Walsh Joel A, McAndrew Darryl J, Henness Douglas J, Shemmell Jonathan, Cuicuri Dominic, Stapley Paul J
Neural Control of Movement Laboratory, School of Medicine, Faculty of Science, Medicine and Health, University of Wollongong, Wollongong, NSW, Australia.
Electrical Workshop, Faculty of Engineering and Information Sciences, University of Wollongong, Wollongong, NSW, Australia.
Front Physiol. 2021 Nov 29;12:756805. doi: 10.3389/fphys.2021.756805. eCollection 2021.
Eccentric (ECC) cycling is used in rehabilitation and sports conditioning settings. We present the construction and mode of operation of a custom-built semi-recumbent ECC cycle designed to limit the production of lower limb muscle activity to the phase of the pedal cycle known to produce ECC contractions. A commercially available semi-recumbent frame and seat (Monarch, 837E Semi-recumbent Bike, Sweden) were used to assemble the ergometer. An electrical drive train system was constructed using individual direct drive servo motors. To avoid active muscle activation occurring during the non-ECC pedaling phase of cycling, a "trip" mechanism was integrated into the drivetrain system using a servo-driven regenerative braking mechanism based on the monitoring of the voltage produced over and above a predetermined threshold produced by the motors. The servo drive internal (DC bus) voltage is recorded and internally monitored during opposing (OPP) and non-opposing (N-OPP) phases of the pedal cycle. To demonstrate that the cycle functions as desired and stops or "trips" when it is supposed to, we present average (of 5 trials) muscle activation patterns of the principal lower limb muscles for regular ECC pedal cycles in comparison with one pedal cycle during which the muscles activated outside the desired phase of the cycle for a sample participant. This semi-recumbent ECC cycle ergometer has the capacity to limit the occurrence of muscle contraction only to the ECC phase of cycling. It can be used to target that mode of muscle contraction more precisely in rehabilitation or training studies.
离心(ECC)骑行被用于康复和运动训练场景。我们展示了一种定制的半卧位ECC自行车的构造和操作模式,该自行车旨在将下肢肌肉活动的产生限制在踏板周期中已知会产生ECC收缩的阶段。使用市售的半卧位车架和座椅(瑞典Monarch 837E半卧位自行车)来组装测力计。使用单独的直接驱动伺服电机构建了一个电动传动系统。为了避免在骑行的非ECC踏板阶段出现主动肌肉激活,基于对电机产生的超过预定阈值的电压的监测,使用伺服驱动的再生制动机制将一个“触发”机构集成到传动系统中。在踏板周期的反向(OPP)和非反向(N - OPP)阶段记录并内部监测伺服驱动器内部(直流母线)电压。为了证明该自行车按预期运行并在应该停止或“触发”时停止,我们展示了样本参与者在常规ECC踏板周期中主要下肢肌肉的平均(5次试验)肌肉激活模式,并与在一个踏板周期中肌肉在期望的周期阶段之外被激活的情况进行比较。这种半卧位ECC自行车测力计有能力将肌肉收缩的发生仅限制在骑行的ECC阶段。它可用于在康复或训练研究中更精确地针对那种肌肉收缩模式。