Yan Chai Hospital Introduces Titanium Meter Robots in Nuclear Medicine

Today, artificial intelligence has entered the medical field. "Dr. Watson" as a cancer treatment software can already defeat humans in the race and become a precise "oncologist expert advisor". Now, in the field of nuclear medicine, nanobots have become “super doctors” who are not afraid of radiation. Real-time monitoring, physical examination, and drug delivery of patients undergoing radiation therapy not only reduce the risk of radiation to medical staff, but also improve the monitoring of patients. Treatment and safety.

Yan Chai Hospital introduced a titanium robot in the Department of Nuclear Medicine. Chen Jinhai

In September this year, as the first medical institution in Shanghai to introduce and use Titanium robots, Renji Hospital took the lead in the introduction of Titanium robots in the Department of Nuclear Medicine and achieved good results after more than one month of operation.

It is well-known that as a molecularly-targeted drug for the treatment of thyroid cancer, radioactive iodine 131 is an important means for the treatment of residual hyperthyroidism and residual thyroid cancer. Radioactive iodine-131 can be specifically absorbed by residual thyroid cancer cells after surgery, releasing beta rays to irradiate thyroid cancer for therapeutic purposes. Because the patient takes a therapeutic dose of radioactive iodine 131 and becomes a “radioactive source”, it can cause potential radiation hazards to the surrounding population and occupational medical personnel. Therefore, according to clinical guidelines, patients must take a certain amount of time during high-dose radioactive iodine-131 treatment. In a special radioactive radiation protection isolation ward.

According to Liu Jianjun, director of the Department of Nuclear Medicine at Renji Hospital, in order to reduce the potential radiation harm to health care workers, doctors and nurses are required to wear leaded clothes every time they enter the ward. Clinically, drugs that need to be taken within one week are usually given to patients at one time. Doctors and nurses usually conduct rounds, consultations, and answering questions with patients through surveillance videos and intercom facilities. The patient's daily routine vital signs observations are mainly completed and reported by the patient himself.

Patients taking drugs for the first two days, the side effects are relatively large, nausea, vomiting and other discomfort, as well as laryngeal edema, respiratory distress and even suffocation. If the monitoring is not timely, it will increase the potential medical safety risks.

The titanium rice robot is an iron man who is not afraid of radiation. It not only brings more accurate services to patients with radiation, but also reduces the occupational injuries of medical personnel. The Titanium robot can fully implement the treatment specification and conduct a physical examination for all patients every 2 hours: The robot will automatically go to each isolation ward. After calling the patient's name, the patient's identity will be confirmed by the face recognition, including body temperature, blood pressure, and thyroid photography. Medical activities such as the monitoring of vital signs such as iodine and radiation residues can greatly reduce the number of medical personnel entering and leaving the isolation ward, avoid unnecessary radiation, and improve medical safety standards.

The nuclear medicine department ward service robot can also help nurses to complete drug distribution and notification of medications. After the nurse puts medicines into the patient's face or badge, the patient is sent to each isolation ward, the patient name is called, the patient's identity is confirmed by face recognition, and the medicine box is automatically opened after the voice confirmation. The medication notification is played. . The robot can strengthen the mission of the patient during the treatment process. Through the active interaction between the robot and the patient, the boring and incomprehensible medical care and nursing knowledge can be turned into voice quizzes in the animation scene to achieve better missionary results.

The Titanium robot checks the patient. Chen Jinhai

The robot can effectively help the medical staff and the patient to perform remote video and observe the patient's site structure. Through real-time video interaction, doctors and nurses can communicate with patients through robots at any time. The radiation condition of the ward is collected by the radiation detection device on the robot body, and a corresponding alarm can be made according to the need. The robot can open dialogues for post-operative patient education and related patient concerns.

According to Liu Jianjun, director of the Nuclear Medicine Department of Yan Chai Hospital, "The use of Titanium robots in the clinic not only improves the patient's care and safety, but also makes them feel that they are always with them, reducing the anxiety caused by isolation and Lonely, the patient feels more secure, and reduces the risk of medical personnel receiving radiation, enabling the medical personnel to grasp the patient's vital signs in a safer and safer environment.Hoping to further improve and develop human-computer interaction capabilities in the future, Health care workers can further improve patient experience by increasing interaction with patients."

In addition to the nuclear medicine department, Titanium robots have many uses. At present, many kinds of medical robot products, such as medical material transport robots, nuclear medicine department ward service robots, and elderly care companion robots, have been put into clinical applications in large hospitals such as Wuhan Xiehe Hospital.

Taking the operating room as an example, the Titanium robot can achieve the functions of ordering and automatic distribution of consumables, instruments, and other items between the operating room and the secondary warehouse through the software system that interfaces with the hospital warehouse HIS, effectively avoiding the surgery process. The situation of being forced to be interrupted while waiting for transportation shortens the length of operation and optimizes the use of high-value consumables in the operating room.

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