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From this point on, every generated target vector is used as the base vector of the following segment, in a recursive process, up to the extremity segment of the considered kinematic chain.
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The purpose of this study was to investigate how restricting active range of motion (AROM) at various upper extremity segments influenced hand function in younger and older populations.
Because restricted AROM is a consequence of a variety of diseases and conditions, it is important to know how restricted AROM at multiple upper extremity segments affects hand function.
Nevertheless the major accommodation factor of amputated extremity segments is a careful fulfilment of vascular anastomosis.
The lower extremity segments were modeled as a frustra of right cones while the pelvis was modeled as a cylinder.
Surgical history was highlighted by the number of lower extremity segments (upper and lower leg on each lower extremity) that had undergone rodding surgery.
So we consider it justified use HBO in patients with critical ischemia term of abjuncted extremity segments and prolonged ischemia of complex flaps with their autotransplantation.
Proceeding from the peculiarities of the therapeutic effect of HBO (Tabrah FL et al, 1994), with the help of HBO we have optimised the treatment of patients (after the replantation of extremity segments and autotransplantation of tissue complexes) who where operated using microsurgical equipment.
These and 8 virtual markers (right and left anterior superior iliac spines, medial epicondyle, tibial tuberosity, fibular head, medial malleolus, second metatarsal, and heel) were used to define anatomical coordinate systems in each of the lower extremity segments (Landry et al. 2007).
In the different acceleration sections delimited by transition steps, different acceleration strategies, especially changes in the contributions of lower-extremity segments (i.e. thigh and shank for the initial section, thigh, shank, and foot for the middle section, and shank and foot for the final section), are employed to increase running speed.
In each acceleration section, different contributions of lower-extremity segments to increase in the CG forward velocity thigh and shank for the initial section, thigh, shank, and foot for the middle section, shank and foot for the final section were verified, establishing different acceleration strategies during the entire acceleration phase.
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CEO of Professional Science Editing for Scientists @ prosciediting.com