| Literature DB >> 26413553 |
Roqueline A G M F Aversi-Ferreira1, Hisao Nishijo2, Tales Alexandre Aversi-Ferreira2.
Abstract
Various statistical methods have been published for comparative anatomy. However, few studies compared parametric and nonparametric statistical methods. Moreover, some previous studies using statistical method for comparative anatomy (SMCA) proposed the formula for comparison of groups of anatomical structures (multiple structures) among different species. The present paper described the usage of SMCA and compared the results by SMCA with those by parametric test (t-test) and nonparametric analyses (cladistics) of anatomical data. In conclusion, the SMCA can offer a more exact and precise way to compare single and multiple anatomical structures across different species, which requires analyses of nominal features in comparative anatomy.Entities:
Mesh:
Year: 2015 PMID: 26413553 PMCID: PMC4564798 DOI: 10.1155/2015/902534
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Illustration of individual steps to compute GCAI based on multiple muscles.
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Note. P : proportion of normal structured organs, where i represents individual species, j represents individual structures (i.e., muscles), and k represent individual parameters of the muscles.
General features of the extensor pollicis brevis muscle based on Aversi-Ferreira et al. [5]. In primates other than Ce, only the differences in muscle parameters from Ce are indicated.
| Muscle | Parameters | Ce ( | Hu ( | Ch ( | Ba ( |
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| Extensor pollicis brevis | Origin ( | Proximal third of the radius and interosseous membrane | Single insertion in distal phalange of the thumb | Highly similar to Ce | Absent |
| Insertion ( | Articular capsule of the trapezoid-metacarpal I articulation and the base of this last bone | ||||
| Innervation ( | Posterior interosseous nerve | ||||
| Vascularization ( | Posterior interosseous artery |
CAIs for the individual flexor deep muscles in the forearm to indicate degree of difference from the control species (Ce).
| Pronator quadratus | Flexor digitorum profundus | Flexor pollicis longus | |
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| Reference | Reference | Reference |
| Modern human (Hu) | CAI = 0.375 | CAI = 0.000 | CAI = 0.125 |
| Chimpanzee (Ch) | CAI = 0.000 | CAI = 0.063 | CAI = 0.000 |
| Baboon (Ba) | CAI = 0.000 | CAI = 1.000 | CAI = 0.250 |
P , P and GCAIs for the flexor deep muscles in the forearm to indicate degree of differences in this muscular group among different species in relation to the control species (Ce).
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| Modern humans (Hu) ( | Chimpanzee (Ch) ( | Baboon (Ba) ( | |||||||||
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| Investigated structures (flexor deep muscles of forearm) | Pronator quadratus | Flexor digitorum profundus | Flexor pollicis longus | Pronator quadratus | Flexor digitorum profundus | Flexor pollicis longus | Pronator quadratus | Flexor digitorum profundus | Flexor pollicis longus | Pronator quadratus | Flexor digitorum profundus | Flexor pollicis longus | |
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| Specific weights given with respect to variation | ||||||||||||
| Innervation ( |
| 1 | 1 | 1 | 0 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 |
| Origin ( |
| 1 | 1 | 1 | 1 | 1 | 0.5 | 1 | 1 | 1 | 1 | 0 | 1 |
| Insertion ( |
| 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0.5 | 1 | 1 | 0 | 0 |
| Vascularization ( |
| 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 0 | 1 |
| Weighted averages for single muscle (PAF = | 1 | 1 | 1 | 0.625 | 0 | 0.875 | 0 | 0.9375 | 0 | 0 | 1 | 0.750 | |
| Weighted averages for multiple muscles (mean of | 1 |
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GCAI = | | Reference |
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Note. P : proportion of normal structured organs, where i represents individual species, j represents individual structures (i.e., muscles), and k represent individual parameters of the muscles.
Analyses of the anatomical data by parametrical t-test and nonparametrical SMCA (CAI) [6].
| Specimens | Average ratios of length of palmaris longus to tendon length | Primate grouping | CAI (nonparametric analysis) |
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| No data in the literature | Apes | 0.133 |
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| 1.78 (±0.04) | 0.082 | |
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| 1.89 (±0.15) | 0.036 | |
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| 2.37 (±0.12) | Old world primate | 0.036 |
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| 2.53 (±0.08) | New world primates | 0 |
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| 2.53 | 0 | |
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| 3.81 (±1.07) | 0 | |
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| 4.53 (±0.27) | Prosimii | 0 |
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| 5.16 (±0.49) | Reference as more primitive specimen |
Partial agreement between parametric and nonparametric analyses of the palmaris longus of nonhuman primates. The range of values indicates numerical definition of the groups of the primates based on the parametric and nonparametric analyses in Table 5.
| Groups of the primates | Definition of groups based on parametric analysis of the ratios (muscle length/tendon length) (range of ratio) | Definition of groups based on nonparametric analysis of the features |
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| Apes | 1.0–2.0 | 0.100–0.036 |
| Old world primates | 2.0–2.5 | 0.036–0.000 |
| New world primates | 2.5–4.0 | 0.000 |
| Prosimii | 4.0–6.0 |
Partial agreement between the two nonparametric analyses (CAI and cladistics) of the palmaris longus in human and nonhuman primates.
| Ce | Hu | Ch | Ba | |
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| Nonparametric analysis by CAI | ||||
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| Pronator quadratus |
| CAI = 0.375 | CAI = 0.000 | CAI = 0.000 |
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| Flexor digitorum profundus |
| CAI = 0.000 | CAI = 0.063 | CAI = 1.000 |
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| Flexor pollicis longus |
| CAI = 0.125 | CAI = 0.000 | CAI = 0.250 |
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| GCAI |
| 0.167 | 0.020 | 0.417 |
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| Cladistics features of the palmaris longus in features innervation (A), origin (B), insertion (C), and vascularization (D) (0 and 1 indicate absence and presence of primitive features, resp.) | ||||
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| (ABCD) | (ABCD) | (ABCD) | (ABCD) | |
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| Pronator quadratus | (1111) | (0111) | (1111) | (1111) |
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| Flexor digitorum profundus | (0000) | (0000) | (0000) | (1111) |
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| Flexor pollicis longus | (1101) | (1001) | (1101) | (1111) |