新入荷 再入荷

Blockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive Behaviours Associated with Inhibiting the Mesolimbic Dopamine System | Neuroscience Bulletin

flash sale icon タイムセール
終了まで
00
00
00
999円以上お買上げで送料無料(
999円以上お買上げで代引き手数料無料
通販と店舗では販売価格や税表示が異なる場合がございます。また店頭ではすでに品切れの場合もございます。予めご了承ください。
新品 22080円 (税込)
数量

Blockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive Behaviours Associated with Inhibiting the Mesolimbic Dopamine System | Neuroscience Bulletin

Blockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive  Behaviours Associated with Inhibiting the Mesolimbic Dopamine System |  Neuroscience BulletinBlockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive Behaviours Associated with Inhibiting the Mesolimbic Dopamine System | Neuroscience Bulletin,Blockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive  Behaviours Associated with Inhibiting the Mesolimbic Dopamine System |  Neuroscience BulletinBlockade of the Dopamine D3 Receptor Attenuates Opioids-Induced Addictive Behaviours Associated with Inhibiting the Mesolimbic Dopamine System | Neuroscience Bulletin,Impedance measurements of living matter - Book chapter - IOPscienceImpedance measurements of living matter - Book chapter - IOPscience,Advances in the growth and characterization of magnetic, ferroelectric, and  multiferroic oxide thin films - ScienceDirectAdvances in the growth and characterization of magnetic, ferroelectric, and multiferroic oxide thin films - ScienceDirect,Carbon-based hybrid nanogels: a synergistic nanoplatform for combined  biosensing, bioimaging, and responsive drug delivery - Chemical Society  Reviews (RSC Publishing) DOI:10.1039/C7CS00399DCarbon-based hybrid nanogels: a synergistic nanoplatform for combined biosensing, bioimaging, and responsive drug delivery - Chemical Society Reviews (RSC Publishing) DOI:10.1039/C7CS00399D

 

商品情報の訂正

このページに記載された商品情報に記載漏れや誤りなどお気づきの点がある場合は、下記訂正依頼フォームよりお願い致します。

訂正依頼フォーム

商品レビュー

レビューの投稿にはサインインが必要です