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1 iors performed by the medicinal leech Hirudo medicinalis.
2 in inhibitor from the medicinal leech Hirudo medicinalis.
3 o alpha-tubulin cDNAs from the leech, Hirudo medicinalis.
4       In the European medicinal leech Hirudo medicinalis and the American medicinal leech Macrobdella
5  ventral chain ganglia from the leech Hirudo medicinalis and the pedal ganglion from the mussel Mytil
6 ment in the European medicinal leech, Hirudo medicinalis, based entirely on externally visible morpho
7          Mapping the contested leech (Hirudo medicinalis) CBR sequence suggests that it encodes a fun
8 d in leech (Theromyzon tessulatum and Hirudo medicinalis) central nervous system.
9 ve investigated the role of HmLAR2, a Hirudo medicinalis homologue of DLAR, in process outgrowth.
10 th of severed CNS axons in the leech (Hirudo medicinalis), in which axon and synapse regeneration are
11 ected behavior produced by the leech, Hirudo medicinalis, in response to a light touch.
12                Eglin c from the leech Hirudo medicinalis is a potent protein inhibitor of many serine
13 art circuitry of the medicinal leech (Hirudo medicinalis) is a highly stereotyped circuit in the adul
14      We have cloned and sequenced two Hirudo medicinalis rPTPs that are homologous to the Drosophila
15 n the ventral nerve cord of the leech Hirudo medicinalis Specifically, innervation of the male genita
16                      The sequences of Hirudo medicinalis synaptobrevin and synaptosomal-associated pr
17                          In the leech Hirudo medicinalis, the S-interneuron is required for sensitiza
18  isolated nervous system of the leech Hirudo medicinalis, we have found evidence that leeches also ma
19  central nervous system of the leech, Hirudo medicinalis, were studied using NADPH-diaphorase (NADPH-
20 ly on ganglia of the medicinal leech (Hirudo medicinalis) without in-gel digestion.

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