Neonatal jaundice treatment incubator with pacifying device

By designing a neonatal jaundice treatment incubator equipped with a soothing device, the problem of traditional equipment failing to effectively soothe newborns' emotions and reduce health issues has been solved, achieving safe and rapid bilirubin reduction and an improved treatment environment.

CN121845883AInactive Publication Date: 2026-04-14揭阳市人民医院
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-27
Publication Date
2026-04-14
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention belongs to the field of medical treatment, and particularly relates to a neonatal jaundice treatment incubator with a pacifying device, the neonatal jaundice treatment incubator comprises a supporting seat, the top of the supporting seat is fixedly connected with a transparent box, one end of the transparent box is of a portal structure capable of being rotatably opened, and the top of the transparent box is fixedly connected with a power table; a blue light irradiation module and a uniform exhaust module are mounted at the bottom of the power table, an adjusting bed is mounted at the bottom of the inner side of the transparent box, and adjusting arms are mounted on the two sides of the transparent box; through the arrangement, the treatment environment of the newborn is improved, health problems caused by long-term treatment are reduced, manual operation is not needed, labor cost and pressure are reduced, when the emotion of the newborn is worsened, the newborn can be gently pressed and swung through the adjusting arms, the rhythm of a mother is simulated, and the sedation effect is achieved; the treatment quality is further improved.
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Description

Technical Field

[0001] This invention belongs to the medical field, specifically a neonatal jaundice treatment incubator equipped with a soothing device. Background Technology

[0002] Neonatal jaundice is a yellowing of the skin caused by immature bilirubin metabolism. Most cases are physiological, appearing after birth and resolving spontaneously. A minority are pathological, requiring timely medical intervention (such as phototherapy) to prevent excessively high bilirubin levels from damaging brain nerves and causing permanent harm.

[0003] Traditional neonatal jaundice treatment boxes primarily provide infants with a constant temperature and humidity environment and integrate a blue light irradiation module. They use blue light of a specific wavelength to reduce the concentration of bilirubin in the blood and are a basic medical device for treating neonatal hyperbilirubinemia.

[0004] Traditional jaundice treatment incubators are relatively simple, often just a box that can maintain a constant temperature and emit blue light. However, because the treatment period for jaundice is long, newborns cannot stay in the same position for a long time due to their thin and soft skulls and unclosed sutures, which can lead to health problems. If relying solely on medical staff, it is easy to cause inadequate care and put a lot of pressure on manpower.

[0005] Therefore, the present invention provides a neonatal jaundice treatment incubator equipped with a soothing device. Summary of the Invention

[0006] In order to overcome the shortcomings of the prior art, at least one technical problem raised in the background art is solved.

[0007] The technical solution adopted by the present invention to solve its technical problem is as follows: The present invention provides a neonatal jaundice treatment incubator with a soothing device, including a support base, a transparent box fixed to the top of the support base, one end of the transparent box being a rotatable and openable portal structure, a power supply fixed to the top of the transparent box, a blue light irradiation module and a uniform air exhaust module installed at the bottom of the power supply platform, an adjustable bed installed at the bottom inner side of the transparent box, and adjustable arms installed on both sides of the transparent box. A replaceable contactor is installed at the end of the adjustable arm, the contactor being composed of a docking platform and a base fixedly connected, and a locking structure adapted to the docking platform is provided at the end of the adjustable arm. The newborn requiring jaundice treatment is placed in a transparent incubator, ensuring they are wearing light-blocking goggles. The newborn lies flat on an adjustable bed. The blue light irradiation module inside the incubator is activated, irradiating the lower compartment with an appropriate intensity of blue light. Under this blue light, the structure of the fat-soluble bilirubin molecules in the newborn's body changes, transforming into a water-soluble isomer. This new type of bilirubin does not require liver metabolism and can be directly excreted through bile and urine, thus safely and quickly lowering the bilirubin concentration in the blood, thereby treating jaundice. During the treatment, the ventilation module continuously blows out warm air containing some moisture from the top, all controlled by the built-in heating module of the power supply unit. The treatment involves absorbing and heating external air, then vaporizing clean water and slowly delivering the mixture of hot and cold air into a transparent chamber. The chamber contains built-in temperature and humidity monitors, which adjust the environment based on the monitored data to maintain a constant temperature and humidity. Exhaled waste gas is discharged from the bottom of the chamber. Because treatment time is often long, measured in days, newborns have thin, soft skulls and unclosed sutures. Prolonged supine positioning or maintaining the same posture can cause adaptive flattening of the head, resulting in plagiocephaly or a flat head. The bones and skin also need to be protected from prolonged pressure, as this can easily lead to poor blood circulation and pressure sores. The power supply unit integrates an optical probe with a protective lens, thanks to the adjustable arm. To reduce the impact of blue light, the system uses an optical probe to constantly monitor the newborn's condition. The adjustable arm is periodically controlled to assist the newborn in turning over and adjusting pressure points, reducing health problems caused by prolonged periods in the same position. The general sequence is supine, left lateral, supine, right lateral, and back to supine. The adjustable arm also features various types of contactors with different functions, including but not limited to: a detection head for monitoring the newborn's heart rate, electrocardiogram, blood oxygen saturation, body temperature, and bilirubin levels; a soothing sucking head for comforting the baby; and a nebulizer head for supplemental therapy. Because the contactors are controlled by a movable adjustable arm, it ensures... The probe remains in gentle contact with the newborn's skin, preventing issues like tangled wires or probe detachment caused by frequent reflexes. The suction head can be adjusted to the newborn's position without manual intervention, reducing stress. The nebulizer head remains suspended above the newborn's mouth, ensuring treatment effectiveness. This setup not only improves the treatment environment for the newborn and reduces health problems caused by long-term treatment, but also eliminates manual operation, reducing labor costs and stress. Furthermore, when the newborn's mood worsens, the adjusting arm can be used to gently press and rock the newborn, mimicking a mother's rhythm for a calming effect, further improving treatment quality.

[0008] Preferably, the contactor is a detector, and an electrode cover is fixedly attached to the end of the base of the detector. The electrode cover is made of elastic material, and a connecting hole is opened at the end of the electrode cover. A center probe and a side probe adapted to the position of the connecting hole are fixedly attached to the front end of the base. During operation, the surface of the electrode cover is covered with receiving heads, which can capture weak current signals from the skin surface. This electrical signal originates from the contraction and relaxation of the heart. By amplification and analysis, the newborn's heart rate and electrocardiogram information can be obtained. At the same time, the electrode cover is made of elastic material, which will deform when in contact with the newborn, and slight force will be captured. Thus, contact with the newborn with minimal force will not cause harm. At the same time, the slightly deformable electrode cover can conform to the newborn to ensure the capture of electrical signals. The side probe is a blood oxygen probe that can emit infrared light. Infrared light penetrates tissue, and the absorption of light by oxygenated and deoxygenated hemoglobin in the blood is measured. The pulsation difference non-invasively calculates blood oxygen levels and heart rate, enabling continuous and safe monitoring of vital signs. The central probe is a transcutaneous bilirubinometer, which emits light of a specific wavelength into the skin and measures the difference between the absorption and reflection of light by subcutaneous tissue. This difference is related to the degree of jaundice caused by bilirubin, allowing the instrument to quickly estimate serum bilirubin levels. The electrode cover can also have a built-in thermometer to monitor the newborn's temperature at all times. With this setup, combined with the movable function of the adjustable arms, the detector can fit the newborn after the movement, regardless of the newborn's position. The electrode cover can also be deformed to adapt to slight movements of the newborn, eliminating problems such as the traditional probe falling off or the probe wires getting tangled. When assisting the newborn to turn over, one of the two adjustable arms can be used to maintain monitoring, or monitoring can be temporarily abandoned and resumed after the turning is finished.

[0009] Preferably, the contactor is a sucker, the base of which is made of elastic material, and a sucking mouth is fixedly attached to the end of the base. During operation, after the adjusting arm has completed its adjustment, the sucker can be connected and slowly brought close to the newborn, allowing the newborn to suckle on their own without being forced to suckle. Sucking is the strongest self-soothing reflex in an infant, which can effectively reduce heart rate, stabilize breathing, reduce unnecessary energy consumption, and use energy for growth. The sucking action can stimulate the vagus nerve, promote the secretion of gastrointestinal hormones, accelerate gastric emptying, and reduce problems such as feeding intolerance. The elastic base can deform to adapt to the movement of the newborn's mouth.

[0010] Preferably, the contactor is a nebulizer, and a diffuser that can spray atomized airflow is fixedly connected to the base end of the nebulizer. A detector is installed on the outside of the base. When auxiliary treatment is needed, after the adjustment arm has completed the adjustment, the nebulizer can be connected and moved above the newborn's mouth and nose to slowly release the atomized medicine to assist in the treatment. The detector can be a sound detection module. When a cough or the child's aversion cry is detected, the nebulizer is raised or stopped to further improve the quality of treatment.

[0011] Preferably, the transparent box has symmetrically arranged holes on both sides, and each hole has a rotating and opening exchange door and a flip door. The inner side of the exchange door is fixed with an inner protrusion, and the surface of the inner protrusion has two symmetrically arranged storage slots. When working, the flip door is opened, and blood can be drawn from the child manually when necessary. The storage slots are used to store different types of contactors, which facilitates the storage and connection of the adjustment arm.

[0012] Preferably, the storage slot is equipped with two individually controllable locking valves, and the surface of the exchange door is equipped with a removable separation cover. During operation, before the adjusting arm inserts the contactor into the storage slot, the outer locking valve pops out, stopping the contactor in a predetermined position. Then, the inner locking valve pops out to lock the docking platform. As the adjusting arm is pulled out, it can be contacted and fixed. The adjusting arm and the docking platform can be fixed by interlocking and magnetic attraction. At the same time, the separation cover can be opened from the outside to remove the contactor.

[0013] Preferably, drive arms are installed on both sides of the support base. The drive arms are arranged in a semi-circular shape. The drive end of the drive arm is rotatably engaged with a power box. The power box is fixedly connected to the adjusting arm. A support platform is fixedly connected between the bottom of the drive arm and the support base. During operation, the power box controls the extension and bending of the adjusting arm, and the drive arm controls the rotation of the entire power box, thereby allowing the adjusting arm to have a larger range of movement. At the same time, it ensures that the contactor can bend and move into the storage slot. The support platform is used to maintain the position of the drive arm.

[0014] Preferably, both sides of the support base are provided with sealing holes for the adjustment arm to pass through. The sealing holes are provided with elastic sealing structures. Both sides of the drive arm are fixedly connected to support frames. A connecting valve that is rotatably engaged with the center of the power box is fixed between the two support frames. During operation, the sealing holes and sealing structures ensure that the adjustment arm can rotate while reducing the interaction between internal and external air. The outside world is connected to the connecting valve to complete the transmission of information, power and atomized airflow, ensuring the normal operation of different contactors.

[0015] Preferably, the adjusting arm includes an elastic tube connected to a connecting valve. Multiple restraint plates are fixed to the outer side of the elastic tube, arranged linearly and equidistantly. Multiple adjusting ropes are slidably connected through the outer edges of the restraint plates. An elastic material covering layer is fitted over the outer side of each restraint plate. The ends of the adjusting ropes are fixed to the ends of the covering layer. The rear ends of the adjusting ropes are connected to a power box. During operation, the power box can be equipped with multiple telescopic components for individually adjusting the adjusting ropes. When the lowest adjusting rope retracts and the highest adjusting rope releases, and the surrounding adjusting ropes adjust adaptively, the adjusting arm can bend downwards by compressing the restraint plates, thus bringing the contactor closer to the newborn. Through various other retraction and extension operations, the adjusting arm can be controlled to face any angle. The elastic tube integrates multiple pipes for transmitting airflow, information, and power. The overall adjusting arm can be designed with a downward-bending arc for easy access to the newborn. When bending downwards, the adjustable range is greater. The adjusting arm can be rotated in conjunction with a drive arm, allowing it to be smoothly inserted horizontally into the storage slot.

[0016] Preferably, the bottom of the transparent box is fixedly connected to two electric slide rails, and the bottom of the adjustable bed is fixedly connected to a lifting structure. The electric slide rails are fixedly connected to the lifting mechanism at the bottom of the adjustable bed. During operation, the lifting mechanism can control the head of the adjustable bed to move upward to accommodate newborns with different needs. The electric slide rails can control the movement of the adjustable bed, which can be used to soothe newborns and also facilitate medical staff to move the newborn to a convenient position for operation.

[0017] The beneficial effects of this invention are as follows: 1. The neonatal jaundice treatment incubator with a soothing device described in this invention not only improves the treatment environment for newborns and reduces health problems caused by long-term treatment by setting up an adjustable arm, but also eliminates the need for manual operation, reducing labor costs and stress. Furthermore, when the newborn's mood worsens, the adjustable arm can be used to gently press and rock the newborn, simulating the mother's rhythm, to achieve a calming effect and further improve the quality of treatment.

[0018] 2. The neonatal jaundice treatment incubator with a soothing device described in this invention, through the setting of the detector and the movable function of the adjusting arm, can fit the newborn after the newborn has turned over, no matter what position the newborn is in. In addition, the electrode cover can be appropriately deformed to adapt to the slight movement of the newborn, thus eliminating the problems of traditional probes falling off or probe wires getting tangled. Attached Figure Description

[0019] The invention will now be further described with reference to the accompanying drawings.

[0020] Figure 1 This is a perspective view of the present invention; Figure 2 This is a perspective view of the support base and transparent box of the present invention; Figure 3 This is a perspective view of the transparent box of the present invention; Figure 4 This is a perspective view of the door for exchanging parts according to the present invention; Figure 5 This is a perspective view of the power box and adjusting arm of the present invention; Figure 6 This is a perspective view of the adjusting arm of the present invention; Figure 7 These are perspective views of different contactors of the present invention; Figure 8 This is a perspective view of the detector of the present invention; In the diagram: 1. Support base; 2. Transparent box; 3. Power supply platform; 4. Electric slide rail; 5. Adjustable bed; 6. Flip-up door; 7. Exchange door; 8. Separation cover; 9. Adjusting arm; 10. Sealing hole; 11. Inner protrusion; 12. Storage slot; 13. Locking valve; 14. Contactor; 15. Power box; 16. Drive arm; 17. Support platform; 18. Support frame; 19. Connecting valve; 20. Elastic tube; 21. Restraint plate; 22. Adjusting rope; 23. Wrapping layer; 24. Docking platform; 25. Base; 26. Electrode cover; 27. Suction nozzle; 28. Suction device; 29. ​​Atomizer; 30. Diffuser; 31. Detector; 32. Connecting hole; 33. Center probe; 34. Side probe; 35. Detector. Detailed Implementation

[0021] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0022] like Figures 1 to 8 As shown in the embodiment of the present invention, a neonatal jaundice treatment incubator with a soothing device includes a support base 1, a transparent box 2 fixedly connected to the top of the support base 1, one end of the transparent box 2 being a rotatable and openable portal structure, a power supply platform 3 fixedly connected to the top of the transparent box 2, a blue light irradiation module and a uniform airflow module installed at the bottom of the power supply platform 3, an adjustable bed 5 installed on the inner bottom of the transparent box 2, and adjustable arms 9 installed on both sides of the transparent box 2. A replaceable contactor 14 is installed at the end of the adjustable arm 9, the contactor 14 being composed of a docking platform 24 and a base 25 fixedly connected, and the end of the adjustable arm 9 being provided with a locking structure adapted to the docking platform 24. The newborn requiring jaundice treatment is placed in the transparent box 2, ensuring they are wearing light-blocking goggles. The newborn lies flat on the adjustable bed 5. The blue light irradiation module in the transparent box 2 is activated, irradiating the box with an appropriate intensity of blue light. Under this blue light, the structure of the fat-soluble bilirubin molecules in the newborn's body changes, transforming into a water-soluble isomer. This new type of bilirubin does not require liver metabolism and can be directly excreted through bile and urine, thus safely and quickly reducing the concentration of bilirubin in the blood, thereby treating jaundice. During the treatment, the ventilation module continuously blows out hot air containing some moisture from the top, all controlled by the electric heating module built into the power supply unit 3. The system heats external air by absorbing it, then vaporizes clean water and mixes it with the hot air, slowly delivering the mixture into the transparent box 2. The transparent box 2 contains built-in temperature and humidity monitors, which adjust the system based on the monitored information to ensure a constant temperature and humidity environment. Exhaled waste gas is discharged from the bottom of the transparent box 2. Because treatment time is often long, measured in days, newborns have thin and soft skulls with unclosed sutures. Prolonged supine positioning or maintaining the same posture can cause adaptive flattening of the head, resulting in plagiocephaly or a flat head. The bones and skin also need to be protected from prolonged pressure, as this can easily lead to poor blood circulation and pressure sores. The power supply unit 3 integrates an optical probe with a protective lens at its bottom, thanks to the adjustable arm 9. This system can reduce the impact of blue light, allowing for constant monitoring of the newborn's condition via an optical probe. Regularly controlling the adjusting arm 9 from one side assists the newborn in turning over and adjusting pressure points, reducing health problems caused by prolonged periods in the same position. The general sequence is supine, left lateral, supine, right lateral, and back to supine. Simultaneously, the contactors 14 mounted at the end of the adjusting arm 9 come in various types with different functions, including but not limited to: detection heads for monitoring the newborn's heart rate and electrocardiogram, blood oxygen saturation, and body temperature, as well as bilirubin detection; soothing sucking heads for comforting the child; and nebulizer heads for auxiliary treatment. Because the contactors 14 are controlled by the movable adjusting arm 9... This design ensures that the probe remains in close contact with the newborn's skin, preventing issues like tangled wires or probe detachment caused by frequent reflexes. The suction head can also be adjusted to suit the newborn's position without manual intervention, reducing stress. The nebulizer head remains suspended above the newborn's mouth, guaranteeing treatment effectiveness. This setup not only improves the treatment environment for the newborn and reduces health problems caused by long-term treatment, but also eliminates the need for manual operation, reducing labor costs and stress. Furthermore, when the newborn's mood worsens, the adjusting arm 9 can be used to gently press and rock the newborn, mimicking a mother's rhythm for a calming effect, further improving treatment quality.

[0023] The contactor 14 is a detector 35. An electrode cover 26 is fixedly connected to the end of the base 25 of the detector 35. The electrode cover 26 is made of elastic material and has a connecting hole 32 at the end. A center probe 33 and a side probe 34 that are adapted to the position of the connecting hole 32 are fixedly connected to the front end of the base 25. During operation, the electrode cover 26 is covered with receiver heads, which can capture weak electrical signals from the skin surface. These signals originate from the contraction and relaxation of the heart. Through amplification and analysis, the newborn's heart rate and electrocardiogram information can be obtained. The electrode cover 26 is made of elastic material, which deforms upon contact with the newborn, capturing even slight pressure. This ensures minimal contact with the newborn and prevents harm. The slightly deformable electrode cover 26 conforms to the newborn, ensuring signal capture. The side probe 34 is a blood oxygenation probe that emits infrared light. Infrared light penetrates tissue, and based on the pulsating difference in light absorption between oxygenated and deoxygenated hemoglobin in the blood, it non-invasively calculates blood oxygen saturation and heart rate, achieving continuous and safe monitoring of vital signs. The central probe... 33 is a transcutaneous bilirubinometer, which emits light of a specific wavelength into the skin and measures the difference between the absorption and reflection of light by subcutaneous tissue. This difference is related to the degree of jaundice caused by bilirubin. The instrument can quickly estimate the serum bilirubin level based on this. The electrode cover 26 can also be equipped with a built-in thermometer to monitor the newborn's body temperature at all times. With this setting, combined with the movable function of the adjusting arm 9, no matter what position the newborn is in when turning over, the detector 35 can fit the newborn after the movement is over. The electrode cover 26 can be deformed appropriately to adapt to the slight movement of the newborn, eliminating problems such as the traditional probe falling off or the probe wires getting tangled. When assisting the newborn to turn over, one of the two adjusting arms 9 can be used to maintain monitoring, or monitoring can be temporarily abandoned and resumed after the turning over is over.

[0024] The contactor 14 is a suction device 28, the base 25 of the suction device 28 is made of elastic material, and a suction nozzle 27 is fixedly connected to the end of the base 25. During operation, after the adjusting arm 9 has completed its adjustment, the sucker 28 can be connected and slowly brought closer to the newborn, allowing the newborn to suckle on their own without being forced to suckle. Sucking is the strongest self-soothing reflex in an infant, which can effectively reduce heart rate, stabilize breathing, reduce unnecessary energy consumption, and use energy for growth. The sucking action can stimulate the vagus nerve, promote the secretion of gastrointestinal hormones, accelerate gastric emptying, and reduce problems such as feeding intolerance. The flexible base 25 can deform to adapt to the movement of the newborn's mouth.

[0025] The contactor 14 is an atomizer 29. The base 25 of the atomizer 29 is fixedly connected to a diffuser 30 that can spray atomized airflow, and a detector 31 is installed on the outside of the base 25. When needed for auxiliary treatment, after the adjustment arm 9 has completed its adjustment, the nebulizer 29 can be connected and moved above the newborn's mouth and nose to slowly release the nebulized medicine for auxiliary treatment. The detector 31 can be a sound detection module. When a cough or the child's aversion cry is detected, the nebulizer 29 can be raised or stopped to further improve the quality of treatment.

[0026] The transparent box 2 has symmetrical holes on both sides. Each hole has a rotating door 7 and a flip door 6 installed in it. The inner side of the door 7 is fixed with an inner protrusion 11. The surface of the inner protrusion 11 has two symmetrical storage slots 1. When in operation, the flip door 6 is opened, allowing for manual blood draws and other operations on children when necessary; the storage slot 12 is used to store different types of contactors 14, facilitating the storage and connection of the adjustment arm 9.

[0027] The storage slot 12 is equipped with two individually controllable locking valves 13, and the surface of the exchange door 7 is equipped with a removable separation cover 8. During operation, before the adjusting arm 9 inserts the contactor 14 into the storage slot 12, the outer locking valve 13 pops out, stopping the contactor 14 in the predetermined position. Then, the inner locking valve 13 pops out and locks the docking platform 24. As the adjusting arm 9 is pulled out, it can be fixed in place. The adjusting arm 9 and the docking platform 24 can be fixed by interlocking and magnetic attraction. At the same time, the separation cover 8 can be opened from the outside to take out the contactor 14.

[0028] Drive arms 16 are installed on both sides of the support base 1. The drive arms 16 are arranged in a semi-circular shape. The drive end of the drive arm 16 is rotatably engaged with a power box 15. The power box 15 is fixedly connected to the adjusting arm 9. A support platform 17 is fixedly connected between the bottom of the drive arm 16 and the support base 1. During operation, the power box 15 controls the extension and bending of the adjusting arm 9, and the drive arm 16 controls the rotation of the overall power box 15, thereby allowing the adjusting arm 9 to have a larger range of movement, while ensuring that the contactor 14 can bend and move into the storage slot 12. The support platform 17 is used to maintain the position of the drive arm 16.

[0029] Both sides of the support base 1 are provided with sealing holes 10 for the adjustment arm 9 to pass through. The sealing holes 10 are provided with elastic sealing structures. Both sides of the drive arm 16 are fixedly connected with support frames 18. A connecting valve 19 that is rotatably engaged with the middle of the power box 15 is fixedly connected between the two support frames 18. During operation, the sealing hole 10 and the sealing structure ensure that the adjusting arm 9 can rotate while reducing the interaction between the inside and outside air; the outside world is connected to the connecting valve 19 to complete the transmission of information, power and atomized airflow, ensuring the normal operation of different contactors 14.

[0030] The adjusting arm 9 includes an elastic tube 20, which is connected to the connecting valve 19. Multiple restraint plates 21 are fixedly connected to the outer side of the elastic tube 20. The multiple restraint plates 21 are arranged linearly and equidistantly. Multiple adjusting ropes 22 are slidably connected through the outer edges of the multiple restraint plates 21. An elastic material wrapping layer 23 is sleeved on the outer side of the multiple restraint plates 21. The ends of the multiple adjusting ropes 22 are fixedly connected to the ends of the wrapping layer 23. The rear ends of the multiple adjusting ropes 22 are connected to the power box 15. During operation, the power box 15 can be equipped with multiple telescopic components to individually adjust the adjustment ropes 22. When the lowest adjustment rope 22 retracts and the highest adjustment rope 22 releases, the surrounding adjustment ropes 22 adjust adaptively. Combined with the compression of the restraint plate 21 by the adjustment ropes 22, the adjustment arm 9 can be controlled to bend downwards, thereby bringing the contactor 14 closer to the newborn. Through various other retraction and extension operations, the adjustment arm 9 can be controlled to face any angle. The elastic tube 20 integrates multiple pipes for transmitting airflow, information, and electricity. The overall adjustment arm 9 can be designed with a downward bending arc for easy access to the newborn. When bending downwards, the adjustment range is greater. Combined with the drive arm 16, the adjustment arm 9 can be rotated, allowing the adjustment arm 9 to be smoothly inserted horizontally into the storage slot 12.

[0031] The bottom of the transparent box 2 is fixedly connected to two electric slide rails 4, and the bottom of the adjustable bed 5 is fixedly connected to a lifting structure. The electric slide rails 4 are fixedly connected to the lifting mechanism at the bottom of the adjustable bed 5. During operation, the upgrade mechanism can control the head of the adjustable bed 5 to move upward to accommodate newborns with different needs. The electric slide rail 4 can control the movement of the adjustable bed 5, which can be used to soothe newborns and also facilitate medical staff to move the newborn to a convenient position during operations.

[0032] During operation, the newborn requiring jaundice treatment is placed in the transparent box 2, ensuring they are wearing light-blocking goggles. The newborn lies flat on the adjustable bed 5. The blue light irradiation module in the transparent box 2 is activated, irradiating the box with an appropriate intensity of blue light. Under the blue light irradiation, the structure of the fat-soluble bilirubin molecules in the newborn's body changes, transforming into a water-soluble isomer. This new type of bilirubin does not require liver metabolism and can be directly excreted through bile and urine, thus safely and quickly reducing the concentration of bilirubin in the blood, thereby treating jaundice. During the treatment process, the ventilation module continuously blows out hot air containing some water vapor from the top, all controlled by the electric heating module built into the power supply unit 3. The system uses a block control mechanism that heats external air by absorbing it, then vaporizes clean water and mixes it with the hot air, slowly delivering the mixture to the transparent box 2. The transparent box 2 contains built-in temperature and humidity monitors, which adjust the system based on the monitored information to ensure a constant temperature and humidity environment. Exhaled waste gas is discharged from the bottom of the transparent box 2. Because treatment time is often long, measured in days, newborns have thin and soft skulls with unclosed sutures. Prolonged supine positioning or maintaining the same posture can cause adaptive flattening of the head, resulting in plagiocephaly or flat head. The bones and skin also need to be protected from prolonged pressure, as this can easily lead to poor blood circulation and pressure sores. The system is equipped with an adjustable arm 9, and the bottom of the power supply unit 3 integrates an optical probe and protective goggles. The device reduces the impact of blue light and allows for constant monitoring of the newborn's condition via an optical probe. The adjustable arm 9 is periodically controlled to assist the newborn in turning over and adjusting pressure points, reducing health problems caused by prolonged periods in the same position. The general sequence is supine, left lateral, supine, right lateral, and back to supine. The contactor 14 at the end of the adjustable arm 9 comes in various types with different functions, including but not limited to: a detection head for monitoring the newborn's heart rate, electrocardiogram, blood oxygen saturation, body temperature, and bilirubin; a soothing sucking head for comforting the baby; and a nebulizer head for auxiliary treatment. The contactor 14 is controlled via the movable adjustable arm 9. This design ensures that the probe remains in close contact with the newborn's skin, preventing issues like tangled wires or probe detachment caused by frequent reflexes. The suction head can also be adjusted according to the newborn's position, eliminating the need for manual operation and reducing stress. The nebulizer head remains suspended above the newborn's mouth, guaranteeing treatment effectiveness. This setup not only improves the newborn's treatment environment and reduces health problems caused by long-term treatment, but also eliminates the need for manual operation, reducing labor costs and stress. Furthermore, when the newborn's mood worsens, the adjusting arm 9 can be used to gently press and rock the newborn, mimicking a mother's rhythm for a calming effect, further improving treatment quality.

[0033] The electrode cover 26 is covered with receiver heads, which can capture weak electrical signals from the skin surface. These signals originate from the contraction and relaxation of the heart. Through amplification and analysis, the newborn's heart rate and electrocardiogram information can be obtained. The electrode cover 26 is made of elastic material, which deforms upon contact with the newborn, capturing even slight pressure. This ensures minimal contact with the newborn and prevents harm. The slightly deformable electrode cover 26 conforms to the newborn, ensuring signal capture. The side probe 34 is a blood oxygenation probe that emits infrared light. Infrared light penetrates tissue, and based on the pulsating difference in light absorption between oxygenated and deoxygenated hemoglobin in the blood, it non-invasively calculates blood oxygen saturation and heart rate, achieving continuous and safe monitoring of vital signs. The central probe 33... This is a transcutaneous bilirubinometer that emits light of a specific wavelength into the skin and measures the difference between the absorption and reflection of light by the subcutaneous tissue. This difference is related to the degree of jaundice caused by bilirubin, and the instrument can quickly estimate the serum bilirubin level based on this. The electrode cover 26 can also be equipped with a built-in thermometer to monitor the newborn's body temperature at all times. With this setting, combined with the movable function of the adjusting arm 9, no matter what position the newborn is in when turning over, the detector 35 can fit the newborn after the movement is over, and the electrode cover 26 can be appropriately deformed to adapt to the slight movement of the newborn, eliminating problems such as the traditional probe falling off or the probe wires getting tangled. When assisting the newborn to turn over, one of the two adjusting arms 9 can be used to maintain monitoring, or monitoring can be temporarily abandoned and resumed after the turning over is over.

[0034] After the adjusting arm 9 has completed its adjustment, the sucker 28 can be connected and slowly brought closer to the newborn, allowing the newborn to suckle on their own without being forced to suckle. Sucking is the strongest self-soothing reflex in an infant, which can effectively reduce heart rate, stabilize breathing, reduce unnecessary energy consumption, and use energy for growth. The sucking action can stimulate the vagus nerve, promote the secretion of gastrointestinal hormones, accelerate gastric emptying, and reduce problems such as feeding intolerance. The flexible base 25 can deform to adapt to the movement of the newborn's mouth.

[0035] When auxiliary treatment is needed, after the adjustment arm 9 has completed its adjustment, the nebulizer 29 can be connected and moved above the newborn's mouth and nose to slowly release the nebulized medicine for auxiliary treatment. The detector 31 can be a sound detection module. When a cough or the child's aversion shouts are detected, the nebulizer 29 can be raised or stopped to further improve the quality of treatment.

[0036] The flip door 6 can be opened to allow for manual blood draws for children when necessary; the storage slot 12 is used to store different types of contactors 14, which facilitates the storage and connection of the adjustment arm 9.

[0037] Before the adjusting arm 9 inserts the contactor 14 into the storage slot 12, the outer locking valve 13 pops out, stopping the contactor 14 in the predetermined position. Then, the inner locking valve 13 pops out and locks the docking platform 24. As the adjusting arm 9 is pulled out, it can be fixed in place. The adjusting arm 9 and the docking platform 24 can be fixed by interlocking and magnetic attraction. At the same time, the separation cover 8 can be opened from the outside to take out the contactor 14.

[0038] The adjustment arm 9 is extended and bent by the power box 15, and the overall power box 15 is rotated by the drive arm 16, so that the adjustment arm 9 has a larger range of movement, while ensuring that the contactor 14 can bend and move into the storage slot 12. The support platform 17 is used to maintain the position of the drive arm 16.

[0039] The sealing hole 10 and sealing structure ensure that the adjusting arm 9 can rotate while reducing the interaction between the inside and outside air; the outside world is connected to the connecting valve 19 to complete the transmission of information, power and atomized airflow, ensuring the normal operation of different contactors 14.

[0040] Multiple telescopic components can be installed in the power box 15 to individually adjust the adjustment ropes 22. When the lowest adjustment rope 22 retracts and the highest adjustment rope 22 releases, and the surrounding adjustment ropes 22 adjust adaptively, the adjustment arm 9 can be bent downwards by the compression of the restraint piece 21 in conjunction with the adjustment ropes 22, thereby bringing the contactor 14 closer to the newborn. Through various other retraction and extension operations, the adjustment arm 9 can be controlled to face any angle. The elastic tube 20 integrates multiple pipes for transmitting airflow, information, and electricity. The overall adjustment arm 9 can be designed with a downward bending arc for easy access to the newborn. When bending downwards, the adjustment range is greater. In conjunction with the drive arm 16, the adjustment arm 9 can be rotated, allowing the adjustment arm 9 to be smoothly inserted horizontally into the storage slot 12.

[0041] The upgrade mechanism can control the head of the adjustable bed 5 to move upwards to accommodate newborns with different needs. The electric slide rail 4 can control the movement of the adjustable bed 5, which can be used to soothe newborns and also facilitate medical staff to move the newborn to a convenient position during operations.

[0042] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A neonatal jaundice treatment incubator equipped with a soothing device, characterized in that: The device includes a support base, a transparent box fixed to the top of the support base, one end of the transparent box being a rotatable and openable portal structure, a power supply platform fixed to the top of the transparent box, a blue light irradiation module and a uniform airflow module installed at the bottom of the power supply platform, an adjustable bed installed on the inner bottom of the transparent box, and adjustable arms installed on both sides of the transparent box. A replaceable contactor is installed at the end of each adjustable arm, the contactor consisting of a docking platform and a base fixedly connected, and a locking structure adapted to the docking platform is provided at the end of each adjustable arm.

2. A neonatal jaundice treatment incubator equipped with a soothing device according to claim 1, characterized in that: The contactor is a detector. An electrode cover is fixedly connected to the end of the base of the detector. The electrode cover is made of elastic material and has a connecting hole at the end. A center probe and a side probe adapted to the position of the connecting hole are fixedly connected to the front end of the base.

3. A neonatal jaundice treatment incubator with a soothing device according to claim 1, characterized in that: The contactor is a suction device, the base of which is made of elastic material, and a suction nozzle is fixedly attached to the end of the base.

4. A neonatal jaundice treatment incubator with a soothing device according to claim 1, characterized in that: The contactor is an atomizer, and a diffuser that can spray atomized airflow is fixed to the end of the base of the atomizer, and a detector is installed on the outside of the base.

5. A neonatal jaundice treatment incubator equipped with a soothing device according to claim 1, characterized in that: The transparent box has symmetrically arranged holes on both sides. Each hole has a rotating and opening door and a flip door. The inner side of the exchange door is fixed with an inner protrusion, and the surface of the inner protrusion has two symmetrically arranged storage slots.

6. A neonatal jaundice treatment incubator equipped with a soothing device according to claim 5, characterized in that: The storage slot is equipped with two individually controllable locking valves, and the surface of the exchange door is fitted with a removable separation cover.

7. A neonatal jaundice treatment incubator with a soothing device according to claim 6, characterized in that: Drive arms are installed on both sides of the support base. The drive arms are arranged in a semi-circular shape. The drive end of the drive arm is rotatably engaged with a power box. The power box is fixedly connected to the adjusting arm. A support platform is fixedly connected between the bottom of the drive arm and the support base.

8. A neonatal jaundice treatment incubator with a soothing device according to claim 7, characterized in that: Both sides of the support base are provided with sealing holes for the adjustment arm to pass through. The sealing holes are provided with elastic sealing structures. Both sides of the drive arm are fixedly connected to support frames. A connecting valve that is rotatably engaged with the middle of the power box is fixed between the two support frames.

9. A neonatal jaundice treatment incubator with a soothing device according to claim 8, characterized in that: The adjusting arm includes an elastic tube that is connected to a connecting valve. Multiple restraint plates are fixed to the outside of the elastic tube. The multiple restraint plates are arranged linearly and equidistantly. Multiple adjusting ropes are slidably connected through the outer edges of the multiple restraint plates. An elastic material wrapping layer is sleeved on the outside of the multiple restraint plates. The ends of the multiple adjusting ropes are fixed to the ends of the wrapping layer. The rear ends of the multiple adjusting ropes are connected to the power box.

10. A neonatal jaundice treatment incubator with a soothing device according to claim 9, characterized in that: The bottom of the transparent box is fixedly connected to two electric slide rails, and the bottom of the adjustable bed is fixedly connected to a lifting structure. The electric slide rails are fixedly connected to the lifting mechanism at the bottom of the adjustable bed.