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Biomedical subjects

J G Thalhammer

Publications and source records attributed to J G Thalhammer.

At least 19 recordsLinked to original sources

Addition of sodium bicarbonate to lidocaine decreases the duration of peripheral nerve block in the rat.

BACKGROUND: Adding sodium bicarbonate to lidocaine to enhance its efficacy during peripheral nerve block is controversial. The authors studied the effect of adding sodium bicarbonate to lidocaine with and without epinephrine versus equivalent alkalinization by sodium hydroxide (NaOH) on onset, degree, and duration of peripheral nerve block. METHODS: Part I examined alkalinization by sodium bicarbonate versus NaOH to pH 7.8 on 0.5% lidocaine, with and without epinephrine (1:100,000), prepared from crystalline salt. Part II examined 0.5% and 1.0% commercial lidocaine solutions, with and without epinephrine, either unalkalinized or alkalinized with sodium bicarbonate or NaOH. With NaOH, pH was adjusted to 7.8, but with sodium bicarbonate, no pH adjustments were made to simulate clinical conditions. RESULTS: In part I, addition of either NaOH or sodium bicarbonate to 0.5% lidocaine without epinephrine produced a faster onset than did unalkalinized lidocaine, without effecting degree or duration of block. In solutions with epinephrine there were no differences in onset, degree, or duration between lidocaine alkalinized with sodium bicarbonate versus NaOH. In part II, addition of sodium bicarbonate or NaOH to 1.0% commercial lidocaine without epinephrine did not accelerate onset compared with the unalkalinized solution. However, adding sodium bicarbonate decreased the degree and duration of block by 25% and more than 50%, respectively, compared with lidocaine unalkalinized and alkalinized with NaOH. With epinephrine, sodium bicarbonate hastened onset without effecting degree and duration compared with the unalkalinized solution. CONCLUSIONS: With 1% commercial lidocaine without epinephrine, sodium bicarbonate decreases the degree and duration of block. However, in solutions with epinephrine, sodium bicarbonate hastens onset, without effecting degree or duration.

Anesthetics, Local↗

Structure-activity relation of N-alkyl tetracaine derivatives as neurolytic agents for sciatic nerve lesions.

BACKGROUND: N-butyl tetracaine has local anesthetic and neurolytic properties. An injection of this drug at the rat sciatic notch produces rapid onset and nerve impairment lasting > 1 week. This study aimed to elucidate the structure-activity relation of various tetracaine derivatives to design better neurolytic agents. METHODS: N-alkyl tetracaine salts (n = 2-6) were synthesized, and their ability to elicit sciatic nerve impairment of sensory and motor functions in vivo was tested in rats. A single dose (0.1 ml at 37 mM) was administered close to the sciatic nerve at the sciatic notch. Regeneration was assessed morphologically in transverse sections of treated nerves. Finally, the drug potency in blocking Na+ currents was studied under voltage-clamp conditions. RESULTS: N-ethyl and N-propyl tetracaine derivatives were non-neurolytic and elicited complete sciatic nerve block lasting 3-7 h. In contrast, N-butyl, N-pentyl, and N-hexyl tetracaine derivatives were strong neurolytic agents and elicited functional impairment of sciatic nerve for > 1 week. All derivatives were strong Na+ channel blockers, more potent than tetracaine if applied intracellularly. External drug application showed marked differences in their wash-in rate: tetracaine > N-hexyl > N-butyl > N-ethyl tetracaine. All derivatives were trapped within the cytoplasm and showed little washout within 7 min. CONCLUSIONS: When n-alkylation is 4-6, n-alkyl tetracaine appeared as a strong neurolytic agent. Neurolytic derivatives retained their local anesthetic activity and elicited rapid onset of nerve block after injection. Such derivatives are potential local anesthetic-neurolytic dual agents for chemical lesions of the sciatic nerve.

Anesthetics, Local↗

Neurophysiologic actions and neurological consequences of veratridine on the rat sciatic nerve.

BACKGROUND: The quest for a drug that would provide analgesia with minimal motor deficiency, through the selective inhibition of impulses in small-diameter fibers, was brightened by a previous report of veratridine's C-fiber-selective actions on the isolated rabbit vagus nerve. The goal of the present research was to demonstrate the same actions on rat sciatic nerve in vitro and to observe the functionally differential blockade in the rat in vivo. METHODS: Sciatic nerves were removed from rats, mounted in a recording chamber, wherein a 1-cm length of the ensheathed nerve was superfused with the plant alkaloid veratridine (2 microM) in bicarbonate-buffered Liley's solution, and the compound action potential (CAP) was stimulated supramaximally to give A- and C-fiber elevations. Onset, steady-state, and recovery from veratridine effects were assayed for a range of stimulus frequencies. Open-field behavior and quantitative neurological assessments of proprioception, motor function, and nociception were tested in 15 trained rats after injection near the sciatic nerve of 0.1 ml veratridine at 0.5, 0.7, and 1.0 mM each plus epinephrine (1:200,000). RESULTS: Veratridine inhibited the C-fiber component of the CAP in a frequency-dependent manner. At 0.1 Hz the CAP was 65% of the control amplitude, 50% at 0.5 Hz, and 40% at 5 Hz. A-fiber elevations were unattenuated at stimulus frequencies as high as 50 Hz. Steady-state inhibition was reached 5 min after drug administration, and recovery from the effects was 30% complete by 15 min of drug washout. Proprioception, measured as a "hopping" or "placing" reaction, was inhibited dose dependently by maximum degree and for durations of, respectively, 0.5 mM, 61%, 180 min; 0.7 mM, 100%, 360 min; and 1 mM, 100%, 420 min. Extensor postural thrust, as a measure of motor function, was inhibited by and for 0.5 mM, 77%, 240 min; 0.7 mM, 99%, 390 min; and 1 mM, 100%, 420 min. Analgesia, as a prolonged withdrawal latency to a noxious thermal stimulus, had the following profile: 0.5 mM, 10%, 30 min; 0.7 mM, 52%, 150 min; and 1 mM, 66%, 150 min. CONCLUSIONS: Despite the fact that veratridine gave a C-fiber preferential blockade in the isolated sciatic nerve, heightened analgesia over motor block was not achieved in vivo. Indeed, just the opposite occurred. If preferential C-fiber blockade also occurs in vivo, then its traditionally expected correlation with analgesia must be re-examined.

Action Potentials↗

Susceptibility to lidocaine of impulses in different somatosensory afferent fibers of rat sciatic nerve.

Mechanosensitive A beta-fibers (n = 29) and nociceptive A delta- (n = 6) and C-fibers (n = 10) of the rat sciatic nerve were superfused with lidocaine (LID, 0.1-1.4 mM) in vivo. The [LID] to abolish single electrically stimulated impulses (tonic blockade) in axons was 0.2 to 0.8 mM for A beta-, 0.1 to 0.6 mM for A delta- and 0.1 to 1.4 mM for C-fibers. Within each of the fiber groups there was no dependence of blocking [LID] on conduction velocity; slower fibers were no more susceptible than faster ones. Mean blocking concentrations differed between groups, with C-fibers having an IC50 = 0.80 +/- 0.32 mM (+/- S.E.), significantly higher (P < .05, ANOVA) than A beta-fibers (IC50 = 0.41 +/- 0.15 mM) and A delta-fibers (IC50 = 0.32 +/- 0.18 mM). The [LID] causing 50% impulse failure in A beta-fibers during a 200-Hz, 10-stimulus train (phasic blockade) ranged from 0.2 mM to 0.7 mM; the mean IC50 equaled 0.28 mM (n = 17). Stimulation of nociceptive A delta-fibers (n = 4) and C-fibers (n = 5) at 5 or 10 Hz for 10 pulses produced no phasic block at [LID]s (0.1-0.5 mM) below those required for tonic blockade. Uptake of 14C-lidocaine by the nerve, measured in vivo under conditions identical with those for electrophysiology, showed that: a) little drug was in the segments of nerve beyond the superfusion chamber, b) lidocaine was uniformly distributed in the nerve within the chamber, c) the intraneural lidocaine content was identical with that in nerves equilibrated in vitro. The results show a lack of monotonic dependence of sensitivity to local anesthetic on fiber diameter, but do suggest that mean susceptibility to nerve block by lidocaine differs for fibers grouped by, and perhaps according to, function.

Anesthetics, Local↗

Mechanoreceptive afferents exhibit functionally-specific activity dependent changes in conduction velocity.

Impulse activity in axons generates aftereffects on membrane excitability that can alter the conduction velocity of subsequently conducted impulses. We used a computerized stimulus pattern (a 1 Hz stimulus period followed by a period of repeated short bursts at 200 Hz) to assess in vivo activity-dependent changes in conduction latency of functionally identified rat cutaneous afferents conducting in the A beta range. Several different parameters of activity dependence were measured: burst supernormality, the average increase in conduction latency following conditioning with a single preceding impulse during high frequency burst stimulation; burst subnormality, the average latency increase during each burst; depression, a long-term increase in latency caused by the high frequency stimulation. The data show that different mechanosensitive A beta afferents with overlapping resting conduction velocities exhibit activity-dependent changes in conduction latency that are characteristic of their particular functions.

Animals↗

N-butyl tetracaine as a neurolytic agent for ultralong sciatic nerve block.

BACKGROUND: Neurolytic agents such as phenol (5% to 10%) and absolute alcohol have long been used clinically to destroy the pathogenic nerve regions that manifest pain. Both phenol and alcohol are highly destructive to nerve fibers. However, these agents exert only weak local anesthetic effects and therefore are difficult to administer to alert patients without pain. This report describes a tetracaine derivative that displays both local anesthetic and neurolytic properties. Studies with such a compound may lead to the design of neurolytic agents that are more effective and more easily administered than phenol and alcohol. METHODS: A tetracaine derivative, N-butyl tetracaine quaternary ammonium bromide, was synthesized, and its ability to elicit sciatic nerve block of sensory and motor functions in vivo was tested in rats. A single dose of 0.1 ml N-butyl tetracaine at 37 mM was injected into the sciatic notch. Transverse sections of treated sciatic nerves were subsequently examined to determine the neurolytic effect of this drug. Finally, the local anesthetic properties of N-butyl tetracaine were studied in vitro; both tonic inhibition and use-dependent inhibition of Na+ currents in neuronal GH3 cells were characterized under whole-cell voltage-clamp conditions. RESULTS: N-butyl tetracaine at 37 mM (equivalent to 1.11% tetracaine-hydrochloric acid concentration) elicited prolonged sciatic nerve block of the withdrawal response to noxious pinch in rats for more than 2 weeks. The withdrawal response was fully restored after 9 weeks. Parallel to sensory block, motor functions of the hind legs were similarly blocked by this drug. Morphologic examinations 3 and 5 weeks after a single injection of drug revealed degeneration of many sciatic nerve fibers, consistent with the results of functional tests. Finally, N-butyl tetracaine was found to be a potent Na+ channel blocker in vitro. It produced strong tonic and use-dependent inhibition of Na+ currents with a potency comparable to that of tetracaine. CONCLUSIONS: A single injection of N-butyl tetracaine produces ultralong sciatic nerve block in rats. This compound possesses both local anesthetic and neurolytic properties and may prove useful as a neurolytic agent in pain management.

Anesthetics, Local↗

Behavioral evidence of thermal hyperalgesia in non-obese diabetic mice with and without insulin-dependent diabetes.

The non-obese diabetic (NOD) mouse, a model of Type 1 diabetes in humans, has proven useful for the study of genetic, immunologic and epidemiologic aspects of inherited diabetes. Behavioral evidence of hyperalgesia may also be present in the NOD mouse but has not been described. This study examined NOD mice with (NOD+) and without (NOD-) insulin-dependent diabetes, and control strain (ILI) mice for evidence of hyperalgesia to a noxious thermal stimulus. Interestingly, both NOD+ and NOD- mice showed reduced mean hindpaw withdrawal latencies when compared with non-diabetic ILI mice. NOD+ and NOD- mice were also abnormal in their general appearance, activity level, posture, gait and muscle bulk when compared with ILI mice. These findings raise the possibility that hyperalgesia in insulin-dependent NOD mice, or insulin-dependent humans with Type 1 diabetes, may be independent of diabetes and due to a primary disturbance within sensory pathways.

Animals↗

Neurologic evaluation of the rat during sciatic nerve block with lidocaine.

BACKGROUND: Quantitative behavioral testing is necessary to establish a reproducible measure of differential functional blockade during regional anesthesia. Methods for assessment of the neurologic status (mental status, posture, gait, proprioception, motor function, autonomic function, and nociception) in veterinary neurology were adapted for the rat and used to monitor functional changes separately during a sciatic nerve block. METHODS: Sprague-Dawley rats were acclimated to laboratory routine before the study so that lidocaine (0.1 ml, 1%) could be injected near the sciatic notch without any chemical restraint. The onset, duration, and magnitude of functional losses were monitored. Proprioceptive integrity was evaluated by assessing the response to tactile placing and the hopping response. Extensor postural thrust, a test for postural reactions in small animals, was assessed on a digital balance and found adequate for quantifying motor function. Analgesia was assessed by measuring withdrawal response latencies to noxious thermal stimulation (51 degrees C) and to superficial and deep noxious pinches. Autonomic function was monitored by measuring skin temperature. Contralateral limb function was used as an internal control, and injection of saline was used as an external control in separate, control animals. RESULTS: Onset of postural and gait abnormalities were observed as early as 40 s after injection. On each occasion proprioceptive impairment was detected first, followed by impairment of motor function and nociception. Complete absence of proprioception occurred from 10 to 30 min (n = 9) and of motor function at 30 min after injection (n = 10); both functions were fully recovered by 120 min. A unilateral increase in skin temperature on the foot was detected by 1 min; had reached its maximum change, 5.3 +/- 0.7 degrees C, at 10 min; and had returned to control levels at 60 min after injection (n = 12). Withdrawal response to cutaneous or superficial pain was absent in all ten animals from 5 to 30 min whereas the response to deep pain was absent in all ten animals at 20 min only. The response to noxious stimulation recovered at 90 min. Attention was paid to the temporal relation of the impairment of various functions. CONCLUSIONS: Quantitative observations of the onset, offset, and intensity of differential functional impairment or block over time will make it possible to establish the doses and conditions for local anesthetics that result in differential nerve block and will permit comparison of these changes among different drugs and "clinical" protocols.

Animals↗

Relation between functional deficit and intraneural local anesthetic during peripheral nerve block. A study in the rat sciatic nerve.

BACKGROUND: During peripheral nerve block, local anesthetic (LA) penetrates within and along the nerve to produce the observed functional deficits. Although much is known about the kinetics and steady-state relation for LA inhibition of impulse activity in vitro in isolated nerve, little is known about the relation between functional loss and intraneural LA content in vivo. This study was undertaken to investigate the relation of functional change to intraneural LA. METHODS: A sciatic nerve block was performed in rats with 0.1 ml 1% lidocaine radiolabeled with 14C. The total intraneural uptake of LA was determined at different times after injection, and the distribution of lidocaine along the nerve was assayed at different stages of functional block. Drug content was also compared with equilibrium lidocaine uptake in the isolated rat sciatic nerve. RESULTS: Total intraneural lidocaine in vivo increased to near steady-state in about 3 min, stabilizing at approximately 14.3 nmol/mg wet tissue for about 12 min before decreasing to zero at 70 min after injection. Although intraneural lidocaine was 1.6% of the injected dose during full block, only 0.3% was left when deep pain sensation returned and 0.065% was still detected when functions fully recovered. Despite these large differences in total lidocaine content, the longitudinal distribution remained constant. Intraneural lidocaine concentrations obtained at full block and partial recovery could be achieved in vitro by equilibration in 0.7-0.9 and 0.2-0.3 mM lidocaine, respectively. CONCLUSIONS: During peripheral nerve block only a small amount of injected LA penetrates into the nerve. The intraneural content of LA correlates with the depth of functional block.

Animals↗

Quaternary ammonium derivative of lidocaine as a long-acting local anesthetic.

BACKGROUND: Use of long-acting local anesthetics that elicit complete neural blockade for more than 3 h often is desirable in pain management. Unfortunately, clinically available local anesthetics are in general not suitable for prolonged analgesia. This report describes the organic synthesis and functional testing of a lidocaine derivative that appears to fulfill the criteria of long-acting local anesthetics. METHODS: A lidocaine derivative, N-beta-phenylethyl lidocaine quaternary ammonium bromide, was synthesized, and its ability to inhibit Na+ currents in cultured rat neuronal GH3 cells was tested in vitro under whole-cell voltage clamp conditions. Neurologic evaluation of sciatic nerve block of sensory and motor functions in vivo was subsequently performed in rats. RESULTS: N-beta-phenylethyl lidocaine was found to be a potent Na+ channel blocker in vitro. It produced both tonic and use-dependent blocks of Na+ currents that exceeded lidocaine's effects by a factor of > 2 (P < 0.05). In vivo, N-beta-phenylethyl lidocaine elicited a prolonged and complete sciatic nerve block of the motor function and the withdrawal response to noxious pinch that was 3.6- and 9.3-fold longer than that of lidocaine (P < 0.001), respectively. CONCLUSIONS: In an attempt to elicit prolonged local anesthesia, a quaternary ammonium derivative of lidocaine containing a permanent charge and an additional hydrophobic component was synthesized. Complete sciatic neural blockade of more than 3 h was achieved with this derivative. Of note, sensory blockade was prolonged to a greater extent than motor blockade. The approach used in this study may prove useful for developing new drugs applicable in pain management.

Anesthetics, Local↗

Modality-dependent modulation of conduction by impulse activity in functionally characterized single cutaneous afferents in the rat.

Cutaneous afferents exhibit changes in excitability after impulse activity that are correlated with functional modality but are independent of axonal diameter, as studied in 39 cold fibers and 51 nociceptors of the rat. Latency of conducted impulses was used to indicate changes in axonal excitability caused by electrical stimulation. Stimuli were applied both at fixed frequencies and at the time intervals of impulses previously recorded during response to natural stimulation. Latency increased following both these forms of electrical stimulation, as well as after natural stimulation of the receptive fields. The latency increase was correlated with the number of impulses and the frequency of the preceding discharge in all of 4 nociceptors and 13 cold fibers studied for this feature. Increase of latency by electrical or natural stimulation led to reduced responsiveness to natural stimulation. The magnitude and time course of latency changes were correlated with fiber modality. In 32 nociceptors the latency increased continuously with time during a stimulus train, whereas in 21 cold fibers there was only an initial increase in latency over the first few seconds, after which the latency remained at a plateau even as the firing response continued. Paralleling this slowing, impulse failure occurred more frequently during repetitive stimulation in both A delta and C nociceptors than in velocity-matched cold fibers of either class. Based on the magnitude of latency increases during stimulus trains at different frequencies, two distinct patterns were discerned in A nociceptors: "Type II" fibers slowed significantly more than "Type I" or cold fibers. The results support the hypotheses (1) that the pattern of latency changes during activity are signatures for the modality in a given fiber; and (2) that endogenous, activity-dependent processes of the axon contribute to adaptation and encoding in cutaneous sensory afferents.

Afferent Pathways↗

Analgesia with anesthetic steroids and ethanol.

Ethanol is well known to enhance the potencies of a range of anesthetics. However, its effects on steroid anesthesia have not been reported. Because ethanol often is added to the delivery vehicle to increase steroid solubility, it is important to evaluate its contribution to steroid anesthesia. Intravenous injection of ethanol and anesthetic steroid(s) produced marked analgesia and a marked increase in the number of mice exhibiting the loss of righting response (LRR). Ethanol alone at these low doses was merely sedative, and steroid alone was hypnotic without any analgesic benefit. The nocifensive response to tail clamp was used as a measure of analgesia. Progesterone or the anesthetic steroid, 3 alpha-hydroxy-5 alpha- pregnan-20-one (3 alpha) alone reduced, but did not abolish the nocifensive response. Progesterone (80 mg/kg) or 3 alpha (3 mg/kg) administered together with ethanol (1.1 g/kg) abolished the nocifensive response (analgesia) and resulted in LRR within 10 s. The onset of both effects was rapid, and the duration was greater than 8 min. With 3 alpha alone, the reduced nocifensive behavior fully returned before the mouse regained the righting response. Thus, the evaluation of the nocifensive response is not precluded by LRR. The rapid onset of LRR and analgesia suggest that 3 alpha and progesterone, not their metabolites, are responsible for the observed activities.

Analgesia↗

Phenobarbital-responsive episodic dyscontrol (rage) in dogs.

Episodic dyscontrol (rage) was diagnosed from the clinical history, electroencephalographic findings, and response to oral treatment with phenobarbital in 3 dogs. Clinical features included a mood change heralding aggressive incidents, explosive aggression directed at people or objects, and a postaggressive phase characterized by lethargy and lack of responsiveness. Abnormal electroencephalographic findings included spike activity in the temporal recordings. All 3 dogs responded well to anticonvulsant medication with phenobarbital.

Aggression↗

Adult onset lysosomal storage disease in a Tibetan terrier: clinical, morphological and biochemical studies.

We describe a novel late-onset lysosomal lipid storage disease affecting a Tibetan terrier. The principal clinical manifestations include visual loss, progressive cerebellar ataxia and dementia. A necropsy of an affected 10-year-old dog demonstrated cerebellar atrophy. Histological analysis revealed extensive loss of retinal ganglion cells and cerebellar Purkinje cells, and mild to moderate loss of neurons in the cerebrum, basal ganglia and spinal cord. There were generalized neuronal hypertrophy and multifocal neuronal necrosis associated with the presence of enlarged macrophages. Neurons and perineuronal macrophages contained cytoplasmic granules that stained with PAS, luxol fast blue and several lectins. The granules were sudanophilic and autofluorescent. Electron microscopic analysis revealed lysosomes laden with lamellated membrane structures in neurons, pancreatic ductal and centroacinar cells and in cultured fibroblasts. These findings indicate lysosomal storage of both lipid and carbohydrate. Biochemical analysis of brain lipids and numerous lysosomal enzyme assays of leukocytes and cultured fibroblasts were unsuccessful in elucidating the underlying enzyme defect, although a generalized increase of brain gangliosides was noted.

Animals↗

Canine GM1-gangliosidosis. A clinical, morphologic, histochemical, and biochemical comparison of two different models.

The clinical, morphologic, histochemical, and biochemical features of GM1-gangliosidosis in two canine models, English Springer Spaniel (ESS) and Portuguese Water Dog (PWD), have been compared. The disease onset, its clinical course, and survival period of the affected dogs were similar in both models. Skeletal dysplasia was noted radiographically at 2 months of age, whereas at 4 1/2 months of age there was progressive neurologic impairment. However, dwarfism and coarse facial features were seen only in ESS. Both models had similar deficiency in activity of lysosomal beta-galactosidase, but possessed a normal protein activator for GM1-beta-galactosidase. Both models stored GM1-ganglioside, asialo-GM1, and oligosaccharides in brain. Furthermore, only the PWD stored glycoproteins containing polylactosaminoglycans in visceral organs, and neither model stored them in the brain. Morphologically, both models demonstrated similar storage material in multiple tissues and cell types. The ultrastructure of the storage material was cell-type specific and identical in both models. However, some differences in the lectin staining pattern were noted. Our clinical, biochemical, and histochemical findings indicate that PWD and ESS may represent two different mutations of the beta-galactosidase gene. Moreover, the authors conclude that it is difficult, and inappropriate, to apply the human classification of GM1-gangliosidosis (i.e. infantile, juvenile, and adult forms) to these canine models.

Amniotic Fluid↗

Clinical, neurophysiological, biochemical and morphological features of eyes in Persian cats with mannosidosis.

The clinical, neurophysiological, morphological and biochemical manifestation of eyes from Persian kittens affected with alpha-mannosidosis were studied. Clinically the disease is characterized by progressive corneal and lenticular opacification. In addition there is asymmetry in shape and latency of signal conductions which were demonstrated by visual evoked potential studies. Morphological and histochemical studies revealed vacuolization of various ocular cell types which stained positively with Concanavalia ensiformis agglutinin (Con A) and wheat germ agglutinin (WGA). Biochemical studies illustrated low activity of acid alpha-mannosidase in cultured keratocytes and abnormal storage of partially degraded oligosaccharides in these cells, in vitreous humor and lens. This comprehensive study of ocular alpha-mannosidosis demonstrates enzyme deficiency which leads to abnormal storage of oligosaccharides in affected cells and is manifested by morphological alterations and functional impairment.

Animals↗

Changes in axonal impulse conduction correlate with sensory modality in primary afferent fibers in the rat.

Conduction velocity was measured in vivo in single cutaneous afferent fibers of rat sciatic nerve that were characterized by natural stimulation. During sustained electrical stimulation, impulses slowed less and propagated more reliably in cold fibers (both A delta and C) than in nociceptive fibers of similar conduction velocity. Velocity in cold fibers tended to stabilize after an initial decrease rather than decrease throughout the stimulation as for nociceptive fibers. The slowing correlated with axon modality and hence with natural firing pattern, raising the possibility that impulse activity can determine conduction properties of axons.

Afferent Pathways↗

Acquired cutaneous lymphangiectasis in a dog.

A 3-year-old male mixed-breed dog had swelling of the penile sheath, which developed after the dog was castrated at 1 year of age. Physical examination revealed pitting edema and multiple turgid vesicles on the prepuce and inguinal area. Histologic evaluation of the vesicles revealed thin epidermis elevated by dermal proliferation of dilated lymphatic channels. The diagnosis was acquired cutaneous lymphangiectasia. Clinical signs resolved concurrent with furosemide administration. Preputial swelling without vesicles recurred 1 and 2 years later and partially resolved after furosemide administration.

Animals↗