From bf037fbce390f8d6ec6f6341bc02a8974354dd3a Mon Sep 17 00:00:00 2001 From: OpenWiki Bot Date: Mon, 27 Jul 2026 12:40:38 +0800 Subject: [PATCH] =?UTF-8?q?fix(sources/literature):=20=E4=BF=AE=20SeaFile?= =?UTF-8?q?=20URL=20hostname=20(fb.biikingdom.top=20->=20fb.biokingdom.top?= =?UTF-8?q?)=205=20=E4=B8=AA=20URL=20=E9=94=99?= MIME-Version: 1.0 Content-Type: text/plain; charset=UTF-8 Content-Transfer-Encoding: 8bit --- sources/literature-raji-2026-deepread.md | 6 +++--- sources/literature-tasevska-2025-deepread.md | 4 ++-- 2 files changed, 5 insertions(+), 5 deletions(-) diff --git a/sources/literature-raji-2026-deepread.md b/sources/literature-raji-2026-deepread.md index 011f65a..8b5306c 100644 --- a/sources/literature-raji-2026-deepread.md +++ b/sources/literature-raji-2026-deepread.md @@ -187,7 +187,7 @@ ### 图 1 (p3, paper Fig 3G-J): hMOs 全器官 TH+ 免疫荧光 -![Raji 2026 Fig 3: hMOs 12 周 TH+ 免疫荧光, bioreactor vs orbital shaker](https://fb.biikingdom.top/f/5f02248b377548288166/?raw=1) +![Raji 2026 Fig 3: hMOs 12 周 TH+ 免疫荧光, bioreactor vs orbital shaker](https://fb.biokingdom.top/f/5f02248b377548288166/?raw=1) *论文 p3 Fig 3G-J, hMOs 完整 3D 球状结构 + TH+ DA 神经元 (绿色), 12 周成熟度, bioreactor 培养 vs orbital shaker 静态培养对比, bioreactor 显著减少凋亡 (TUNEL) + 提升 TH+ 神经元密度* @@ -195,7 +195,7 @@ ### 图 2 (p5, paper Fig 5F-H): 3Brain HD-MEA 神经电生理记录 -![Raji 2026 Fig 5: scRNA-seq + 3Brain HD-MEA 24h spike train](https://fb.biikingdom.top/f/1e04ce457f4547ae8bd8/?raw=1) +![Raji 2026 Fig 5: scRNA-seq + 3Brain HD-MEA 24h spike train](https://fb.biokingdom.top/f/1e04ce457f4547ae8bd8/?raw=1) *论文 p5 Fig 5F-H, scRNA-seq UMAP 跟 pseudotime 分析, DA 神经元分化轨迹 (WntTriP-Bio 增强 SOX6+ / KCNJ6+ SNpc-like cluster), 3Brain HD-MEA 24h 神经电生理记录 bioreactor hMOs 稳定重复 spike, 2D 培养对照无法记录* @@ -203,7 +203,7 @@ ### 图 3 (p7, paper Fig 6): PD 模型 — α-synuclein PFF 处理后 DA 神经元退行性 -![Raji 2026 Fig 6: PD 模型 α-synuclein PFF 处理后 DA 神经元退行](https://fb.biikingdom.top/f/23bb6768611f43ae8768/?raw=1) +![Raji 2026 Fig 6: PD 模型 α-synuclein PFF 处理后 DA 神经元退行](https://fb.biokingdom.top/f/23bb6768611f43ae8768/?raw=1) *论文 p7 Fig 6, 长期培养 (DIV 100) hMOs 形态 (Standard-OS vs WntTriP-OS 12 周), α-synuclein PFF 处理 7 天后 hMOs DA 神经元数量减 35%, TH 表达降 40%, 复现 PD 病理表型* diff --git a/sources/literature-tasevska-2025-deepread.md b/sources/literature-tasevska-2025-deepread.md index 415b223..e17390b 100644 --- a/sources/literature-tasevska-2025-deepread.md +++ b/sources/literature-tasevska-2025-deepread.md @@ -135,7 +135,7 @@ ### 图 2 (p9, paper Fig 5): 释放曲线图 — 3D-SSE vs 传统压片 12h 释放度 -![Tasevska 2025 Fig 5: 释放曲线 (3D-SSE vs 传统压片 12h 释放度)](https://fb.biikingdom.top/f/b3dedb583f2c46ad9359/?raw=1) +![Tasevska 2025 Fig 5: 释放曲线 (3D-SSE vs 传统压片 12h 释放度)](https://fb.biokingdom.top/f/b3dedb583f2c46ad9359/?raw=1) *论文 p9 Fig 5 释放曲线, 3D-SSE (蓝) 12h 接近 85% 接近完全释放, 传统压片 (红) 12h 仅 58%, 零级动力学 R²=0.94 接近"匀速释放", 虚线是 Higuchi 模型预测* @@ -143,7 +143,7 @@ ### 图 3 (p17, paper Fig 8): 长期稳定性 6 个月数据 (3 种温度 25/30/40°C) -![Tasevska 2025 Fig 8: 6 个月加速稳定性 (3 温度 25/30/40°C)](https://fb.biikingdom.top/f/74b30b1cb39b4a90ac11/?raw=1) +![Tasevska 2025 Fig 8: 6 个月加速稳定性 (3 温度 25/30/40°C)](https://fb.biokingdom.top/f/74b30b1cb39b4a90ac11/?raw=1) *论文 p17 Fig 8 6 个月加速稳定性数据, 25°C 含量 >98%, 30°C >97%, 40°C >95%, 3 种温度 3 种批次, 释放曲线 6 月后无变化*