Kunju Nissan, Ojha Rajdeep, Devasahayam Suresh R
Department of Bioengineering, Christian Medical College , Vellore , India and.
J Med Eng Technol. 2013 Oct;37(7):424-8. doi: 10.3109/03091902.2013.825017. Epub 2013 Aug 22.
Paraplegic patients have to effect transfer from one seat to another by using their upper limbs. In this process the hands bear almost the entire weight of the body in at least some phases of the transfer. It is desirable to train patients, especially those who are elderly and otherwise weak, to distribute their weight so as to avoid large forces being sustained on any one hand for an extended period. It is also desirable to evaluate the effectiveness of assistive devices like lower limb FES in sharing the load on the hand. This study presents a simple and versatile method of measuring palmar hand force during transfers by paraplegic patients. It is important that this force sensor should not interfere with the grasping and stabilizing properties of the hands and should permit normal transferring. The force sensor comprises an air-filled pouch or pillow that can be placed on any surface. This pneumatic sensor feels like upholstery padding on the surface on which it is placed. The sensor integrates the total pressure applied to the surface of the pouch, thereby obtaining the total force exerted by the palm/hand. The fabrication of the sensor is described, as well as the associated measurement circuit. The static calibration shows that the sensor is linear up to 350 N and the dynamic calibration shows that it has a bandwidth of 13 Hz. The sensor was fabricated using an inflated inelastic airbag attached to a pressure transducer. An automatic offset correction circuit in the preamplifier module ensures that any offset due to initial pressure or sensor drift is removed and the output is zero under no load condition. The key to this sensor arrangement is the ease of fitting it into the intended location without disturbing the existing arrangement for the subject's activities of daily living (ADL).
截瘫患者必须用上肢实现从一个座位转移到另一个座位。在此过程中,在转移的至少某些阶段,手部要承受几乎整个身体的重量。对于患者,尤其是老年体弱患者,训练他们分散体重很有必要,这样可以避免一只手长时间承受过大的力。评估诸如下肢功能性电刺激等辅助设备在分担手部负荷方面的效果也很有必要。本研究提出了一种简单且通用的方法,用于测量截瘫患者转移过程中的手掌力。重要的是,这种力传感器不应干扰手部的抓握和稳定性能,并且应允许正常转移。该力传感器包括一个可放置在任何表面的充气袋或枕头。这种气动传感器在其放置的表面上感觉就像室内装潢衬垫。该传感器对施加在袋子表面的总压力进行积分,从而获得手掌/手部施加的总力。文中描述了传感器的制作以及相关的测量电路。静态校准表明,该传感器在高达350 N时呈线性,动态校准表明其带宽为13 Hz。该传感器是使用一个连接到压力传感器的充气无弹性气囊制作而成。前置放大器模块中的自动失调校正电路可确保消除由于初始压力或传感器漂移引起的任何失调,并且在无负载条件下输出为零。这种传感器布置的关键在于易于将其安装到预期位置,而不会干扰受试者日常生活活动(ADL)的现有布置。