Vim-flox Mouse
一般名
Vim-flox
製品ID
S-CKO-06613
背景情報
C57BL/6JCya
系統ID
CKOCMP-22352-Vim-B6J-VA
状況
このマウス系統を論文で使用する場合は、「Vim-flox Mouse(カタログ番号S-CKO-06613)はサイアジェンから購入しました。」と引用してください。
製品タイプ
年齢
遺伝子型
性別
数量
標準的な配送方法では、少なくとも3匹のヘテロ接合体キャリアを保証しています。ホモ接合体キャリアや指定された性別の個体の繁殖サービスも利用可能です。
基本情報
系統名
Vim-flox
系統ID
CKOCMP-22352-Vim-B6J-VA
遺伝子名
製品ID
S-CKO-06613
遺伝子別名
--
遺伝子別名
C57BL/6JCya
NCBI ID
修正
Conditional knockout
染色体
Chr 2
表現型
アプリケーション
--
さらに
系統詳細
EnsemblトランスクリプトID
ENSMUST00000028062
NCBIトランスクリプトID
NM_011701
ターゲット領域
Exon 3~7
有効領域の大きさ
~4.0 kb
遺伝子研究の概要
Vim, short for ventralis intermedius, is a nucleus of the thalamus. It serves as a crucial surgical target for tremor treatment [1,2]. The Vim neurons respond to passive joint movements and are synchronous with peripheral tremor, and there is a well-defined limit between the motor and sensory thalamus where Vim is located [1,2].
The location of the Vim nucleus is difficult to identify with conventional imaging methods. Surgical procedures often rely on indirect calculations correlated with clinical and intraoperative neurophysiological findings. Stereotactic coordinates for the Vim nucleus are typically based on references to the mid-commissural line and third ventricle, but these vary between patients [1,2]. New techniques like tractography for direct location are being explored, though it has limitations and requires standardization to precisely locate the Vim nucleus for tremor treatment [1,2]. The Vim line technique, created using a mathematical model, can also be used to identify the Vim location, and its effectiveness was demonstrated by decreased Unified Parkinson's Disease Rating Scale (UPDRS) scores in patients after Vim thalamotomy [3,4].
Deep brain stimulation (DBS) of the Vim is an effective treatment for essential tremor, and studies on Vim-DBS programming sessions show its continuous efficacy in tremor suppression over time [5]. Also, Vim-PSA double-target DBS surgery has specific technical issues related to target location, burr hole drilling, pneumocephalus reduction, and intraoperative electrophysiological verification [6].
In conclusion, Vim is of great significance in tremor treatment. Research on its location-determination methods and treatment-related techniques, such as those involving DBS, helps in better understanding the role of Vim in tremor-related biological processes. These studies provide a basis for more effective surgical treatments for tremor patients.
References:
1. Parras, O, Domínguez, P, Tomás-Biosca, A, Guridi, J. 2020. The role of tractography in the localization of the Vim nucleus of the thalamus and the dentato-rubro-thalamic tract for the treatment of tremor. In Neurologia, 37, 691-699. doi:10.1016/j.nrl.2019.09.006. https://pubmed.ncbi.nlm.nih.gov/31917004/
2. Parras, O, Domínguez, P, Tomás-Biosca, A, Guridi, J. 2021. The role of tractography in the localisation of the Vim nucleus of the thalamus and the dentatorubrothalamic tract for the treatment of tremor. In Neurologia, 37, 691-699. doi:10.1016/j.nrleng.2019.09.008. https://pubmed.ncbi.nlm.nih.gov/34563477/
3. Fahmi, Achmad, Subianto, Heri, Nugraha, Priya, Taira, Takaomi, Bajamal, Abdul Hafid. . VIM Line Technique for Determining the Ventral Intermediate Location. In Turkish neurosurgery, 31, 601-606. doi:10.5137/1019-5149.JTN.31961-20.2. https://pubmed.ncbi.nlm.nih.gov/33978218/
4. Fahmi, Achmad, Subianto, Heri, Nugraha, Priya, Taira, Takaomi, Bajamal, Abdul Hafid. 2020. Vim line technique thalamotomy for Parkinson tremor: Case series. In International journal of surgery case reports, 77, 573-575. doi:10.1016/j.ijscr.2020.11.096. https://pubmed.ncbi.nlm.nih.gov/33395848/
5. Reitz, Sarah C, Luger, Sebastian, Lapa, Sriramya, Baudrexel, Simon, Quick-Weller, Johanna. 2020. Comparing Programming Sessions of Vim-DBS. In Frontiers in neurology, 11, 987. doi:10.3389/fneur.2020.00987. https://pubmed.ncbi.nlm.nih.gov/33013651/
6. Hou, Xusheng, Mo, Yixiang, Zhu, Zhiyuan, Li, Mengqian, Zhang, Shizhong. 2023. Technical Issues of Vim-PSA Double-Target DBS for Essential Tremor. In Brain sciences, 13, . doi:10.3390/brainsci13040566. https://pubmed.ncbi.nlm.nih.gov/37190531/
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凍結前の精子濃度を測定し、精子の生存能力の判定します。
凍結後の精子では、各バッチから1本の凍結保存された精子を選び出し、体外受精に使用します。
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