Military Technology

Vol 6 Chapter 3322: The leading intelligent surgical robot

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Listening to Wu Hao's introduction, everyone nodded frequently with expressions of surprise. Although they know the name of this intelligent multi-tentacle surgical robot, this is the first time for everyone to see this thing in person and hear Wu Haolai talk about it. Therefore, we have a deeper understanding of this intelligent multi-tentacle surgical robot.

"Compared with other surgical robots on the market, what are its advantages and disadvantages?" Mr. Zhang stared at the intelligent multi-tentacle surgical robot in the glass display case for a while, and then asked Wu Hao.

Wu Hao smiled slightly when he heard this question, and then replied: "There are many advantages. Because we are latecomers, we can innovate and develop based on all product technologies on the market. Therefore, the performance of our intelligent surgical robot Better and more powerful.

If we compare it from a multi-dimensional perspective, first of all, in terms of the design and control of the robotic arm, it is different from the traditional surgical robot arm. What we use is an intelligent bionic mechanical tentacle. Its prototype actually comes from our intelligent bionic electronics. prosthetics. "

"Everyone should have heard or understood about our intelligent bionic electronic prosthetics. Using our intelligent bionic electronic prosthetics technology, we can provide disabled patients with mechanical bionic limbs that are indistinguishable from real human arms.

The functionality is basically the same as a real limb, and the flexibility can reach more than 90% of a real limb, and in some performances, it even exceeds that of a real limb.

For example, in terms of strength, stability, and accuracy, it is far ahead of our real limbs. "

“Given that this smart bionic electronic prosthesis is so powerful, we have applied it to many fields, and one of them is the field of medical device technology.

By chance, we learned that the current medical surgical robots are basically monopolized by foreign countries, so they are very expensive. For example, a Da Vinci surgical robot costs 20 to 30 million, and it is difficult to build one. Please, it is difficult to buy.

Even because of some restrictions and restrictions, they don't sell to us at all.

So we were thinking about whether we could develop our own surgical robot to break foreign monopolies, replace them, serve more patients, and benefit them. "

At this point, Wu Hao glanced at everyone before continuing to speak.

"After continuous research and exploration, we finally developed the first generation of intelligent surgical robots."

While Wu Hao was speaking, relevant pictures were displayed on the big screen. All of this is controlled by the artificial intelligence assistant Keke. It can match the corresponding display content according to the content of Wu Hao's speech. It can seamlessly connect with Wu Hao's speech and is very intelligent.

"Yes, it's the one on the screen. It was relatively rough at first, so we quickly developed a second-generation intelligent surgical robot based on this. It is more advanced than the first-generation product, and we have our current sample. prototype.

The one shown in front of us is the third generation intelligent multi-tentacle surgical robot. "

At this point, Wu Hao turned around and pointed at the intelligent surgical robot inside the glass display case, and then returned to the topic and continued the introduction.

“Because they use the same technology as smart bionic electronic prosthetics, our mechanical tentacles, or robotic arms, are more flexible, stable, precise, and have better control. It can be said that they are far ahead of the surgical robots currently on the market. .”

"Another example is the surgical incision. Our smart multi-tentacle surgical robot has a smaller incision. In most cases, only one incision is needed, and the size of the incision is very small, only half the size of a surgical robot of the same level. Or even a third.

Such a tiny incision can reduce damage to surrounding tissues, reduce pain and recovery time after surgery, and is more suitable for complex and delicate surgical operations. "

At this point, Wu Hao paused for a moment and gave everyone a little time to digest and react before he continued to introduce.

“Compared with the three-dimensional high-definition camera and flat-screen display system equipped with traditional surgical robots.

Our smart multi-tentacle surgical robot can be equipped with a clearer three-dimensional high-definition lens set. It can even insert two, three, or even multiple three-dimensional high-definition lens sets into the patient's body during surgery according to needs. , thereby providing a clearer and more comprehensive surgical field of view.

For example, we can provide front, side, top and even back views, so that our operating doctors can grasp the comprehensive situation of the organs and lesions in the patient's body without losing any details.

From this point of view, it is more comprehensive, clearer and more precise than the single lens view of traditional surgical robots, or even the human eye view of our traditional open surgery. "

"and!"

Wu Hao said with emphasis: "Compared with the several mechanical arms of these surgical robots on the market, our intelligent multi-tentacle surgical robot can have multiple mechanical tentacles. Currently, our products include There are six-armed ones, eight-armed ones, sixteen-armed ones, even twenty-four-armed ones, and even higher ones.

More mechanical tentacles, or arms, so it can have more functions.

For example, we can replace these high-definition lenses with B-ultrasound probes, such as phased array probes, convex array probes, and linear array probes, so that we can obtain structural information inside the lesions of relevant organs, and thus have a more complete understanding of the patient's condition. The success rate of the surgery is naturally higher.

In addition to B-ultrasound probes, we can also use small X-ray imaging equipment to perform X-ray imaging of patient lesions.

And the detection equipment can be used alone or in combination.

We can even use a three-dimensional high-definition lens or a four-dimensional B-ultrasound probe to perform three-dimensional imaging of the patient's internal organs and lesions, thereby using the artificial intelligence system to generate a real-time digital model to facilitate our doctors to understand the patient's condition more intuitively. illness.

Therefore, in terms of surgical field of view, our intelligent multi-tentacle surgical robot is far ahead of traditional surgical robots, and it can even be said that it is not in the same dimension. "

At this point, Wu Hao took a breath and said with a smile: "In addition to these, we also have great advantages in reducing doctor fatigue, surgical adaptation range, and learning curve.

What you see now is only the body of our intelligent multi-tentacle surgical robot, which is the intelligent mechanical tentacle part. It only accounts for a small part of our entire intelligent multi-tentacle surgical robot.

In addition to this part, we also have an operating display terminal for doctors to use. End of chapter)

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