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At Velquest Laboratories, we are pioneering advancements in biomedical engineering by integrating cutting-edge technologies with evidence-based methodologies to revolutionize post-surgical care and gynecological health. Our research is focused on intelligent automation, theragnostic biomaterials, and precision-engineered medical devices, ensuring enhanced clinical outcomes and optimized patient recovery
By integrating biomechanics, AI-driven diagnostics, microfluidics, and biocompatible materials, we are designing next-generation solutions that provide real-time monitoring, automated interventions, and enhanced therapeutic precision. Our research is not just about innovation—it’s about empowering healthcare professionals with cutting-edge tools that redefine patient care standards and improve clinical outcomes.
Incorporating biomechanics, resistance-based automation, and biofeedback sensors to deliver personalized muscle training for postnatal recovery, incontinence management, and pelvic health enhancement.
Engineered with medical-grade silicone, real-time fluid dynamics monitoring, and AI-driven sensors, ensuring continuous assessment of discharge flow, blockage detection, and automated alerts for early intervention.
By leveraging sensor technology, AI-driven analytics, microfluidics, and advanced biomaterials, we aim to bridge critical gaps in surgical efficiency, post-operative monitoring, and gynecological therapies. Our goal is to empower clinicians with precision tools, enhance patient-centric care, and set new benchmarks in personalized medicine. Stay connected as we continue to redefine the future of intelligent healthcare solutions through scientific innovation and clinical excellence.
Hip rotation-platy is one of the advanced limb salvage surgery for malignant tumors of the proximal part of the femur in patients who are still growing, to improve the quality of survival for patients who have not yet reached skeletal maturity. Post operatively the distal part of the femur with the knee joint and leg is rotated 180 degrees and fixed to the lateral side of the pelvis. The knee joint then functions as a hinge hip joint and the ankle joint functions as a knee joint. The surgery involves delicate handling of Neurovascular Bundle to Ensure Intact Functioning of The HIP and ankle movements to provide maximum output of Limb Salvage Surgery.
Active control of two fulcrums in the lower limb, the pseudo hip proximally and the pseudo knee intermedial, makes this type of operation extremely advantageous compared to the alternative of hip disarticulation or hemipelvectomy. Hence patient is immobilized in the hip spica to allow soft tissue healing and support to newly preserved joints for around 6-8 weeks. This leads restriction of distal joint movements and can cause contracture and deformity which complicates further rehabilitation process, as well lack of mobilization due to uncomfortable position and lead to bed sores.
Hence with an aim of early mobilization and support to the newly constructed area, this hip harness system is provided which will allow mobilization of distal ankle joint as well support to prevent gravitational pull on the operated area during walking with supportive aids (axillary crutch, walker) And also provide objective assessment method to improve range of movements at hip joint and strengthen the muscle power of the operated leg. This in turn helps to provide pre-prosthetic training to the person and helps early preparation of the limb for prosthesis.
During type B surgeries the tumor is excised, and the proximal and distal part of the joint is cut with neurovascular bundle is preserved. Depending on the type B of hip rotation-plasty the newly constructed hip joint comprises of...
1. Type B1 :
Lesion is in proximal femur, so femur is excised, and newly constructed joint comprises of acetabular cavity with complete knee joint with distal condylar area with ankle joint and intact neurovascular bundle here the knee joint is connected to acetabular cavity in rotated position to form hip joint
2. Type B2 :
Lesion includes head of femur and ischium; these parts are excised so newly constructed joint comprises of intact neurovascular bundle with rotated knee and ankle joint which is connected with the ilium
3. Type B3 :
a and B3 b comprises of full femur and so full length of femur is excised and pseudo hip joint comprises of rotated leg component with or without mega prosthesis attachment for hip joint reconstruction.
Following these surgeries, the newly constructed joint is unstable, so the limb is immobilized in traditional hip Spica in order to immobilize the limb for soft tissue healing for 4-8 weeks or depending on wound healing The patient is in bed and hence more prone to develop bed sore as well as stiffness at ankle joint is also noticed.
1. To provide supportive harness to newly constructed hip joint for Hip rotation-plasty patients.
2. To allow early mobilization for ankle joint and provide proprioception to the hip joint.
3. to prevent gravitational pull and assistance for early mobilization with prevention of bedsores.
4. To develop harnessing system with provision of strengthening and range of motion detection for effective pre-prosthetic trainings.
The Hip harness system will be custom made to provide proper fitting and all components should be attached as mentioned to prevent gravitational pull during early post-operative ambulation and transfers
1. Lighter in weight as compared to plaster cast (HIP SPICA)
2. Comfortable to fit as it is made with fabric components proximally
3. Ensure easy transfers and early post-operative mobilization.
4. Prevent gravitational pull on newly operated pseudo HIP joint.
5. Prevents contracture and stiffness.
6. Enhance proprioception of pseudo-Hip and knee joint
7. Provides method for objective and easy assessment of Range of motion as well as muscle strength
8. Prevents plaster cast related complication as nerve compression or pressure sores
9. Easy documentation for assessment related data
10. Use of elastic straps during strengthening protocol ensure pure movement at the desired joint and assist in prevention of compensatory movements of the body
11. Improves active and independent participation of patients during exercises and provide immediate feedback for positive reinforcement.
The present invention relates to a harness system, and more particularly to, a harness system for newly constructed hip followed of hip rotational-plasty. Specifically, the present invention provides the harness system for the newly constructed hp of rotational plasty comprising of pelvic band, shoulder straps, posterior straps, lateral straps, anterial straps and ankle support. The harness system of the present invention offers early embulation as well as ROM exercises at ankle joint after rotational-plasty. The present invention also relates to a method of assessment of range of Motion (ROM) and muscle strength after rotational-plasty.
Post-operative care plays a critical role in patient recovery, and effective management of surgical drain output is essential to prevent complications. Inaccurate monitoring of surgical discharge can lead to delayed drain removal, increased infection risks, and compromised fluid balance assessments. Traditional drainage systems often lack efficiency, leading to discomfort for patients and increased workload for healthcare providers. To address these challenges, we have developed an advanced Apparatus for Collecting Surgical Discharge, incorporating intelligent monitoring and enhanced material design for superior efficiency.
Current surgical drainage systems pose multiple challenges, including blockages due to tube twisting, inconsistent discharge monitoring, and manual errors in assessing drain status. Traditional tubes are prone to kinking, breakage, and inefficient fluid transport, leading to inaccurate output documentation and increased patient discomfort. Additionally, the lack of real-time feedback and automated alerts can delay medical intervention in cases of blockages, leaks, or the need for bag replacement. These limitations highlight the need for a smart and reliable surgical discharge system that enhances patient safety and streamlines healthcare workflows.
The Apparatus for Collecting Surgical Discharge is an innovative, smart drainage system designed to enhance post-operative care. Our invention introduces a high-grade medical silicone tube that offers superior flexibility, durability, and resistance to twisting. The system consists of four major components:
1. Smart Discharge Silicone Tubes:
Inspired by the human intestine and oesophagus model, the internal structure is designed for uninterrupted fluid flow, preventing blockages
2. Sensors with LED Unit:
Advanced sensor technology detects real-time conditions such as blockages, tube displacement, or leakage and transmits alerts for immediate action
3. Central Processing Unit
A smart processing hub that continuously receives inputs from sensors to monitor discharge flow and provide real-time updates to healthcare providers.
4. Smart Discharge Collection Bag:
A self-monitoring collection unit that detects fluid levels and rupture risks, ensuring timely replacement and preventing overflows
The integration of smart sensors and automated alerts ensures efficient drainage management, reducing the burden on medical staff while enhancing patient comfort and safety.
Our Smart Surgical Discharge Collection System is a next-generation solution designed to revolutionize post-operative fluid management. By incorporating intelligent monitoring, real-time alerts, and advanced medical-grade silicone materials, this system ensures uninterrupted discharge flow, early detection of complications, and improved patient outcomes. The unique bio-inspired tube design, combined with automated sensor-based feedback, significantly enhances the accuracy, efficiency, and reliability of surgical drainage.
This breakthrough innovation not only simplifies nursing care but also reduces the risk of post-operative complications, enabling faster recovery and a higher standard of patient care
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