortions. Transcranial validation in a human skull demonstrates precise focusing at 36 mm depth, achieving an axial full width at half maximum (FWHM) of 8.9 mm. This breakthrough overcomes existing limitations by combining mechanical adaptability with high-resolution transcranial focusing, establishing F-SCAPA as a robust, patient-compatible platform for next-generation non-invasive brain therapies.

bioengineering↗

A Wearable Spiral Ultrasound Patch for Focused Ultrasound Peripheral Neuromodulation of Diabetic Neuropathic Pain

Diabetic foot disease, a severe complication of diabetes, frequently results in diabetic neuropathic pain, which diminishes quality of life and increases the risk of amputation. Current treatment options are limited in their effectiveness and can present adverse effects. We have demonstrated a first-of-its-kind wearable spiral ultrasound patch for focused ultrasound peripheral neuromodulation to alleviate diabetic neuropathic pain. This innovative, stretchable ultrasound device reliably delivers focused ultrasound to peripheral nerves. The devices ultrasound elements are arranged in a phyllotaxis spiral pattern, enhancing transmitted acoustic focus performance and minimizing grating and side lobes. Using a diabetic foot rat model, we confirmed peripheral neuropathy through behavioral assessments of mechanical allodynia and heat hyperalgesia, which showed significant pain relief after two weeks of ultrasound treatment. Additionally, nerve conduction velocity improved. Biological safety tests indicated no adverse effects on nerve tissues or cells. Our approach offers a non-invasive solution for managing diabetic neuropathic pain and provides critical insights into its underlying mechanisms, paving the way for more effective therapies.

bioengineering↗