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MedTech Outlook | Tuesday, August 18, 2020
Creating innovative catheters and the minimally invasive surgical device is complicated, these strategies spur inventive solutions and unlock the way to success.
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Fremont, CA: Minimally invasive surgery (MIS) provides compelling benefits compared to conventional open surgery, like faster patient recovery, reduced risk of infection, and lower healthcare costs. Medical device companies are striving to advance catheter and device technologies and get new products to market to enhance MIS capabilities. Developing those innovative products is a daunting task. By their nature, MIS devices have a small working element, which massively complicates development. The miniaturization of mechanisms, electrical modules, and various technologies is technically tricky work. The engineering teams can instantly be facing seemingly impossible challenges.
Here are few strategies to make innovative breakthroughs possible in such strenuous development efforts.
Generate a wide variety of solutions options
[vendor_logo_first]An engineering team might encounter various technical challenges while developing new features and functional capabilities for MIS devices. A common issue is to quickly focus on the first bright idea proposed to solve a new problem, and this idea doesn't need to be good and work out.
It is an excellent idea to generate a wide variety of solution concepts for significant technical challenges. The expected development time, the level of performance, and manufacturing cost can differ massively among concepts. The team will also have alternate options if an idea doesn't pan out.
Investigate multiple concepts
After developing and accessing an array of concepts, it might be tempting to commit to an idea before it's been proven to work. Selecting a single concept very early adds significant risk to the development efforts because technical designs do not always function as expected. Even promising concepts may ultimately fail.
MIS devices' unusual physical features and one-of-a-kind surgical applications make the performance level of technical concepts complicated to predict. A concept can work much better or worse than expected. The more novel the concept is, the less predictable the outcome.
Use large-scale prototypes
The different development challenges presented by catheters and MIS devices typically require a relatively high number of prototype design-build-test cycles to gain the desired functionality. Building prototypes at actual size (1:1 scale) might become time-consuming and expensive because the exclusive components, like catheter sheaths and minuscule parts, should be ordered from highly specialized suppliers. The cost and schedule required for design iterations can become untenable.
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