MAXSEAS | Urinary Tract Training Cost Reduction Plan - Modular Kidney Intervention Training Model
During the training and practice sessions for urology residency and minimally invasive interventional skills, many medical staff often encounter these problems: insufficient surgical practice opportunities, expensive training materials, high wear and tear of traditional models, and high long-term training costs. Therefore, more and more skill centers in tertiary hospitals and medical school laboratories are seeking a reusable and model-changeable kidney interventional training model.
In response to the common pain points in the industry, MAXSEAShas launched a replaceable kidney interventional training model, which has been upgraded in all aspects including structure, simulation accuracy, reusability, and cost control, reducing the pressure of long-term training materials.
【Key features of the model】
· Reconfigurable module design, reducing training costs
Most of the kidney training models on the market are in an integrated structure. If there is any damage during the puncture or endoscopic operation, the entire set of models will be directly scrapped.
The MAXSEAS's replaceable kidney interventional training model adopts a modularized structure in sections: the base, the shell, and the pipeline system can be used for long-term circulation, while only the simulated kidney organ can be replaced separately. After each training session, there is no need to replace the entire set; only the internal kidney module needs to be replaced. The long-term cost of consumables can be reduced by more than 60%, which is very suitable for large-scale training in hospitals, centralized teaching in universities, and long-term skill assessment. It is a truly scalable training model for urology training and education.
· 1: 1-scale simulation, reproducing the real feel
The model is made using high-precision 3D printing technology combined with medical simulation soft materials. It fully reconstructs the anatomical structure of the human kidney, including key structures such as renal calices and renal pelvis. It can be used for training of ureteroscopy insertion surgery, performance testing of interventional instruments, functional demonstrations and training purposes.

【The core formula can be extended to cover various training scenarios of the urinary tract】
The core advantages of MAXSEAS's replaceable kidney intervention training model are not only reflected in the highly realistic experience of a single kidney model, but also lie in its highly extensible and customizable bionic soft tissue formula. Based on the core bionic material formula of this kidney model, it can flexibly adapt to the intervention and puncture training needs of various cavities and soft tissue organs in the urinary system, and achieve that a single core formula can be used for multiple scenarios of training.
Relying on the mature medical bionic soft material formula system, MAXSEAS can flexibly adjust the tissue toughness and puncture resistance according to different customization requirements, extend and adapt to the development of various organ simulation models such as renal pelvis, ureters, and urinary cavities, and customize different simulation effects of urinary intervention training models to reduce the cost of procurement and training.
【Summary】
In the current era of refined medical training, cost reduction, efficiency, high simulation fidelity, and reusability have become the core requirements for medical training models.
The MAXSEAS's replaceable kidney intervention training model, with its replaceable organ design and high-fidelity requirements for urological teaching, is a must-have training model for kidney puncture and minimally invasive kidney intervention training.
Dongguan Maxseas Medical Technology Co., Ltd.

