CN207306863U - A kind of gait rehabilitation training device - Google Patents
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- CN207306863U CN207306863U CN201720319476.0U CN201720319476U CN207306863U CN 207306863 U CN207306863 U CN 207306863U CN 201720319476 U CN201720319476 U CN 201720319476U CN 207306863 U CN207306863 U CN 207306863U
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- 238000012549 training Methods 0.000 title claims abstract description 46
- 230000005021 gait Effects 0.000 title claims abstract description 39
- 238000005259 measurement Methods 0.000 claims description 7
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Abstract
本实用新型公开了一种步态康复训练装置,属于医疗器械领域。装置的扶手底盘底部一侧固定于两条直角连接杆上,直角连接杆另一端通过轴承固定于中心轴上,中心轴固定于升降结构上;第一直线电机的机身底部铰接于升降结构上,其动力输出轴顶部铰接于扶手底盘底部;扶手底盘上部两侧均装有圆柱型抓手;所述的升降结构的顶部平台中设置有容纳座椅板的空腔,座椅板与顶部平台构成移动副;升降结构底部搭载于U型车底盘上,U型车底盘的开口朝向用户站立方向;U型车底盘下方设有两个步进电机和四个车轮结构,车轮分为两个前轮和两个后轮,步进电机用于驱动两个前轮从而带动整个步态康复训练装置。
The utility model discloses a gait rehabilitation training device, which belongs to the field of medical equipment. One side of the bottom of the armrest chassis of the device is fixed on two right-angled connecting rods, the other end of the right-angled connecting rod is fixed on the central shaft through a bearing, and the central shaft is fixed on the lifting structure; the bottom of the fuselage of the first linear motor is hinged on the lifting structure The top of the power output shaft is hinged to the bottom of the armrest chassis; both sides of the upper part of the armrest chassis are equipped with cylindrical grips; the top platform of the lifting structure is provided with a cavity for accommodating the seat board, and the seat board and the top The platform constitutes a moving pair; the bottom of the lifting structure is mounted on the U-shaped car chassis, and the opening of the U-shaped car chassis faces the user's standing direction; two stepping motors and four wheel structures are arranged under the U-shaped car chassis, and the wheels are divided into two parts. The front wheel and the two rear wheels, the stepper motor is used to drive the two front wheels so as to drive the whole gait rehabilitation training device.
Description
技术领域technical field
本实用新型属于医疗器械领域,具体涉及一种步态康复训练装置。The utility model belongs to the field of medical equipment, in particular to a gait rehabilitation training device.
背景技术Background technique
我国对康复机器人的研究起步比较晚,辅助型康复机器人的研究成果相对较多,康复训练机器人方面的研究成果则比较少。清华大学在国内率先研制了卧式下肢康复训练机器人样机。我国简易型的康复训练器械比较多,市场上卖的大多数就是这些简易型的康复训练器械,原理是设置一定强度的运动阻尼,模拟用户运动过程的阻尼,令用户可以逐渐恢复运动能力。The research on rehabilitation robots in our country started relatively late, and there are relatively many research results on auxiliary rehabilitation robots, but there are relatively few research results on rehabilitation training robots. Tsinghua University took the lead in developing a prototype of a horizontal lower limb rehabilitation training robot in China. There are many simple rehabilitation training equipment in our country. Most of the simple rehabilitation training equipment sold in the market is to set a certain intensity of motion damping to simulate the damping of the user's exercise process, so that the user can gradually restore exercise ability.
相比于其他的康复训练,步态康复训练机器人有着更好的人机和谐功能,能够更科学、更智能、更和谐,而且只需通过用户自身的调理应用,不用再长时间呆在医院里进行治疗,因此会有更加广阔的应用范围。Compared with other rehabilitation training, the gait rehabilitation training robot has a better human-machine harmony function, which can be more scientific, intelligent, and more harmonious, and only needs to be adjusted by the user himself, so that he does not need to stay in the hospital for a long time treatment, so there will be a wider range of applications.
实用新型内容Utility model content
本实用新型的目的是克服现有技术中存在的问题,并提供一种步态康复训练装置。本实用新型所采用的具体技术方案如下:The purpose of the utility model is to overcome the problems existing in the prior art and provide a gait rehabilitation training device. The concrete technical scheme that the utility model adopts is as follows:
一种步态康复训练装置,包括可旋转扶手结构、升降结构、车轮结构、U型车底盘;可旋转扶手结构包括扶手底盘和第一直线电机;扶手底盘底部一侧固定于两条直角连接杆上,直角连接杆另一端通过轴承固定于中心轴上,中心轴固定于升降结构上;第一直线电机的机身底部铰接于升降结构上,其动力输出轴顶部铰接于扶手底盘底部,用于驱动扶手底盘绕中心轴旋转;扶手底盘上部两侧均装有圆柱型抓手;所述的升降结构的顶部平台中设置有容纳座椅板的空腔,座椅板与顶部平台构成移动副,使座椅板能够根据需要收纳或者拉伸;升降结构底部搭载于U型车底盘上,U型车底盘的开口朝向用户站立方向;U型车底盘下方设有两个步进电机和四个车轮结构,车轮分为两个前轮和两个后轮,步进电机用于驱动两个前轮从而带动整个步态康复训练装置。A gait rehabilitation training device, comprising a rotatable armrest structure, a lifting structure, a wheel structure, and a U-shaped chassis; the rotatable armrest structure includes an armrest chassis and a first linear motor; one side of the bottom of the armrest chassis is fixed on two right-angled joints On the rod, the other end of the right-angle connecting rod is fixed on the central shaft through a bearing, and the central shaft is fixed on the lifting structure; the bottom of the body of the first linear motor is hinged on the lifting structure, and the top of the power output shaft is hinged on the bottom of the armrest chassis. It is used to drive the armrest chassis to rotate around the central axis; both sides of the upper part of the armrest chassis are equipped with cylindrical grips; the top platform of the lifting structure is provided with a cavity for accommodating the seat board, and the seat board and the top platform form a moving pair, so that the seat board can be accommodated or stretched according to needs; the bottom of the lifting structure is mounted on the U-shaped chassis, and the opening of the U-shaped chassis faces the user’s standing direction; two stepping motors and four A wheel structure, the wheels are divided into two front wheels and two rear wheels, and the stepper motor is used to drive the two front wheels to drive the entire gait rehabilitation training device.
作为优选,所述的座椅板位于升降结构顶部平台内的部分带有凸缘,用于控制座椅板的最大拉伸量;座椅板的前端可拆卸式连接有两条连接绳,连接绳的另一端和扶手结构相连,用于在座椅板拉出升降结构顶部平台后提供拉力。As a preference, the part of the seat board located in the top platform of the lifting structure has a flange for controlling the maximum stretching of the seat board; the front end of the seat board is detachably connected with two connecting ropes, connected The other end of the rope is connected with the armrest structure, and is used to provide pulling force after the seat board is pulled out of the top platform of the lifting structure.
作为优选,所述的升降结构采用链式升降装置,由多条直杆铰接构成剪刀叉式结构,最顶部的两条直杆之间横跨有支承杆,第二直线电机的机身底部铰接与U型车底盘上,其动力输出轴顶部铰接于支承杆上,用于推动链式升降装置以控制可旋转扶手结构的高度。As a preference, the lifting structure adopts a chain-type lifting device, which is composed of a plurality of straight rods hinged to form a scissor-fork structure. There is a support rod across the top two straight rods, and the bottom of the fuselage of the second linear motor is hinged. On the chassis of the U-shaped car, the top of the power output shaft is hinged on the support rod, which is used to push the chain lifting device to control the height of the rotatable armrest structure.
作为优选,所述的第一直线电机的动力输出轴伸缩行程需要满足:动力输出轴完全收缩时,扶手底盘上的圆柱型抓手在处于坐姿的用户的双手抓扶范围内。Preferably, the stretching stroke of the power output shaft of the first linear motor needs to satisfy: when the power output shaft is fully contracted, the cylindrical grip on the armrest chassis is within the grasping range of both hands of the user in a sitting position.
作为优选,所述的U型车底盘由两条并排的底杆中间通过两条中间杆固定而成;底杆位于步态康复训练装置前进方向的一端底部安装前轮,步进电机安装于电机架上,且其动力输出轴与前轮相连;电机架和底杆之间设置有弹簧减震器;底杆的另一端底部安装后轮。As a preference, the U-shaped vehicle chassis is formed by fixing the middle of two side-by-side bottom bars through two middle bars; the bottom bar is located at one end of the forward direction of the gait rehabilitation training device, and the front wheel is installed at the bottom, and the stepping motor is installed on the motor. on the frame, and its power output shaft is connected with the front wheel; a spring shock absorber is arranged between the motor frame and the bottom bar; the rear wheel is installed at the bottom of the other end of the bottom bar.
作为优选,所述的扶手底盘上圆柱型抓手附近设置有柔软手垫板。As a preference, a soft hand pad is provided near the cylindrical grip on the armrest chassis.
作为优选,还设有单片机作为控制单元,并与步态康复训练装置中的各电机相连。Preferably, a single-chip microcomputer is also provided as a control unit, and is connected with each motor in the gait rehabilitation training device.
作为进一步的优选,还设有与控制单元通过无线通信连接的惯性测量装置,用于测量用户的行进速度。As a further preference, an inertial measurement device connected to the control unit through wireless communication is also provided for measuring the traveling speed of the user.
本实用新型的有益效果是:The beneficial effects of the utility model are:
(1)本实用新型通过可旋转扶手结构和升降结构使其具有直线和旋转两个自由度,可旋转扶手结构依靠直线电机,在帮助了用户使用其部分的剩余力量,不减少其肌肉力量的前提下,能将用户搀扶起;同时在行走时也可以提供支撑力。(1) The utility model has two degrees of freedom of straight line and rotation through the rotatable armrest structure and the lifting structure. The rotatable armrest structure relies on the linear motor, which helps the user to use part of his remaining strength without reducing his muscle strength. Under the premise, it can help the user up; at the same time, it can also provide support when walking.
(2)本实用新型的可旋转扶手结构安装压力传感器,根据压力传感器传送的数据,调节升降台高度,使用户达到最舒适的状态,可以适应不同的用户。(2) The rotatable armrest structure of the utility model is equipped with a pressure sensor, and the height of the lifting platform is adjusted according to the data transmitted by the pressure sensor, so that the user can reach the most comfortable state and can adapt to different users.
(3)本实用新型的U型车底座中安装合适的减震器,以此增强其在野外复杂环境下的使用性。(3) Appropriate shock absorbers are installed in the U-shaped car base of the present utility model, so as to enhance its usability in complex outdoor environments.
(4)本实用新型的控制单元与用户穿戴的惯性测量单元相结合,实现了用户开始运动就启动的自启动功能,并可以在用户使用时做到步态跟随;人机结合,用户不需要负重训练。(4) The control unit of the utility model is combined with the inertial measurement unit worn by the user to realize the self-starting function that the user starts to exercise, and can follow the gait when the user uses it; weight training.
(5)本实用新型注重人机交互功能,能够全方位监测用户的身体状况,不仅仅从康复训练方面,更加延伸到医学生理方面,一机多用,进一步保护用户的身体健康。(5) The utility model pays attention to the human-computer interaction function, and can monitor the user's physical condition in all directions, not only from the aspect of rehabilitation training, but also extends to the aspect of medical physiology, one machine with multiple functions, and further protects the user's health.
(6)本实用新型设置人性化座椅,方便用户训练时休息(6) The utility model is equipped with a humanized seat, which is convenient for users to rest during training
附图说明Description of drawings
图1步态康复训练装置整体结构图;Fig. 1 overall structural diagram of gait rehabilitation training device;
图2为步态康复训练装置升降结构示意图;Fig. 2 is a schematic diagram of the lifting structure of the gait rehabilitation training device;
图3为步态康复训练装置前轮结构等轴侧视图;Fig. 3 is an isometric side view of the front wheel structure of the gait rehabilitation training device;
图4为步态康复训练装置辅助用户使用的示意图。Fig. 4 is a schematic diagram of the gait rehabilitation training device assisting users in using it.
图5为步态康复训练装置的可旋转式扶手结构旋至最低处时的状态示意图;Fig. 5 is a schematic diagram of the state when the rotatable armrest structure of the gait rehabilitation training device is rotated to the lowest position;
图6为步态康复训练装置的可旋转式扶手结构旋至正常步态训练时的状态示意图。Fig. 6 is a schematic diagram of the state when the rotatable armrest structure of the gait rehabilitation training device is rotated to normal gait training.
图中:扶手底盘15、第一直线电机38直角连接杆21、中心轴25、第一直线电机38、圆柱型抓手17、柔软手垫板16、直杆28、第二直线电机34、座椅板56、连接绳57、底杆1、中间杆40、前轮8、步进电机6、电机架7、弹簧减震器55和后轮3。Among the figure: armrest chassis 15, first linear motor 38 right-angle connecting rod 21, central axis 25, first linear motor 38, cylindrical gripper 17, soft hand backing plate 16, straight rod 28, second linear motor 34 , seat plate 56, connecting rope 57, bottom bar 1, middle bar 40, front wheel 8, stepper motor 6, motor frame 7, spring shock absorber 55 and rear wheel 3.
具体实施方式Detailed ways
下面结合附图对本实用新型作进一步详细描述。Below in conjunction with accompanying drawing, the utility model is described in further detail.
如图1所示,本实用新型的步态康复训练装置,包括可旋转扶手结构、升降结构、车轮结构、U型车底盘和控制装置。其作用是辅助下肢需要锻炼的用户实现站立、行走等功能,使其逐渐恢复下肢功能。As shown in Figure 1, the gait rehabilitation training device of the present utility model includes a rotatable armrest structure, a lifting structure, a wheel structure, a U-shaped chassis and a control device. Its function is to assist users who need to exercise their lower limbs to realize functions such as standing and walking, so that they can gradually restore lower limb functions.
升降结构用于调整扶手结构对用户的适应高度;控制装置用于根据用户指令手动或自动地控制步态康复训练装置的运动;车轮机构用于驱动步态康复训练装置并根据控制单元的指令调节运动速度和方向。用户通过操作外部遥控器和可旋转扶手结构上的开关来控制步态康复训练装置,装置中的直线电机通过用户手动操作和传感器来调整工作状态,步进电机通过惯性测量单元的数据调整运动装置状态。The lifting structure is used to adjust the adaptive height of the armrest structure to the user; the control device is used to manually or automatically control the movement of the gait rehabilitation training device according to user instructions; the wheel mechanism is used to drive the gait rehabilitation training device and adjust according to the instructions of the control unit Movement speed and direction. The user controls the gait rehabilitation training device by operating the external remote controller and the switch on the rotatable armrest structure. The linear motor in the device adjusts the working state through the user's manual operation and sensors, and the stepper motor adjusts the motion device through the data of the inertial measurement unit. state.
可旋转扶手结构包括扶手底盘15和第一直线电机38;扶手底盘15底部一侧固定于两条直角连接杆21的水平部上,直角连接杆21垂直端通过轴承固定于中心轴25上,中心轴25通过另外的轴承固定于升降结构上。由此,扶手底盘15可以整体以中心轴25进行旋转,以调整其与用户的高度。第一直线电机38的机身底部铰接于升降结构上,其动力输出轴顶部末端铰接于扶手底盘15底部。当动力输出轴伸缩时,可以驱动扶手底盘15绕中心轴25旋转。扶手底盘15上部两侧均装有圆柱型抓手17,圆柱型抓手17附近设置有柔软手垫板16,作为用户手部的柔性缓冲。两个圆柱型抓手17顶部可以分别设置控制开关,一个为整体开关,用于控制整体系统的运动开启和关闭,另一个为高度调节开关,用于控制整个扶手结构的高度。其具体控制可与单片机等控制装置联动。The rotatable armrest structure includes an armrest chassis 15 and a first linear motor 38; one side of the bottom of the armrest chassis 15 is fixed on the horizontal parts of two right-angled connecting rods 21, and the vertical ends of the right-angled connecting rods 21 are fixed on the central shaft 25 through bearings. Central shaft 25 is fixed on the lifting structure by other bearings. Thus, the armrest chassis 15 can be rotated on the central axis 25 as a whole to adjust its height relative to the user. The fuselage bottom of the first linear motor 38 is hinged on the lifting structure, and the top end of its power output shaft is hinged on the bottom of the armrest chassis 15 . When the power output shaft stretches, it can drive the armrest chassis 15 to rotate around the central axis 25 . Both sides of the upper part of the armrest chassis 15 are equipped with cylindrical grips 17, and a soft hand backing plate 16 is arranged near the cylindrical grips 17 as a flexible buffer for the user's hands. The tops of the two cylindrical grippers 17 can be provided with control switches respectively, one is an integral switch, which is used to control the opening and closing of the movement of the overall system, and the other is a height adjustment switch, which is used to control the height of the entire handrail structure. Its specific control can be linked with control devices such as single-chip microcomputers.
如图2所示,升降结构采用链式升降装置,由多条直杆28铰接构成剪刀叉式结构,最顶部的两条直杆28之间横跨有支承杆,第二直线电机34的机身底部铰接与U型车底盘上,其动力输出轴顶部铰接于支承杆上,用于推动链式升降装置以控制可旋转扶手结构的高度。升降结构的顶部平台中,由四条边梁首位相连形成矩形支架,支架内部布置加固梁。顶部平台中一条梁体上开设通槽,用于容纳座椅板56伸缩,座椅板56与顶部平台的该条梁构成移动副,使座椅板56能够根据需要收纳或者拉伸。座椅板56位于升降结构顶部平台内的部分带有凸缘,用于控制座椅板56的最大拉伸量。当用户需要坐下休息时,可以将其拉出,不使用时再收回去。同时为了给处于拉伸状态的座椅板56提供支撑力,座椅板56的前端可拆卸式连接有两条连接绳57,连接绳57的另一端和扶手结构相连,由此为座椅板56拉出升降结构顶部平台后提供拉力。As shown in Figure 2, the lifting structure adopts a chain lifting device, which is hinged by a plurality of straight rods 28 to form a scissor-fork structure. The bottom of the body is hinged with the U-shaped chassis, and the top of the power output shaft is hinged on the support rod, which is used to push the chain lifting device to control the height of the rotatable armrest structure. On the top platform of the lifting structure, four side beams are first connected to form a rectangular bracket, and reinforcement beams are arranged inside the bracket. A beam body in the top platform offers a through groove for accommodating the expansion and contraction of the seat board 56. The seat board 56 and the beam of the top platform form a moving pair, so that the seat board 56 can be accommodated or stretched as required. The part of the seat board 56 located in the top platform of the lifting structure has a flange, which is used to control the maximum stretching amount of the seat board 56 . It can be pulled out when the user needs to sit and rest, and retracted when not in use. Simultaneously in order to provide supporting force for the seat board 56 that is in stretching state, the front end of seat board 56 is detachably connected with two connecting ropes 57, and the other end of connecting rope 57 links to each other with armrest structure, is seat board thus 56 provides pulling force after pulling out the lifting structure top platform.
U型车底盘由两条并排的底杆1中间通过两条中间杆40固定而成,中间杆40用于加强底座的抗弯强度。U型车底盘的开口朝向用户站立方向。如图3所示,底杆1位于步态康复训练装置前进方向的一端底部安装前轮8,步进电机6安装于电机架7上,且其动力输出轴与前轮8相连。电机架7和底杆1之间设置有弹簧减震器55。弹簧减震器55与外部之间安装垫片,用于减弱机械装置之间的磨损。底杆1的另一端底部安装后轮3,后轮3采用万向轮。The U-shaped vehicle chassis is formed by fixing the middle of two side-by-side bottom bars 1 through two middle bars 40, and the middle bars 40 are used to strengthen the bending strength of the base. The opening of the U-shaped chassis faces the user standing direction. As shown in Figure 3, bottom bar 1 is positioned at the end bottom of gait rehabilitation training device advancing direction and front-wheel 8 is installed, and stepper motor 6 is installed on the motor frame 7, and its power output shaft links to each other with front-wheel 8. A spring shock absorber 55 is arranged between the motor frame 7 and the bottom bar 1 . A gasket is installed between the spring shock absorber 55 and the outside, which is used to weaken the wear between the mechanical devices. The other end bottom of bottom bar 1 is equipped with trailing wheel 3, and trailing wheel 3 adopts universal wheel.
升降结构底部搭载于U型车底盘上,U型车底盘下方设有两个步进电机6和四个车轮结构,车轮分为两个前轮8和两个后轮3,步进电机6用于驱动两个前轮8从而带动整个步态康复训练装置。The bottom of the lifting structure is mounted on the U-shaped car chassis. There are two stepping motors 6 and four wheel structures under the U-shaped car chassis. The wheels are divided into two front wheels 8 and two rear wheels 3. The stepping motors 6 are used To drive the two front wheels 8 to drive the whole gait rehabilitation training device.
可旋转扶手结构通过外部设定直线电机的最大伸长值来限定扶手结构的旋转角度最大值。一般来说,第一直线电机38的动力输出轴伸缩行程需要满足:动力输出轴完全收缩时,扶手底盘15上的圆柱型抓手17在处于坐姿的用户的双手抓扶范围内。The rotatable armrest structure limits the maximum rotation angle of the armrest structure by setting the maximum elongation value of the linear motor externally. Generally speaking, the stretching stroke of the power output shaft of the first linear motor 38 needs to satisfy: when the power output shaft is fully contracted, the cylindrical grip 17 on the armrest chassis 15 is within the grasping range of both hands of the user in a sitting position.
同时,为了装置能够实现自动化控制,可以另外设置单片机作为控制单元,并与步态康复训练装置中的各电机相连。为了检测用户的行进速度,还需要在用户身上佩戴一个与控制单元通信连接的惯性测量装置,用于测量用户的行进速度。连接方式可以采用蓝牙、红外等方式。At the same time, in order to realize automatic control of the device, a single-chip microcomputer can be additionally set as a control unit, which is connected with each motor in the gait rehabilitation training device. In order to detect the traveling speed of the user, it is also necessary to wear an inertial measurement device communicatively connected with the control unit on the user for measuring the traveling speed of the user. The connection method can be bluetooth, infrared and so on.
基于上述步态康复训练装置,用户的步态康复训练方法步骤如下:Based on the above-mentioned gait rehabilitation training device, the steps of the user's gait rehabilitation training method are as follows:
首先,将惯性测量装置佩戴于用户下肢,并与控制单元建立数据交互连接;使步态康复训练装置移动至用户双手可抓扶的范围内,并处于如图5所示状态。使下肢需要锻炼的用户先保持坐姿,第一直线电机38处于收缩最短状态,使用户双手握住两个圆柱型抓手17后,控制第一直线电机38运行,推动整个可旋转式扶手结构绕中心轴25向上旋转,辅助用户站立,直至如图6所示。达到站立高度时,关闭第一直线电机38;然后,通过控制第二直线电机34,使其推动链式升降结构,以调整可旋转式扶手结构高度适应用户身高。启动步进电机6,控制单元接收从用户身上穿戴的惯性测量单元获得的实时行走速度数据后,控制步进电机6的转速,实现步态跟随。使用状态示意图如图4所示,用户前进时,可旋转式扶手结构继续给用户提供支撑力。First, wear the inertial measurement device on the user's lower limbs, and establish a data interaction connection with the control unit; move the gait rehabilitation training device to the range that the user can grasp with both hands, and be in the state shown in Figure 5. Make the user who needs to exercise the lower limbs first maintain a sitting posture, and the first linear motor 38 is in the shortest state of contraction. After the user holds the two cylindrical grippers 17 with both hands, control the operation of the first linear motor 38 to push the entire rotatable handrail The structure rotates upwards about the central axis 25, assisting the user in standing until it is shown in FIG. 6 . When the standing height is reached, the first linear motor 38 is turned off; then, by controlling the second linear motor 34, it pushes the chain lifting structure to adjust the height of the rotatable handrail structure to adapt to the height of the user. The stepper motor 6 is started, and the control unit controls the speed of the stepper motor 6 after receiving the real-time walking speed data obtained from the inertial measurement unit worn by the user to realize gait following. The schematic diagram of the use state is shown in Figure 4. When the user moves forward, the rotatable armrest structure continues to provide support for the user.
以上所述的实施例只是本实用新型的一种较佳的方案,然其并非用以限制本实用新型。有关技术领域的普通技术人员,在不脱离本实用新型的精神和范围的情况下,还可以做出各种变化和变型。因此凡采取等同替换或等效变换的方式所获得的技术方案,均落在本实用新型的保护范围内。The above-mentioned embodiment is only a preferred solution of the present utility model, but it is not intended to limit the present utility model. Various changes and modifications can be made by those skilled in the art without departing from the spirit and scope of the present invention. Therefore, all technical solutions obtained by means of equivalent replacement or equivalent transformation fall within the protection scope of the present utility model.
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Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107041823A (en) * | 2017-03-29 | 2017-08-15 | 浙江大学 | Gait rehabilitation trainer and its method |
| CN109568091A (en) * | 2018-11-23 | 2019-04-05 | 刘浩翔 | A kind of new and improved walk helper |
| CN109966123A (en) * | 2019-04-02 | 2019-07-05 | 桂林医学院附属医院 | A kind of medical auxiliary walking balancing device |
| CN112914961A (en) * | 2021-03-03 | 2021-06-08 | 河南城建学院 | Accompanying device based on intelligent control |
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Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN107041823A (en) * | 2017-03-29 | 2017-08-15 | 浙江大学 | Gait rehabilitation trainer and its method |
| CN109568091A (en) * | 2018-11-23 | 2019-04-05 | 刘浩翔 | A kind of new and improved walk helper |
| CN109966123A (en) * | 2019-04-02 | 2019-07-05 | 桂林医学院附属医院 | A kind of medical auxiliary walking balancing device |
| CN112914961A (en) * | 2021-03-03 | 2021-06-08 | 河南城建学院 | Accompanying device based on intelligent control |
| CN112914961B (en) * | 2021-03-03 | 2022-12-27 | 河南城建学院 | Accompanying device based on intelligent control |
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