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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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same_animal_human_corrected_reference_frame
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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59.778
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source_microscope
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same_animal_human_corrected_reference_frame
null
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253
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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null
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277
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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60.75
0
source_microscope
null
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same_animal_human_corrected_reference_frame
null
78
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241
276
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
67.068
58.563
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
79
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0
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238
309
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
75.087
57.834
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
80
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239
324
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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58.077
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
51
gt:10
0
0
268
227
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
55.161
65.124
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
84
gt:11
0
4
258
314
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
76.302
62.694
6
source_microscope
null
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same_animal_human_corrected_reference_frame
null
16
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0
5
287
201
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
48.843
69.741
7.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
17
gt:13
0
6
234
141
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
34.263
56.862
9
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
19
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0
6
239
173
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
42.039
58.077
9
source_microscope
null
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same_animal_human_corrected_reference_frame
null
21
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0
8
255
187
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
45.441
61.965
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
22
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0
8
264
193
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
46.899
64.152
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
23
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0
7
231
194
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
47.142
56.133
10.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
24
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245
201
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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12
source_microscope
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same_animal_human_corrected_reference_frame
null
47
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5
277
224
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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67.311
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
86
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258
330
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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62.694
7.5
source_microscope
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same_animal_human_corrected_reference_frame
null
87
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5
265
342
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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64.395
7.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
88
gt:22
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5
249
341
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
82.863
60.507
7.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
89
gt:23
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3
249
363
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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60.507
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
90
gt:24
0
2
176
301
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
73.143
42.768
3
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
92
gt:25
0
1
247
332
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
80.676
60.021
1.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
117
gt:26
0
6
170
310
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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41.31
9
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
118
gt:27
0
8
166
288
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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40.338
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
63
gt:28
0
5
198
242
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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48.114
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
25
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0
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264
225
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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64.152
12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
73
gt:30
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217
277
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
67.311
52.731
12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
72
gt:31
0
6
246
280
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
68.04
59.778
9
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
71
gt:32
0
6
198
253
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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9
source_microscope
null
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same_animal_human_corrected_reference_frame
null
70
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0
8
224
270
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
62
gt:35
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193
263
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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46.899
10.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
61
gt:36
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179
245
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
59.535
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3
source_microscope
null
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same_animal_human_corrected_reference_frame
null
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2
277
206
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
50.058
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3
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
97
gt:39
0
6
266
369
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
89.667
64.638
9
source_microscope
null
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same_animal_human_corrected_reference_frame
null
98
gt:40
0
5
259
376
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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62.937
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
99
gt:41
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270
376
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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65.61
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source_microscope
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same_animal_human_corrected_reference_frame
null
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268
391
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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3
source_microscope
null
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same_animal_human_corrected_reference_frame
null
37
gt:44
0
5
219
202
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
49.086
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source_microscope
null
true
same_animal_human_corrected_reference_frame
null
38
gt:45
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213
211
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
51.273
51.759
3
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
41
gt:47
0
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245
198
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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59.535
0
source_microscope
null
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same_animal_human_corrected_reference_frame
null
96
gt:48
0
8
206
310
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
75.33
50.058
12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
44
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245
217
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
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1
272
246
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
true
same_animal_human_corrected_reference_frame
null
46
gt:52
0
3
277
234
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
56.862
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
91
gt:53
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1
225
315
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
76.545
54.675
1.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
48
gt:54
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7
269
232
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
56.376
65.367
10.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
49
gt:55
0
8
236
232
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
56.376
57.348
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
109
gt:57
0
6
258
392
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
95.256
62.694
9
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
101
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0
1
272
356
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
86.508
66.096
1.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
102
gt:60
0
0
239
347
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
84.321
58.077
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
103
gt:61
0
7
230
345
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
83.835
55.89
10.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
104
gt:62
0
8
232
358
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
86.994
56.376
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
105
gt:63
0
0
232
371
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
90.153
56.376
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
107
gt:65
0
8
223
378
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
91.854
54.189
12
source_microscope
null
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same_animal_human_corrected_reference_frame
null
108
gt:66
0
8
208
385
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
93.555
50.544
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
85
gt:67
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3
264
325
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
78.975
64.152
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
110
gt:68
0
0
228
385
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
93.555
55.404
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
111
gt:69
0
0
253
411
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
99.873
61.479
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
112
gt:70
0
0
180
315
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
76.545
43.74
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
7
gt:71
0
1
306
127
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
30.861
74.358
1.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
33
gt:73
0
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267
203
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
49.329
64.881
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
34
gt:74
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0
275
190
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
46.17
66.825
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
93
gt:76
0
3
261
356
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
86.508
63.423
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
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gt:77
0
7
136
335
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
81.405
33.048
10.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
3
gt:78
0
7
299
119
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
28.917
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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232
201
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
48.843
56.376
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source_microscope
null
true
same_animal_human_corrected_reference_frame
null
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gt:82
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5
234
183
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
44.469
56.862
7.5
source_microscope
null
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same_animal_human_corrected_reference_frame
null
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0
7
272
213
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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gt:85
0
0
313
135
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
32.805
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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gt:86
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1
191
247
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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256
114
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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257
138
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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265
117
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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gt:91
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283
151
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
36.693
68.769
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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0
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299
202
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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gt:94
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6
302
190
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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73.386
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source_microscope
null
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same_animal_human_corrected_reference_frame
null
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220
441
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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10.5
source_microscope
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same_animal_human_corrected_reference_frame
null
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gt:96
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8
209
258
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
62.694
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source_microscope
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same_animal_human_corrected_reference_frame
null
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223
250
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
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gt:98
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210
250
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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257
400
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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221
453
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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295
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ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
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source_microscope
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same_animal_human_corrected_reference_frame
null
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gt:104
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8
267
167
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
40.581
64.881
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
55
gt:105
0
0
283
171
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
41.553
68.769
0
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
56
gt:106
0
3
275
257
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
62.451
66.825
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
57
gt:107
0
5
275
266
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
64.638
66.825
7.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
58
gt:108
0
3
280
286
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
69.498
68.04
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
59
gt:109
0
3
191
232
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
56.376
46.413
4.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
1
gt:110
0
5
245
495
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
120.285
59.535
7.5
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
67
gt:111
0
8
239
259
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
62.937
58.077
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
68
gt:112
0
8
241
272
ascent-opterra
human_corrected
ASCENT-GT-proofread-ZephIR
reference
66.096
58.563
12
source_microscope
null
true
same_animal_human_corrected_reference_frame
null
0
null
null
21
168
29
dandi-000715-sub-56-YAaDV
source_annotation_uncertainty_unknown
null
null
6.025228
34.904771
15.75
source_microscope
null
null
same_animal_structural_volume
null
1
null
null
18
54
55
dandi-000715-sub-56-YAaDV
source_annotation_uncertainty_unknown
null
null
11.427157
11.219391
13.5
source_microscope
null
null
same_animal_structural_volume
null
2
null
null
19
97
64
dandi-000715-sub-56-YAaDV
source_annotation_uncertainty_unknown
null
null
13.297055
20.15335
14.25
source_microscope
null
null
same_animal_structural_volume
null
3
null
null
21
131
68
dandi-000715-sub-56-YAaDV
source_annotation_uncertainty_unknown
null
null
14.128121
27.21741
15.75
source_microscope
null
null
same_animal_structural_volume
null
End of preview. Expand in Data Studio

WormTrack-Verify — v0.1.0-alpha.1

A public development pilot for testing anatomical verification of anonymous neuron trajectories in C. elegans. This is usable data and executable evaluation machinery. The full initial benchmark and release gates A/B/C are not complete. There is no frozen held-out test set in this release.

Motivation and scientific hypothesis

Tracking errors contaminate neural activity measurements. Eutely supports persistent neuronal populations in adult hermaphrodites; it does not imply 302 visible detections or immutable positions. The hypothesis is that an independently estimated, restricted deformation model can predict neuronal positions with uncertainty sufficiently smaller than local inter-neuron spacing to expose identity errors. Four planar eigenworm modes do not establish a four-dimensional model of 3D internal tissue motion. The benchmark must allow this hypothesis to fail.

Inventory and actual included material

Component Observed count / status
Recording-level registry 264
Original WormID source assets 118
ASCENT human-corrected observations 105599
ASCENT anonymous tracks 96
Hosted imaging excerpts 44 volumes across four recordings
Reference point clouds 2
Independent behavior summaries 6,400 samples; one SF acquisition
Measured centerlines / eigenworm coefficients 0; unavailable
Frozen train/validation/test Not released; development only

The five standardized tracking tables cover ASCENT, ZephIR, a NeRVE-derived recording redistributed in ZephIR, Targettrack, and a 16-frame WormID EY excerpt. Only ASCENT is currently eligible for the trusted tracking and corruption pilot. ZephIR scorer codes and Targettrack mask provenance are retained; unresolved annotations are unknown, not ground truth. The archive also contains a mouse experiment, which is excluded.

All 36 WormID tracking acquisitions and 38 excluded SF recordings are mapped at inventory level. NP/HL structural recordings are not presented as dynamic tracking. Assembly report distinguishes inventoried assets, inspected data, validated tables, and trusted correspondence labels. Source audit records blocked resources.

Tracking versus verification

tracking_gt isolates association on fixed source-supported objects and preserves the original WormID reference-frame protocol for future reproduction. anatomical_verification tests labeled identity corruptions. anatomical_consistency contains consistency diagnostics with incomplete labels. These protocols are distinct from train/validation/test partitions.

The pilot provides two untrained oracle association baselines (Euclidean nearest neighbor and Hungarian assignment), six controlled error types, clean controls, and a fixed-reference-distance consistency baseline. Its threshold is a declared 5 micrometers, chosen as a development demonstration, not calibrated to a guaranteed false-acceptance target. Reported results are descriptive development diagnostics. No full-image tracking, HOTA/IDF1, independent deformation fitting, or cross-laboratory generalization claim is made.

Data formats and coordinates

Structured data are recording-partitioned Parquet. Original annotation HDF5 files and a small original structural NWB are retained where allowed. Imaging pilots use lossless chunked HDF5 with one CZYX dataset per hosted frame; source intensities are unnormalized. The logical volume axis order is TCZYX. This HDF5 representation is not advertised as OME-Zarr/NGFF.

Point coordinates are named XYZ. Native voxel coordinates and transforms are preserved. Physical fields are null when calibration is unavailable. ASCENT spacing is (0.243, 0.243, 1.5) micrometers in XYZ, from the source record. WormID spacing comes from the inspected NWB. ZephIR normalized coordinates are converted through the source pixel-center convention; 17 out-of-bounds observations remain present with validity=false. Targettrack centroids remain in its source-processed image coordinates with an unresolved transform direction.

Ground-truth provenance

ASCENT tracks were initialized with ZephIR and manually proofread/corrected by the source authors. This is human-corrected algorithm output, not independent de novo dense annotation. Source predictions live separately under evaluation/source_predictions/ because their detections differ from oracle objects. Anonymous track IDs are sufficient; neuronal names are optional and are not used by the verifier.

The WormID EY inspected source has 962 image frames and 961 segmentation frames. Only the available observations are published. No coordinate clamping, identity interpolation, or missing annotation fabrication is performed.

Anatomy and posture

ASCENT's proofread first frame and a same-animal NeuroPAL structural cloud are included. Neither is a universal anatomical atlas. Unknown reference uncertainty is null. SF measured behavior summaries retain source timestamps and empty/unknown units. They are not centerlines, body coordinates, or a validated 3D deformation map. The client raises an explicit missing-component error for unsupported posture or imaging frames.

Splits and duplicates

All included examples are assigned to development; train/validation/test are empty and no test performance is claimed. Original WormID fold values are preserved verbatim as a reproduction reference, not interpreted as this benchmark's partitions. The original split CSV has 120 rows and 118 unique filenames; two repeated structural entries are preserved in that reference table.

Shared DANDI subject identifiers, particularly SK1 and DANDI 001623, are flagged as possible overlaps. Common animals/acquisitions and derivatives must stay together; unresolved overlap cannot be used to establish split disjointness. The NeRVE excerpt in ZephIR is not counted as an additional independent source acquisition. Test labels, when frozen in a later release, cannot calibrate corruptions or verification thresholds.

Access examples

from datasets import load_dataset
# Pin a commit SHA or the alpha tag after publication.
registry = load_dataset("pytc/trackingBench", "recordings", revision="v0.1.0-alpha.1")
tracks = load_dataset("pytc/trackingBench", "tracks", revision="v0.1.0-alpha.1", streaming=True)
corruptions = load_dataset("pytc/trackingBench", "perturbations", revision="v0.1.0-alpha.1", streaming=True)
print(next(iter(tracks["development"])))

The named configurations are recordings, detections, tracks, posture, anatomy, perturbations, and verification. The posture configuration currently contains behavior summaries, with explicit component_type, and zero measured centerlines. Loading tables does not download microscopy volumes. The recording registry includes inventory-only acquisitions; hosted_tracks and hosted_volume distinguish available components.

For the bundled selective Python client, install this repository's small code subset:

from huggingface_hub import snapshot_download
import subprocess, sys
code = snapshot_download("pytc/trackingBench", repo_type="dataset", revision="v0.1.0-alpha.1",
                         allow_patterns=["src/**", "pyproject.toml", "README.md", "requirements.lock.txt"])
subprocess.check_call([sys.executable, "-m", "pip", "install", code])
from cell_tracking.data.wormtrack_verify import BenchmarkClient
client = BenchmarkClient(revision="v0.1.0-alpha.1")
annotations = client.load_tracks("ascent-opterra")
volume = client.load_volume("ascent-opterra", frame=0)  # Small hosted excerpt only; CZYX.

Use the executable pilot to reproduce the corruption and metric demonstration. Files larger than the client's 128 MiB budget require an explicit increased budget; no function silently downloads the benchmark or a multi-GB original movie. Original assets resolve through immutable DANDI asset IDs and versioned Zenodo records in metadata/upstream_assets.json. External assets are not Hub-hosted movies.

Licensing and attribution

The original empty repository displayed MIT. That does not license third-party data. Included DANDI and Zenodo data are CC BY 4.0 per their release metadata. Benchmark helper code is MIT; source data retain their own licenses and attribution. Resources with unresolved redistribution rights remain references only. See per-source licensing, catalog, and citations.

Limitations and biases

This pilot has only one trusted proofread tracking specimen, no measured centerlines, no independently calibrated deformation uncertainty, and no held-out evaluation. Unknown scorer codes are not promoted to manual ground truth. Fixed-reference residuals include legitimate tissue motion and are permutation-sensitive only because reference correspondences remain fixed. A static unordered point cloud cannot detect identity swaps. Acceptance by a geometric heuristic is not proof of biological identity.

Coverage and selective risk use the full declared observation population; rejecting everything yields zero coverage. Sources differ in optics, visibility, annotation construction, and acquisition restrictions. The 302-neuron assumption is not universal across sex/stage and is never used to force observed counts.

Release history

  • v0.1.0-alpha.1: development pilot; source inventory, five standardized tracking tables, imaging excerpts, two reference clouds, measured behavior summaries, controlled corruptions, and reference baseline outputs. Full initial release gates remain open.

Each release has a SHA256 assembly manifest, an upstream asset manifest, dependency pins, and machine-readable validation results. No model weights or externally pretrained models are used by these pilot baselines.

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