|
1 | 1 | "unique_row","study_ID","long_cite","short_cite","peer_reviewed","coder","expt_num","expt_condition","same_infant","response_mode","exposure_phase","method","dependent_measure","participant_design","native_lang","infant_type","group_name_1","group_name_2","n_1","n_2","mean_age_1","mean_age_2","x_1","x_2","SD_1","SD_2","t","F","r","d","d_var","corr","test_lang","stimuli_link","data_link","age_range_1","age_range_2","n_excluded_1","n_excluded_2","gender_1","gender_2","num_trials","special_cases_measures","x_dif","SD_dif","contrast_sampa","audio_condition","speaker","speech_type","object_stimulus","cue_type","N_AFC","mean_comprehension_vocab","mean_production_vocab","pointing_modality","motive","correlation_type","condition_type","stimulus_naturalness","contrast_pseudoIPA","sampa_comments","counterbalanced","backness","height","nasality","roundness","tenseness","length","F1_1","F2_1","F1_2","F2_2","duration_word_1","duration_word_2","duration_vowel_1","duration_vowel_2","peripherality","Linguistic","words_to_passage","edge_alignment","familiarization_voice","familiarization_register","familiarization_affect","test_voice","test_register","indexical","rule.type","repetitions","types","tokens","expt_condition2","word_round","word_spiky","multiple_age_groups_younger_older","replication","native","label_present","instruction_code","taxonomic_type","tokens_per_trial","word_types_per_cond","publication_type","main_or_baseline_study","Modality","Semantics","TrainingRule","Speech","Nonspeech","CorrectPronunciation","Mispronunciation","is_correct","n_feature","type_feature","mispron_location","scenarios","Hamlin_Lab","stimuli_type","minimal_pairs","cues_present","word_typicality","ME_trial_type","corr_imputed","dataset","short_name","domain","d_calc","d_var_calc","g_calc","g_var_calc","r_calc","r_var_calc","z_calc","z_var_calc","log_odds_calc","log_odds_var_calc","es_method","mean_age","n","same_infant_calc","all_mod","mean_age_months","year"
|
2 |
| -"16","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 5 months","MHKNK17.1","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,28,NA,179.7,NA,0.0427,0.0466,0.07848885271,0.0759432683,NA,NA,NA,NA,NA,NA,"native",NA,NA,38.6,NA,82,NA,0.4285714286,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",-0.0505007670052854,0.0357598272762165,-0.0490440141109022,0.0337265160914094,-0.0252423377564763,0.008922878737951,-0.0252477010744157,0.04,-0.0915982590875271,0.117645116222514,"special_case",179.7,28,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.1","",5.90402266987002,"2017" |
3 |
| -"17","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 5 months","MHKNK17.1","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,28,NA,179.7,NA,-0.0049,-0.0224,0.1007296034,0.09217906799,NA,NA,NA,NA,NA,NA,"native",NA,NA,38.6,NA,82,NA,0.4285714286,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",0.181255042162653,0.0363009533983819,0.176026531331038,0.034236873670201,0.0902576204545815,0.00885524766188282,0.0905039181539994,0.04,0.328760280238866,0.119425349808136,"special_case",179.7,28,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.1","",5.90402266987002,"2017" |
4 |
| -"18","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 7 months","MHKNK17.2","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,22,NA,242.8,NA,0.0908,0.0161,0.1197917149,0.1048194957,NA,NA,NA,NA,NA,NA,"native",NA,NA,40.6,NA,82,NA,0.3636363636,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",0.663676510974724,0.0554651479822633,0.638788641813172,0.0513832597479436,0.314950387993474,0.0101357143247191,0.326031477106035,0.0526315789473684,1.20377603366314,0.182473022877606,"special_case",242.8,22,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.2","",7.97716585556172,"2017" |
5 |
| -"19","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 7 months","MHKNK17.2","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,22,NA,242.8,NA,0.0532,-0.0188,0.06642518248,0.06213968683,NA,NA,NA,NA,NA,NA,"native",NA,NA,40.6,NA,82,NA,0.3636363636,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",1.1194354054663,0.0739349006138979,1.07745657776132,0.0684937540218439,0.488415830466579,0.00816044110927564,0.533977753069787,0.0526315789473684,2.03043122673605,0.243236073497677,"special_case",242.8,22,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.2","",7.97716585556172,"2017" |
6 |
| -"20","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 9 months","MHKNK17.3","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,19,NA,297.6,NA,0.0833,-0.0028,0.0923411921,0.06946662906,NA,NA,NA,NA,NA,NA,"native",NA,NA,37.6,NA,82,NA,0.4736842105,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",1.05374789676181,0.0818522271034194,1.00725901896349,0.0747892862266321,0.466133082279279,0.00981272704293421,0.50511853367927,0.0625,1.91128726520971,0.269283033619625,"special_case",297.6,19,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.3","",9.77761350335736,"2017" |
7 |
| -"21","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 9 months","MHKNK17.3","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,19,NA,297.6,NA,0.1209,-0.0037,0.1649915823,0.1114024309,NA,NA,NA,NA,NA,NA,"native",NA,NA,37.6,NA,82,NA,0.4736842105,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Infants� Word Segmentation tested with Brain Measures","wsnm","early_language",0.885128000440927,0.0732487257148567,0.846078235715592,0.0669281717442192,0.404702035377381,0.0107076929884075,0.429259211868648,0.0625,1.60544460446566,0.240978648563179,"special_case",297.6,19,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.3","",9.77761350335736,"2017" |
| 2 | +"16","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 5 months","MHKNK17.1","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,28,NA,179.7,NA,0.0427,0.0466,0.07848885271,0.0759432683,NA,NA,NA,NA,NA,NA,"native",NA,NA,38.6,NA,82,NA,0.4285714286,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",-0.0505007670052854,0.0357598272762165,-0.0490440141109022,0.0337265160914094,-0.0252423377564763,0.008922878737951,-0.0252477010744157,0.04,-0.0915982590875271,0.117645116222514,"special_case",179.7,28,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.1","",5.90402266987002,"2017" |
| 3 | +"17","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 5 months","MHKNK17.1","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,28,NA,179.7,NA,-0.0049,-0.0224,0.1007296034,0.09217906799,NA,NA,NA,NA,NA,NA,"native",NA,NA,38.6,NA,82,NA,0.4285714286,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",0.181255042162653,0.0363009533983819,0.176026531331038,0.034236873670201,0.0902576204545815,0.00885524766188282,0.0905039181539994,0.04,0.328760280238866,0.119425349808136,"special_case",179.7,28,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.1","",5.90402266987002,"2017" |
| 4 | +"18","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 7 months","MHKNK17.2","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,22,NA,242.8,NA,0.0908,0.0161,0.1197917149,0.1048194957,NA,NA,NA,NA,NA,NA,"native",NA,NA,40.6,NA,82,NA,0.3636363636,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",0.663676510974724,0.0554651479822633,0.638788641813172,0.0513832597479436,0.314950387993474,0.0101357143247191,0.326031477106035,0.0526315789473684,1.20377603366314,0.182473022877606,"special_case",242.8,22,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.2","",7.97716585556172,"2017" |
| 5 | +"19","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 7 months","MHKNK17.2","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,22,NA,242.8,NA,0.0532,-0.0188,0.06642518248,0.06213968683,NA,NA,NA,NA,NA,NA,"native",NA,NA,40.6,NA,82,NA,0.3636363636,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",1.1194354054663,0.0739349006138979,1.07745657776132,0.0684937540218439,0.488415830466579,0.00816044110927564,0.533977753069787,0.0526315789473684,2.03043122673605,0.243236073497677,"special_case",242.8,22,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.2","",7.97716585556172,"2017" |
| 6 | +"20","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"training 9 months","MHKNK17.3","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,19,NA,297.6,NA,0.0833,-0.0028,0.0923411921,0.06946662906,NA,NA,NA,NA,NA,NA,"native",NA,NA,37.6,NA,82,NA,0.4736842105,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",1.05374789676181,0.0818522271034194,1.00725901896349,0.0747892862266321,0.466133082279279,0.00981272704293421,0.50511853367927,0.0625,1.91128726520971,0.269283033619625,"special_case",297.6,19,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.3","",9.77761350335736,"2017" |
| 7 | +"21","MinagawaHakunoKobayashiNaoiKoijma2017","Minagawa, Y., Hakuno, Y., Kobayashi, A., Naoi, N., & Kojima, S. (2017). Infant word segmentation recruits the cerebral network of phonological short-term memory. Brain and language, 170, 39-49.","Minagawa, Hakuno, Kobayashi, Naoi, & Koijma (2017)","yes","Fleur",2,"test 9 months","MHKNK17.3","NIRS","familiarization","passive listening","peak_amplitude","within_two","Japanese","typical",NA,NA,19,NA,297.6,NA,0.1209,-0.0037,0.1649915823,0.1114024309,NA,NA,NA,NA,NA,NA,"native",NA,NA,37.6,NA,82,NA,0.4736842105,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"match","no",NA,"female","IDS",NA,"female","IDS",NA,NA,NA,NA,NA,NA,NA,NA,2,NA,1,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,NA,"Word segmentation (neuro)","wsnm","early_language",0.885128000440927,0.0732487257148567,0.846078235715592,0.0669281717442192,0.404702035377381,0.0107076929884075,0.429259211868648,0.0625,1.60544460446566,0.240978648563179,"special_case",297.6,19,"MinagawaHakunoKobayashiNaoiKoijma2017 MHKNK17.3","",9.77761350335736,"2017" |
0 commit comments