首页> 外文会议>World Multi-Conference on Systemics, Cybernetics and Informatics >Hypothetical Explanation for the Role of Proprioception in the Damping of Infantile Nystagmus by Tenotomy Surgery: The Small-Signal Gain Hypothesis
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Hypothetical Explanation for the Role of Proprioception in the Damping of Infantile Nystagmus by Tenotomy Surgery: The Small-Signal Gain Hypothesis

机译:Braverioception在Tenotomy手术中对婴儿眼球菌抑制作用的假设解释:小信号增益假设

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We report the results of our study of the effects of four-muscle tenotomy on saccadic characteristics in infantile nystagmus syndrome (INS) and acquired pendular nystagmus (APN). Eye movements of ten subjects with INS and one with APN were recorded using infrared reflection, magnetic search coil, or highspeed digital video. The eXpanded Nystagmus Acuity Function (NAFX) quantified tenotomy-induced foveation changes in the INS. Saccadic characteristics and peak-to-peak nystagmus amplitudes were measured. Novel statistical tests were performed on the saccadic data. Six out of the 10 INS subjects showed no changes in saccadic duration, peak velocity, acceleration, or trajectory. In the other 4, the differences were less than in peak-to-peak amplitudes (from 14.6% to 39.5%) and NAFX (from 22.2% to 162.4%). The APN subject also showed no changes despite a 50% decrease in peak-to-peak amplitude and a 34% increase in NAFX. The "small-signal" changes (peak-to-peak nystagmus amplitude and NAFX) were found to far exceed any "large-signal" changes (saccadic). Tenotomy successfully reduced INS and APN, enabling higher visual acuity without adversely affecting saccadic characteristics. These findings support the peripheral, small-signal gain reduction (via proprioceptive tension control) hypothesis. Current linear plant models, limited to normal steady-state muscle tension levels, cannot explain the effects of the tenotomy.
机译:我们报告了我们对四肌腱术的影响的结果对婴儿眼球菌综合征(INS)中的扫视特性和获得的单囊眼球菌(APN)进行了研究。使用红外反射,磁性搜索线圈或高速数字视频记录具有INS和APN的INS的10个受试者的眼球运动。扩展的眼球菌敏感功能(NAFX)量化了entoMy诱导的植物的变化。测量扫视特性和峰峰峰峰峰肿瘤幅度。在扫视数据上进行新的统计测试。 10个INS受试者中的六个没有变化扫视持续时间,峰值速度,加速度或轨迹。在另一种4中,差异小于峰 - 峰值振积(从14.6%至39.5%)和NaFX(从22.2%至162.4%)。尽管峰值到峰值幅度降低50%,但APN主题也没有变化,并且NAFX增加了34%。发现“小信号”变化(峰值到峰值眼震颤和NAFX)远远超过任何“大信号”变化(扫视)。协调术成功减少了INS和APN,实现了更高的视力,而不会对扫视特征产生不利影响。这些发现支持外围,小信号增益(通过预张力张力控制)假设。目前的线性植物型号限于正常稳态肌张力水平,无法解释协调术的影响。

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