These tools will no longer be maintained as of December 31, 2024. Archived website can be found here. PubMed4Hh GitHub repository can be found here. Contact NLM Customer Service if you have questions.
724 related articles for article (PubMed ID: 34004146)
1. A taxonomy of transcriptomic cell types across the isocortex and hippocampal formation. Yao Z; van Velthoven CTJ; Nguyen TN; Goldy J; Sedeno-Cortes AE; Baftizadeh F; Bertagnolli D; Casper T; Chiang M; Crichton K; Ding SL; Fong O; Garren E; Glandon A; Gouwens NW; Gray J; Graybuck LT; Hawrylycz MJ; Hirschstein D; Kroll M; Lathia K; Lee C; Levi B; McMillen D; Mok S; Pham T; Ren Q; Rimorin C; Shapovalova N; Sulc J; Sunkin SM; Tieu M; Torkelson A; Tung H; Ward K; Dee N; Smith KA; Tasic B; Zeng H Cell; 2021 Jun; 184(12):3222-3241.e26. PubMed ID: 34004146 [TBL] [Abstract][Full Text] [Related]
2. Shared and distinct transcriptomic cell types across neocortical areas. Tasic B; Yao Z; Graybuck LT; Smith KA; Nguyen TN; Bertagnolli D; Goldy J; Garren E; Economo MN; Viswanathan S; Penn O; Bakken T; Menon V; Miller J; Fong O; Hirokawa KE; Lathia K; Rimorin C; Tieu M; Larsen R; Casper T; Barkan E; Kroll M; Parry S; Shapovalova NV; Hirschstein D; Pendergraft J; Sullivan HA; Kim TK; Szafer A; Dee N; Groblewski P; Wickersham I; Cetin A; Harris JA; Levi BP; Sunkin SM; Madisen L; Daigle TL; Looger L; Bernard A; Phillips J; Lein E; Hawrylycz M; Svoboda K; Jones AR; Koch C; Zeng H Nature; 2018 Nov; 563(7729):72-78. PubMed ID: 30382198 [TBL] [Abstract][Full Text] [Related]
3. Evolution of pallium, hippocampus, and cortical cell types revealed by single-cell transcriptomics in reptiles. Tosches MA; Yamawaki TM; Naumann RK; Jacobi AA; Tushev G; Laurent G Science; 2018 May; 360(6391):881-888. PubMed ID: 29724907 [TBL] [Abstract][Full Text] [Related]
4. Integrated Morphoelectric and Transcriptomic Classification of Cortical GABAergic Cells. Gouwens NW; Sorensen SA; Baftizadeh F; Budzillo A; Lee BR; Jarsky T; Alfiler L; Baker K; Barkan E; Berry K; Bertagnolli D; Bickley K; Bomben J; Braun T; Brouner K; Casper T; Crichton K; Daigle TL; Dalley R; de Frates RA; Dee N; Desta T; Lee SD; Dotson N; Egdorf T; Ellingwood L; Enstrom R; Esposito L; Farrell C; Feng D; Fong O; Gala R; Gamlin C; Gary A; Glandon A; Goldy J; Gorham M; Graybuck L; Gu H; Hadley K; Hawrylycz MJ; Henry AM; Hill D; Hupp M; Kebede S; Kim TK; Kim L; Kroll M; Lee C; Link KE; Mallory M; Mann R; Maxwell M; McGraw M; McMillen D; Mukora A; Ng L; Ng L; Ngo K; Nicovich PR; Oldre A; Park D; Peng H; Penn O; Pham T; Pom A; Popović Z; Potekhina L; Rajanbabu R; Ransford S; Reid D; Rimorin C; Robertson M; Ronellenfitch K; Ruiz A; Sandman D; Smith K; Sulc J; Sunkin SM; Szafer A; Tieu M; Torkelson A; Trinh J; Tung H; Wakeman W; Ward K; Williams G; Zhou Z; Ting JT; Arkhipov A; Sümbül U; Lein ES; Koch C; Yao Z; Tasic B; Berg J; Murphy GJ; Zeng H Cell; 2020 Nov; 183(4):935-953.e19. PubMed ID: 33186530 [TBL] [Abstract][Full Text] [Related]
5. Signature morphoelectric properties of diverse GABAergic interneurons in the human neocortex. Lee BR; Dalley R; Miller JA; Chartrand T; Close J; Mann R; Mukora A; Ng L; Alfiler L; Baker K; Bertagnolli D; Brouner K; Casper T; Csajbok E; Donadio N; Driessens SLW; Egdorf T; Enstrom R; Galakhova AA; Gary A; Gelfand E; Goldy J; Hadley K; Heistek TS; Hill D; Hou WH; Johansen N; Jorstad N; Kim L; Kocsis AK; Kruse L; Kunst M; León G; Long B; Mallory M; Maxwell M; McGraw M; McMillen D; Melief EJ; Molnar G; Mortrud MT; Newman D; Nyhus J; Opitz-Araya X; Ozsvár A; Pham T; Pom A; Potekhina L; Rajanbabu R; Ruiz A; Sunkin SM; Szöts I; Taskin N; Thyagarajan B; Tieu M; Trinh J; Vargas S; Vumbaco D; Waleboer F; Walling-Bell S; Weed N; Williams G; Wilson J; Yao S; Zhou T; Barzó P; Bakken T; Cobbs C; Dee N; Ellenbogen RG; Esposito L; Ferreira M; Gouwens NW; Grannan B; Gwinn RP; Hauptman JS; Hodge R; Jarsky T; Keene CD; Ko AL; Korshoej AR; Levi BP; Meier K; Ojemann JG; Patel A; Ruzevick J; Silbergeld DL; Smith K; Sørensen JC; Waters J; Zeng H; Berg J; Capogna M; Goriounova NA; Kalmbach B; de Kock CPJ; Mansvelder HD; Sorensen SA; Tamas G; Lein ES; Ting JT Science; 2023 Oct; 382(6667):eadf6484. PubMed ID: 37824669 [TBL] [Abstract][Full Text] [Related]
6. Transcriptomic profile of the subiculum-projecting VIP GABAergic neurons in the mouse CA1 hippocampus. Luo X; Muñoz-Pino E; Francavilla R; Vallée M; Droit A; Topolnik L Brain Struct Funct; 2019 Jul; 224(6):2269-2280. PubMed ID: 31098764 [TBL] [Abstract][Full Text] [Related]
7. An Optogenetic Approach for Investigation of Excitatory and Inhibitory Network GABA Actions in Mice Expressing Channelrhodopsin-2 in GABAergic Neurons. Valeeva G; Tressard T; Mukhtarov M; Baude A; Khazipov R J Neurosci; 2016 Jun; 36(22):5961-73. PubMed ID: 27251618 [TBL] [Abstract][Full Text] [Related]
8. Cell-Type-Specific Whole-Brain Direct Inputs to the Anterior and Posterior Piriform Cortex. Wang L; Zhang Z; Chen J; Manyande A; Haddad R; Liu Q; Xu F Front Neural Circuits; 2020; 14():4. PubMed ID: 32116571 [TBL] [Abstract][Full Text] [Related]
10. Seq-ing out cell types across the isocortex and hippocampal formation. Ming GL; Song H Cell; 2021 Jun; 184(12):3083-3085. PubMed ID: 34115970 [TBL] [Abstract][Full Text] [Related]
11. Class 4 Semaphorins and Plexin-B receptors regulate GABAergic and glutamatergic synapse development in the mammalian hippocampus. McDermott JE; Goldblatt D; Paradis S Mol Cell Neurosci; 2018 Oct; 92():50-66. PubMed ID: 29981480 [TBL] [Abstract][Full Text] [Related]
13. Low accumulation of drebrin at glutamatergic postsynaptic sites on GABAergic neurons. Hanamura K; Mizui T; Kakizaki T; Roppongi RT; Yamazaki H; Yanagawa Y; Shirao T Neuroscience; 2010 Sep; 169(4):1489-500. PubMed ID: 20600648 [TBL] [Abstract][Full Text] [Related]
14. Human neocortical expansion involves glutamatergic neuron diversification. Berg J; Sorensen SA; Ting JT; Miller JA; Chartrand T; Buchin A; Bakken TE; Budzillo A; Dee N; Ding SL; Gouwens NW; Hodge RD; Kalmbach B; Lee C; Lee BR; Alfiler L; Baker K; Barkan E; Beller A; Berry K; Bertagnolli D; Bickley K; Bomben J; Braun T; Brouner K; Casper T; Chong P; Crichton K; Dalley R; de Frates R; Desta T; Lee SD; D'Orazi F; Dotson N; Egdorf T; Enstrom R; Farrell C; Feng D; Fong O; Furdan S; Galakhova AA; Gamlin C; Gary A; Glandon A; Goldy J; Gorham M; Goriounova NA; Gratiy S; Graybuck L; Gu H; Hadley K; Hansen N; Heistek TS; Henry AM; Heyer DB; Hill D; Hill C; Hupp M; Jarsky T; Kebede S; Keene L; Kim L; Kim MH; Kroll M; Latimer C; Levi BP; Link KE; Mallory M; Mann R; Marshall D; Maxwell M; McGraw M; McMillen D; Melief E; Mertens EJ; Mezei L; Mihut N; Mok S; Molnar G; Mukora A; Ng L; Ngo K; Nicovich PR; Nyhus J; Olah G; Oldre A; Omstead V; Ozsvar A; Park D; Peng H; Pham T; Pom CA; Potekhina L; Rajanbabu R; Ransford S; Reid D; Rimorin C; Ruiz A; Sandman D; Sulc J; Sunkin SM; Szafer A; Szemenyei V; Thomsen ER; Tieu M; Torkelson A; Trinh J; Tung H; Wakeman W; Waleboer F; Ward K; Wilbers R; Williams G; Yao Z; Yoon JG; Anastassiou C; Arkhipov A; Barzo P; Bernard A; Cobbs C; de Witt Hamer PC; Ellenbogen RG; Esposito L; Ferreira M; Gwinn RP; Hawrylycz MJ; Hof PR; Idema S; Jones AR; Keene CD; Ko AL; Murphy GJ; Ng L; Ojemann JG; Patel AP; Phillips JW; Silbergeld DL; Smith K; Tasic B; Yuste R; Segev I; de Kock CPJ; Mansvelder HD; Tamas G; Zeng H; Koch C; Lein ES Nature; 2021 Oct; 598(7879):151-158. PubMed ID: 34616067 [TBL] [Abstract][Full Text] [Related]
15. A comparison of neurotransmitter-specific and neuropeptide-specific neuronal cell types present in the dorsal cortex in turtles with those present in the isocortex in mammals: implications for the evolution of isocortex. Reiner A Brain Behav Evol; 1991; 38(2-3):53-91. PubMed ID: 1683805 [TBL] [Abstract][Full Text] [Related]
16. Adult mouse cortical cell taxonomy revealed by single cell transcriptomics. Tasic B; Menon V; Nguyen TN; Kim TK; Jarsky T; Yao Z; Levi B; Gray LT; Sorensen SA; Dolbeare T; Bertagnolli D; Goldy J; Shapovalova N; Parry S; Lee C; Smith K; Bernard A; Madisen L; Sunkin SM; Hawrylycz M; Koch C; Zeng H Nat Neurosci; 2016 Feb; 19(2):335-46. PubMed ID: 26727548 [TBL] [Abstract][Full Text] [Related]
17. Cell-type-resolved mosaicism reveals clonal dynamics of the human forebrain. Chung C; Yang X; Hevner RF; Kennedy K; Vong KI; Liu Y; Patel A; Nedunuri R; Barton ST; Noel G; Barrows C; Stanley V; Mittal S; Breuss MW; Schlachetzki JCM; Kingsmore SF; Gleeson JG Nature; 2024 May; 629(8011):384-392. PubMed ID: 38600385 [TBL] [Abstract][Full Text] [Related]
18. Paracrine Role for Somatostatin Interneurons in the Assembly of Perisomatic Inhibitory Synapses. Su J; Basso D; Iyer S; Su K; Wei J; Fox MA J Neurosci; 2020 Sep; 40(39):7421-7435. PubMed ID: 32847968 [TBL] [Abstract][Full Text] [Related]
19. Identified GABAergic and Glutamatergic Neurons in the Mouse Inferior Colliculus Share Similar Response Properties. Ono M; Bishop DC; Oliver DL J Neurosci; 2017 Sep; 37(37):8952-8964. PubMed ID: 28842411 [TBL] [Abstract][Full Text] [Related]
20. Spatial relationships between GABAergic and glutamatergic synapses on the dendrites of distinct types of mouse retinal ganglion cells across development. Bleckert A; Parker ED; Kang Y; Pancaroglu R; Soto F; Lewis R; Craig AM; Wong RO PLoS One; 2013; 8(7):e69612. PubMed ID: 23922756 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]