小鼠步态分析技术服务全新上线,解锁疾病研究维度!-商家活动-资讯-生物在线

小鼠步态分析技术服务全新上线,解锁疾病研究维度!

作者:深圳灵赋拓普生物科技有限公司 2025-07-03T00:00 (访问量:499)

<section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147345"> <section> <section> <section> <section> <section></section> <section><strong style="color: #333333;" data-brushtype="text">从足迹到数据,科技重塑科研维度</strong></section> <section> <section data-width="100%"></section> </section> </section> </section> <section style="color: #c6c6c6;"><span data-brushtype="text">灵赋服务 | 小鼠步态分析</span></section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147336"> <section> <section> <section></section> </section> <section> <section> <section style="color: #333333;" data-autoskip="1"> <p>&nbsp; &nbsp; 大小鼠的每一步行走都蕴含疾病线索!&nbsp;现代步态分析系统基于传统足迹分析,融合足印图像增强技术与高速摄像系统,可捕捉超&nbsp;<strong><span style="color: #ff0000;">60 项</span></strong>核心指标:<strong>步行周期、支撑距离、步频、摆动时长</strong>等。分析软件自动识别步态参数,实现从 &ldquo;人工观察&rdquo; 到 &ldquo;量化分析&rdquo; 的升级,高效呈现动物步态变化。系统集成数据采集、监测、分析、统计、绘图全流程,大幅提升实验自动化程度,助力科研人员聚焦核心研究。</p> <section><img src="https://img.medsci.cn/4952b33c6a09d2df9b8e38bee95069c5cb243c806dc502f509df9a5dde21250b.jpg" /></section> </section> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147345"> <section> <section> <section> <section> <section> <section style="color: #333333;"><strong data-brushtype="text">神经系统疾病模型应用</strong></section> <section style="color: #333333;"><strong data-brushtype="text">步态数据揭示病理特征</strong></section> <section data-width="100%"></section> </section> </section> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147335"> <section> <section> <section> <section> <section> <section style="color: #333333;"> <p>(一)帕金森氏病:捕捉运动功能异常的 &ldquo;动态标尺&rdquo;</p> </section> </section> </section> </section> </section> <section> <section style="color: #333333;" data-autoskip="1"> <p><span style="color: rgba(0, 0, 0, 0.85);">在</span><strong><span style="color: rgba(0, 0, 0, 0.85);">&nbsp;MPTP 诱导的小鼠帕金森模型</span></strong><span style="color: rgba(0, 0, 0, 0.85);">研究中:</span></p> <ul class="list-paddingleft-1"> <li> <p><strong style="color: #000000 !important;">实验流程</strong>:小鼠经<span style="color: #ff0000;"><strong>&nbsp;3 天</strong></span>适应性训练后,自由穿过检测通道,仪器通过光源脚印折射技术处理视频足印,评估自然行走状态。</p> </li> <li> <p><strong style="color: #000000 !important;">关键发现</strong>:与正常小鼠相比,模型组步态紊乱、步幅不一,三点支撑情况增加;通过特定距离时间延长<strong><span style="color: #ff0000;">&nbsp;23%</span></strong>,平均速度降低<span style="color: #ff0000;"><strong>&nbsp;18%</strong></span>,精准反映<strong style="color: #000000 !important;">运动协调障碍</strong>与<strong style="color: #000000 !important;">平衡功能缺陷</strong>。</p> </li> </ul> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147335"> <section> <section> <section> <section> <section> <section style="color: #333333;"> <p>(二)脑缺血与阿尔茨海默病:评估神经功能的 &ldquo;时间轴&rdquo;</p> </section> </section> </section> </section> </section> <section> <section style="color: #333333;" data-autoskip="1"> <ul class="list-paddingleft-1"> <li> <p><strong style="color: #000000 !important;">脑缺血模型</strong>:发病初期出现行走不稳、步幅减小、左右肢协调性下降,随治疗干预步态可逐渐恢复,为神经功能康复提供量化依据;</p> </li> <li> <p><strong style="color: #000000 !important;">阿尔茨海默病模型</strong>:早期检测到步频改变、身体稳定性下降、转弯灵活性减弱,助力疾病<strong style="color: #000000 !important;">早期运动功能异常</strong>的发现与干预研究。</p> </li> </ul> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147344"> <section> <section> <section> <section> <section> <section style="color: #ffffff;"><strong data-brushtype="text">运动系统疾病模型应用</strong></section> <section style="color: #ffffff;"><strong data-brushtype="text">量化功能障碍与疗</strong></section> </section> </section> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147340"> <section> <section> <section> <section style="color: #333333;"><strong data-brushtype="text">(一)关节炎:用步态参数 &ldquo;丈量&rdquo; 疼痛与关节功能</strong></section> </section> <section data-width="100%"></section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.85) !important;">&nbsp; &nbsp;&nbsp;<strong>关节炎小鼠</strong>因关节疼痛出现特征性步态:</section> <ul class="list-paddingleft-1"> <li> <p>支撑相时间延长(减轻关节负荷),摆动相时间缩短(步幅变小);</p> </li> <li> <p>身体重心偏移,避免疼痛关节过度受力。<br />通过量化参数变化,可精准评估药物对关节功能的改善效果。</p> <p>&nbsp;</p> </li> </ul> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147340"> <section> <section> <section> <section style="color: #333333;"><strong data-brushtype="text">(二)脊髓损伤:追踪康复进程的 &ldquo;数字记录仪&rdquo;</strong></section> </section> <section data-width="100%"></section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.85) !important;">&nbsp; &nbsp; 在<strong>脊髓损伤模型</strong>中:</section> <ul class="list-paddingleft-1"> <li> <p>急性期后肢瘫痪无法行走;</p> </li> <li> <p>康复期通过步态分析监测步幅、步频、肢体协调性等参数,评估不同康复方案的有效性,为治疗策略优化提供数据支撑。</p> </li> </ul> <p style="color: rgba(0, 0, 0, 0.9);"><img src="https://img.medsci.cn/499d3bc379ebadb3d887311767122035ce94120986882af0f22c121728df7f52.jpg" /></p> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147342"> <section> <section> <section> <p style="color: #333333;"><strong data-brushtype="text">灵赋技术服务优势</strong></p> <p style="color: #333333;"><strong data-brushtype="text">科研级精准与全场景覆盖</strong></p> </section> <section></section> </section> </section> </section> <p style="color: rgba(0, 0, 0, 0.9);"><img src="https://img.medsci.cn/2a0f0e6348578ca7e1097b0ba1f1030330a38102c899864a75a190d365cc20af.jpg" /></p> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="159764"> <section> <section> <section> <section> <section> <section> <section></section> <section></section> <section></section> <section></section> <section></section> <section></section> </section> <section> <section style="color: #333333;"><strong data-brushtype="text">限时科研优惠支持</strong></section> </section> </section> </section> <section> <section></section> </section> </section> <section> <section> <section><img src="https://img.medsci.cn/b7e475348af8e977995e03c6e03f7ffce9b7a6ea02dbcfd7d5f6d9d3856a33f5.jpg" /></section> </section> <section> <section> <section style="color: #ffffff;"><span style="color: #000000;"><strong data-brushtype="text">活动日期:7月1日-30日</strong></span></section> </section> </section> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147334"> <section> <section> <section> <section> <section></section> </section> </section> </section> <section> <section style="color: #333333;" data-autoskip="1"> <p>✅ 前&nbsp;<span style="color: #ff0000;"><strong>10 名</strong></span>签约客户享技术服务<span style="color: #ff0000;"><strong>&nbsp;85 折</strong></span>优惠;<br />✅ 专业技术团队<span style="color: #ff0000;"><strong>&nbsp;1 对 1&nbsp;</strong></span>对接,提供实验设计优化、原始数据可视化(压力热图、步态轨迹图)及论文图表制作支持;<br />✅ 签约即享后续数据解读咨询服务,为科研项目持续赋能。</p> </section> </section> <section> <section> <section> <section></section> </section> </section> </section> </section> </section> <section style="color: rgba(0, 0, 0, 0.9);" data-tools="135编辑器" data-id="147333"> <section> <section data-width="50%"> <section> <section style="color: #333333;"><strong data-brushtype="text">🔍 关于灵赋拓普的技术服务</strong></section> </section> </section> <section> <section> <section style="color: #333333;" data-autoskip="1"> <p>&nbsp; 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