At the 12th Annual Meeting of the Japanese Society of Gynecological Robotic Surgery, held on the picturesque shores of Lake Biwa in Shiga, Japan, the spotlight was on the Senhance® Simulator during the Skills Challenge Contest. This dynamic two-day event saw 40 physicians compete to achieve the highest scores by performing various tasks on the simulator. Our focus remains on leveraging innovation to support surgeons and improve the quality of care for patients worldwide. This hands-on experience provided a compelling showcase of how the Senhance System supports surgical excellence and precision. Such interactive events emphasize our commitment to transforming surgical care. We aim to enhance patient outcomes by integrating advanced technology, ensuring safer, more predictable surgeries. 「滋賀県の美しい琵琶湖畔で開催された第12 回日本婦人科ロボット手術学会学術集会では、Senhance ® シミュレーターによるスキル チャレンジ コンテストに注目が集まりました。この 2 日間にわたるダイナミックなイベントでは、延べ40 人の医師がシミュレーターで規定種目に挑戦し、最高得点を目指して競い合いました。 弊社は、革新的な技術を活用して外科医をサポートし、世界中の患者様の治療の質を向上させることに引き続き注力しています。シミュレータによる実践的な体験は、Senhance システムが外科手術の卓越性と精度をどのようにサポートしているかを説得力を持って示すものでした。このような機器操作を実感できるイベントは、外科治療の変革に対する当社の取り組みを強調するものです。高度な技術を統合することで、より安全で予測可能な手術を確実にし、患者様の転帰の向上に貢献することを目指しています。」 #Asensus #Senhance #Simulation #GynecologicalSurgery #AugmentedIntelligence #DigitalHealth #DigitalSurgery
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Robotics may still be considered cutting edge in healthcare, but the potential for improved patient outcomes is significant--offering precision and minimally invasive techniques. According to MarketsandMarkets™, the global surgical robots market is poised to reach $18.4 billion by 2027, growing at a CAGR of 16.6% from 2022-2027. This growth suggests an increasing role for robotics in specialized surgeries like tracheobronchoplasty in the treatment of TBM. Lazzaro Medical is positioned to facilitate standardizing and democratizing Minimally Invasive Tracheal Repair and make it more accessible to more thoracic surgeons. #tracheobronchoplasty #robotics #roboticsurgery #medicaldevices #healthcare #surgery #digitalsurgery #tracheobronchomalacia #thoracicsurgery
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CEO at Virtuoso Surgical, Inc. Professor of Urology / Mechanical and Biomedical Engineering Vanderbilt Univ.
Agree, will be interesting to see what emerges. J & J has certainly had an interesting road, timeline, and history to get to this spot. Often see the convoluted history of surgical robotics at J&J misstated in articles and all mashed up in odd ways in discussions as has seemingly involved Verb, Verily, Google, Auris etc. On a side note. We probably need to start using a better taxonomy when discussing "surgical robotics". There are an ever increasing number of surgical robotic platforms that are entering various spaces and applications. Interested in how experts feel we should name and divide up these "lanes".. So many options, but is it time to stop calling out the multi-port large organ / large work volume soft tissue surgical robots for laparoscopy and thoracoscopy as if they are the only "robotic surgery"? The success of SP, ION, and ortho systems broadens the field and naming conventions. Some examples of divisions ....... Laparoscopic versus endoscopic versus percutaneous Flexible versus rigid Soft and hard tissue (organs vs. bone etc.) Entry to body if any Work volume / workspace Ablative versus extirpative versus reconstructive End effector constructs End effector number and size Multi-port versus single port versus natural orifice versus no incision or entry Percutaneous Incision size Visualization (optical versus image guided versus combination) Surgeon input / oversight Automation components etc. etc. etc.
So J&J is targeting the second half of 2024 for filing an IDE to the FDA to allow begin clinical trials in the US with the Ottava robotic surgery system. Claimed differentiators for this new system are: ➡ 𝗜𝗻𝘃𝗶𝘀𝗶𝗯𝗹𝗲 𝗗𝗲𝘀𝗶𝗴𝗻 The four arms are incorporated underneath a standard-size table and are deployed only when they are needed. Arms are there when you need, invisible when you don't. This will give surgeons and their teams more space in the OR for collaboration and movement, as well as greater access to the patient. Other multi-port systems out there or in development have either one or several mobile bases that take some space around the table. ➡ 𝗧𝘄𝗶𝗻 𝗠𝗼𝘁𝗶𝗼𝗻 This feature unifies movement of the table and robotic arms, meaning arms and table move together. This will allow surgeons to move the table multiple times during the procedure without interrupting the workflow. ➡ 𝗖𝘂𝘀𝘁𝗼𝗺 𝗘𝗻𝗴𝗶𝗻𝗲𝗲𝗿𝗲𝗱 𝗘𝘁𝗵𝗶𝗰𝗼𝗻 𝗜𝗻𝘀𝘁𝗿𝘂𝗺𝗲𝗻𝘁𝘀 The robotic team has been working with Ethicon franchise in France to bring custom engineered Ethicon instruments to Ottava. Instruments that are "backed by decades of innovation and market leadership" in laparoscopic surgery. This will allow surgeons to have consistency and reliability across the instruments they use, for either traditional laparoscopic procedures or robotic-assisted procedures. #medtech #roboticsurgery #surgery
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More the merrier! As more companies bring their robotic platforms to the market, the overall domain progresses. This platform clearly comes with its unique advantages. Each of those platforms will be more suitable for particular surgeries or organs. Eventually, the platforms will evolve in such a way that some platforms will be highly suitable for majority of surgeries. Those will be the winners! #roboticsurgery
So J&J is targeting the second half of 2024 for filing an IDE to the FDA to allow begin clinical trials in the US with the Ottava robotic surgery system. Claimed differentiators for this new system are: ➡ 𝗜𝗻𝘃𝗶𝘀𝗶𝗯𝗹𝗲 𝗗𝗲𝘀𝗶𝗴𝗻 The four arms are incorporated underneath a standard-size table and are deployed only when they are needed. Arms are there when you need, invisible when you don't. This will give surgeons and their teams more space in the OR for collaboration and movement, as well as greater access to the patient. Other multi-port systems out there or in development have either one or several mobile bases that take some space around the table. ➡ 𝗧𝘄𝗶𝗻 𝗠𝗼𝘁𝗶𝗼𝗻 This feature unifies movement of the table and robotic arms, meaning arms and table move together. This will allow surgeons to move the table multiple times during the procedure without interrupting the workflow. ➡ 𝗖𝘂𝘀𝘁𝗼𝗺 𝗘𝗻𝗴𝗶𝗻𝗲𝗲𝗿𝗲𝗱 𝗘𝘁𝗵𝗶𝗰𝗼𝗻 𝗜𝗻𝘀𝘁𝗿𝘂𝗺𝗲𝗻𝘁𝘀 The robotic team has been working with Ethicon franchise in France to bring custom engineered Ethicon instruments to Ottava. Instruments that are "backed by decades of innovation and market leadership" in laparoscopic surgery. This will allow surgeons to have consistency and reliability across the instruments they use, for either traditional laparoscopic procedures or robotic-assisted procedures. #medtech #roboticsurgery #surgery
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Crafting Legacies, Driving Growth | Founding Director @ Globose Technology Solutions, India, INCN China & GTS USA with expertise in AI/ML Manual Datasets Collection & Annotation Services.
🤖 Revolutionizing Surgery: The Rise of Robotic Precision Robots are revolutionizing the field of surgery by providing unparalleled precision, flexibility, and control. With robotic assistance, surgeons can perform complex procedures with minimal invasiveness, reducing recovery times and improving patient outcomes. From laparoscopic surgeries to intricate heart operations, robotic systems enhance the capabilities of surgeons, making surgeries safer and more efficient. Discover how these technological advancements are shaping the future of healthcare and improving patient care. #HealthcareInnovation #RoboticSurgery #MedicalTechnology #FutureOfSurgery #PatientCare
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We look forward to participating in the 2024 Society of Robotic Surgery | SRS Annual Meeting from June 20-23 in Orlando, Florida. This pivotal event in the surgical community will feature Asensus in multiple panel discussions, including the much-anticipated Digital OR and Meet the Robots sessions. We believe that the future of surgery lies in harnessing the power of Performance-Guided Surgery™ to enhance surgical precision and efficiency. By providing real-time insights and data-driven guidance, The Intelligent Surgical Unit™ (ISU™) supports surgeons and care teams in making informed decisions during procedures. This approach not only improves the accuracy of surgeries but has the potential to also contribute to safer and more predictable outcomes, ultimately enhancing patient care. Join us in Orlando to explore how Augmented Intelligence is transforming the landscape of robotic surgery and setting new standards for clinical outcomes. https://srobotics.org/ #Asensus #SRS2024 #AugmentedIntelligence #DigitalSurgery #Digitalhealth
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Awesome to see arms get into the limelight. It's an unexplored modality to a great degree, as industry swapped over to optical navigation. Arms have a lot of strengths that optical cannot replicate, though optical navigators are superior in more generalized environments while arms tend to be (as in this example above) much more specialized. At Onesys - a company indirectly associated with Ethicon's arms (we sold some patents) - we believe that optical will be replaced by a completely new generation of surgical navigator. A single, one system, to replace both arms and optical.
So J&J is targeting the second half of 2024 for filing an IDE to the FDA to allow begin clinical trials in the US with the Ottava robotic surgery system. Claimed differentiators for this new system are: ➡ 𝗜𝗻𝘃𝗶𝘀𝗶𝗯𝗹𝗲 𝗗𝗲𝘀𝗶𝗴𝗻 The four arms are incorporated underneath a standard-size table and are deployed only when they are needed. Arms are there when you need, invisible when you don't. This will give surgeons and their teams more space in the OR for collaboration and movement, as well as greater access to the patient. Other multi-port systems out there or in development have either one or several mobile bases that take some space around the table. ➡ 𝗧𝘄𝗶𝗻 𝗠𝗼𝘁𝗶𝗼𝗻 This feature unifies movement of the table and robotic arms, meaning arms and table move together. This will allow surgeons to move the table multiple times during the procedure without interrupting the workflow. ➡ 𝗖𝘂𝘀𝘁𝗼𝗺 𝗘𝗻𝗴𝗶𝗻𝗲𝗲𝗿𝗲𝗱 𝗘𝘁𝗵𝗶𝗰𝗼𝗻 𝗜𝗻𝘀𝘁𝗿𝘂𝗺𝗲𝗻𝘁𝘀 The robotic team has been working with Ethicon franchise in France to bring custom engineered Ethicon instruments to Ottava. Instruments that are "backed by decades of innovation and market leadership" in laparoscopic surgery. This will allow surgeons to have consistency and reliability across the instruments they use, for either traditional laparoscopic procedures or robotic-assisted procedures. #medtech #roboticsurgery #surgery
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🤖 Robotic surgery is revolutionizing the way we approach medical procedures. With the help of advanced robotic technology, surgeons are able to perform highly precise and minimally invasive surgeries, resulting in quicker recovery times and better outcomes for patients. The use of robotics in surgery has opened up new possibilities for complex procedures, allowing for greater dexterity and control, leading to improved patient care. #medicaltechnology #surgicalinnovation #healthcareadvancements #roboticsurgery #precisionmedicine As the field of robotic surgery continues to evolve, it is crucial for healthcare professionals to stay informed and up-to-date on the latest advancements in this area. By embracing new technologies, we are able to provide our patients with safer and more effective treatment options. I am excited to see where the future of robotic surgery takes us and the positive impact it will have on patient care. Let's continue to support and explore the possibilities of robotic surgery in the medical field. #healthcare #medicaladvancements #roboticsurgery #innovation #surgery #medicalrobots 🏥
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Award-Winning | Disruptive Technology Sales | Deep Healthcare AI | Neuro | SaaS | Drives Territory Growth Turnaround | New Business
Did you know that the Brainlab mobile imaging robot Loop-X® is designed to enhance surgical workflows with robotic capabilities, supporting system positioning, imaging and verification? This technology was recently used for the first time by Badhu Kavar, MD and his team at the Royal Melbourne Hospital in Victoria, Australia to complete a L4/5 laminectomy and pedicle screw placement. But how was Loop-X used for this specific procedure? Prior to the start of the surgery, Loop-X was used to conduct a 3D navigation scan. Then, during the surgery, Brainlab Curve, our image guided surgery platform, was used to accurately navigate the minimally invasive surgery pedicle screws, and the 2D functionality of Loop-X was used to confirm interbody cage placement. Lastly, a final postoperative scan was performed to confirm the placement of all implants. Want to learn more about what Loop-X can bring to your surgical workflow? Click here: https://lnkd.in/ef6ijemh #robotics #imaging #surgery #digitalhealth
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Did you know that the Brainlab mobile imaging robot Loop-X® is designed to enhance surgical workflows with robotic capabilities, supporting system positioning, imaging and verification? This technology was recently used for the first time by Badhu Kavar, MD and his team at the Royal Melbourne Hospital in Victoria, Australia to complete a L4/5 laminectomy and pedicle screw placement. But how was Loop-X used for this specific procedure? Prior to the start of the surgery, Loop-X was used to conduct a 3D navigation scan. Then, during the surgery, Brainlab Curve, our image guided surgery platform, was used to accurately navigate the minimally invasive surgery pedicle screws, and the 2D functionality of Loop-X was used to confirm interbody cage placement. Lastly, a final postoperative scan was performed to confirm the placement of all implants. Want to learn more about what Loop-X can bring to your surgical workflow? Click here: https://lnkd.in/eBKJDQAn #robotics #imaging #surgery #digitalhealth
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