小鼠步態分析技術服務全新上線,解鎖疾病研究維度!
作者:深圳靈賦拓普生物科技有限公司
2025-07-03T00:00
(訪問量:21427)
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<section><strong style="color: #333333;" data-brushtype="text">從足跡到數據,科技重塑科研維度</strong></section>
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<section style="color: #c6c6c6;"><span data-brushtype="text">靈賦服務 | 小鼠步態分析</span></section>
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<p> 大小鼠的每一步行走都蘊含疾病線索! 現代步態分析系統基于傳統足跡分析,融合足印圖像增強技術與高速攝像系統,可捕捉超 <strong><span style="color: #ff0000;">60 項</span></strong>核心指標:<strong>步行周期、支撐距離、步頻、擺動時長</strong>等。分析軟件自動識別步態參數,實現從 “人工觀察” 到 “量化分析” 的升級,高效呈現動物步態變化。系統集成數據采集、監測、分析、統計、繪圖全流程,大幅提升實驗自動化程度,助力科研人員聚焦核心研究。</p>
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<section style="color: #333333;"><strong data-brushtype="text">神經系統疾病模型應用</strong></section>
<section style="color: #333333;"><strong data-brushtype="text">步態數據揭示病理特征</strong></section>
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<p>(一)帕金森氏病:捕捉運動功能異常的 “動態標尺”</p>
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<p><span style="color: rgba(0, 0, 0, 0.85);">在</span><strong><span style="color: rgba(0, 0, 0, 0.85);"> MPTP 誘導的小鼠帕金森模型</span></strong><span style="color: rgba(0, 0, 0, 0.85);">研究中:</span></p>
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<p><strong style="color: #000000 !important;">實驗流程</strong>:小鼠經<span style="color: #ff0000;"><strong> 3 天</strong></span>適應性訓練后,自由穿過檢測通道,儀器通過光源腳印折射技術處理視頻足印,評估自然行走狀態。</p>
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<p><strong style="color: #000000 !important;">關鍵發現</strong>:與正常小鼠相比,模型組步態紊亂、步幅不一,三點支撐情況增加;通過特定距離時間延長<strong><span style="color: #ff0000;"> 23%</span></strong>,平均速度降低<span style="color: #ff0000;"><strong> 18%</strong></span>,精準反映<strong style="color: #000000 !important;">運動協調障礙</strong>與<strong style="color: #000000 !important;">平衡功能缺陷</strong>。</p>
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<p>(二)腦缺血與阿爾茨海默?。涸u估神經功能的 “時間軸”</p>
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<p><strong style="color: #000000 !important;">腦缺血模型</strong>:發病初期出現行走不穩、步幅減小、左右肢協調性下降,隨治療干預步態可逐漸恢復,為神經功能康復提供量化依據;</p>
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<p><strong style="color: #000000 !important;">阿爾茨海默病模型</strong>:早期檢測到步頻改變、身體穩定性下降、轉彎靈活性減弱,助力疾病<strong style="color: #000000 !important;">早期運動功能異常</strong>的發現與干預研究。</p>
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<section style="color: #ffffff;"><strong data-brushtype="text">運動系統疾病模型應用</strong></section>
<section style="color: #ffffff;"><strong data-brushtype="text">量化功能障礙與療</strong></section>
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<section style="color: #333333;"><strong data-brushtype="text">(一)關節炎:用步態參數 “丈量” 疼痛與關節功能</strong></section>
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<section style="color: rgba(0, 0, 0, 0.85) !important;"> <strong>關節炎小鼠</strong>因關節疼痛出現特征性步態:</section>
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<p>支撐相時間延長(減輕關節負荷),擺動相時間縮短(步幅變小);</p>
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<p>身體重心偏移,避免疼痛關節過度受力。<br />通過量化參數變化,可精準評估藥物對關節功能的改善效果。</p>
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<section style="color: #333333;"><strong data-brushtype="text">(二)脊髓損傷:追蹤康復進程的 “數字記錄儀”</strong></section>
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<section style="color: rgba(0, 0, 0, 0.85) !important;"> 在<strong>脊髓損傷模型</strong>中:</section>
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<p>急性期后肢癱瘓無法行走;</p>
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<p>康復期通過步態分析監測步幅、步頻、肢體協調性等參數,評估不同康復方案的有效性,為治療策略優化提供數據支撐。</p>
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<p style="color: rgba(0, 0, 0, 0.9);"><img src="https://img.medsci.cn/499d3bc379ebadb3d887311767122035ce94120986882af0f22c121728df7f52.jpg" /></p>
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<p style="color: #333333;"><strong data-brushtype="text">科研級精準與全場景覆蓋</strong></p>
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<p>? 前 <span style="color: #ff0000;"><strong>10 名</strong></span>簽約客戶享技術服務<span style="color: #ff0000;"><strong> 85 折</strong></span>優惠;<br />? 專業技術團隊<span style="color: #ff0000;"><strong> 1 對 1 </strong></span>對接,提供實驗設計優化、原始數據可視化(壓力熱圖、步態軌跡圖)及論文圖表制作支持;<br />? 簽約即享后續數據解讀咨詢服務,為科研項目持續賦能。</p>
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<p> 我們專注為科研團隊提供小鼠步態分析檢測服務,依托先進的步態分析系統與標準化實驗流程,已為高校、科研院所及藥企等機構提供數百次檢測服務,助力神經科學、運動醫學等領域研究。如需了解更多技術細節或預約檢測,可通過以下方式咨詢:</p>
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