A latch-and-loop erection ring adapts to flaccid and erect states, maintaining pressure and position while easing adjustment and removal.
Resilient rods, a base ring, and a locking support member keep the assembly secure while adapting to diameter changes and reducing discomfort.
Sensors detect anatomical changes and trigger transdermal neuromodulation to delay sexual emission or intensify climax without surgery.
An arched penile constriction geometry applies adjustable, nonuniform pressure to support inward blood flow while limiting outward flow.
Acoustic waves delivered through fluid and negative pressure improve penile blood flow and tissue regeneration without drug side effects.
Combined traction and vacuum forces correct penile curvature and increase girth while minimizing trauma in Peyronie's treatment.
Mixed-frequency stimulation in a split wearable layout broadens dorsal nerve coverage while reducing treatment burden and adverse effects.
Controlled vacuum, micro cut holes, and support protrusions dilate distal blood vessels while limiting excessive skin expansion.
Combining vacuum pressure, shaping force, and electrical stimulation, this case improves comfort while correcting curvature and penile injuries.
Real-time force measurement and haptic, acoustic, or visual feedback help keep penile traction within a pain-free range for safer continuous use.
Real-time traction force sensing and haptic, visual, or audio feedback help keep penile extension within a safe operating range.
A body-worn brace uses adjustable supports and an overlie strap to hold the flaccid penis under tension discreetly and comfortably.
Controlled heat, tension, and vacuum expansion address slow growth and tissue-damage risks in penile exercise devices.
Alternating pneumatic pressure stimulates the penis through a sealed chamber, while disposable applicators simplify cleaning and reduce skin irritation.
Interchangeable rods adjust device length and stretching force to address physical danger and inefficiency during penis enlargement.
Repurposing a wristband as a flexible ring addresses fixed sizing by enabling adjustable fit across diverse anatomies and preferences.
This case uses pre-positioned perineal electrodes and adjustable pulses to target nerves and muscles for more controlled ejaculation.
Elastic deformation fits varied body shapes, while vibration stimulates the perineum and isolates control circuitry from damage.
An airtight inflatable ring mounts to a vacuum erection device to restrict venous outflow and maintain erections.
This case uses pressure-aware electronic pumping and valves to automate fluid transfer for easier implant inflation and deflation.
A suprapubic compression plate and belt system mechanically compress fatty tissue to increase visible penis length.
A subcutaneous elastic band with a stretch stop elongates to equalize penile side lengths, reducing curvature without invasive surgery or plaque excision.
A penile implant uses a symphyseal anchoring mount to support an inclined erectile body.
An implantable pressure sensor detects fluid levels within an adjustable gastric band and transmits data to an external display.
A segmented cock ring joins a penis sleeve, perineal contact, and an anal insert; penile-only rings omit anal stimulation.
Cover member prevents finger blockage of adjustment ring, maintaining consistent air flow and reliable stimulation levels during use.
A stretchable ring and tether system maintains penile skin retraction while trapping blood to support erection stability.
An implantable electroacupuncture device delivers stimulation pulses to specific acupoints using integrated circuitry and electrodes.
Manual inflation of braided hollow members adjusts rigidity, resolving the trade-off between reliable immobilization and user comfort.
A pump for an implantable penile prosthesis uses a one-touch release mechanism to simplify patient operation.
A non-invasive system applies alternating sub-atmospheric and atmospheric pressure to cyclically augment penile blood volume.
A flexible skin patch delivers transcutaneous electrical impulses to stimulate genital nerves and increase blood flow.
A soft extension member creates a secure vacuum seal on sensitive tissue, preventing discomfort and injury from rigid device contact.
Flexible engagement portions and swing arms provide clamping massage while ring positioning prevents the device from falling off during use.
Integrated vacuum and traction system resolves tissue damage trade-offs by combining adjustable angle fittings with gravitational force application.
An inflatable constriction ring sustains erection after vacuum release, resolving the trade-off between maximal tumescence and device complexity.
Nested threaded sleeves and spindles enable continuous length adjustment without adding or removing separate extension elements.
Wireless transmission of tension data from an integrated fastening device resolves monitoring difficulties by providing real-time feedback via smartphone.
Accessory control module determines distance between terminal device and user to trigger stimulation actions.
Segmenting corpora cavernosum tissue with a grooved dilator preserves vascularization, maintaining erection quality and warmth while minimizing healing time.
Offset air vent holes in a two-layer device create a valve function that applies negative pressure to maintain erection stability without mechanical tightening.
Segmented pumps with a controller switch between parallel and serial configurations to reduce inflation time and energy consumption.
Image-guided catheter deployment reduces surgical site infections and perforation risks during minimally invasive prosthesis placement.
Thermochromic restrictors change color with skin temperature to prevent over-restriction and priapism.
Device uses receiving portion suction to secure organ, eliminating belt discomfort and medication side effects.
A grooved barrel tool clamps deflated penile prosthetic cylinders for direct insertion into corpora cavernosa.
An elastic jelq device provides consistent pulling force through a dynamic band that adapts to physiological changes.
Segmented lockout valve prevents autoinflation during pressure spikes by sealing the flow path, ensuring controlled inflation without unintended erections.
Multi-strand devices apply targeted compression tension to sustain erections while preventing vein leakage without obstructing arterial blood supply.
An anatomically erect penile prosthesis employs a J-shaped integral suspensory mechanism to restrict rotation and maintain natural erection kinematics.
Segmented penis rings use sequential vibrator motors to stimulate blood flow, avoiding bulky designs and chemical side effects.