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Time course of H-reflex conditioning in the rat.

This study sought to define the course of operantly conditioned change in the rat soleus H-reflex and to determine whether, like H-reflex conditioning and spinal stretch reflex conditioning in the monkey, it develops in distinct phases. Data from 33 rats in which the right soleus H-reflex was trained up (i.e. HRup mode) and 38 in which it was trained down (i.e. HRdown mode) were averaged to define the courses of H-reflex increase and decrease. In HRup rats, the H-reflex showed a large phase I increase within the first 2 days followed by gradual phase II increase that continued for weeks. In HRdown rats, the H-reflex appeared to show a small phase I decrease and then showed a gradual phase II decrease over weeks. In combination with other recent work, the data suggest that H-reflex conditioning begins with a rapid mode-appropriate alteration in corticospinal tract influence over the spinal arc of the H-reflex, which causes phase I change, and that the continuation of this altered influence induces gradual spinal cord plasticity that is responsible for phase II change. The results further establish the similarity of H-reflex conditioning in primates and rats. Thus, they encourage efforts to produce a single coherent model of the phenomenon based on data from the two species and indicate the potential clinical relevance of the rat data.

Afferent Pathways↗

Different effect of high doses of naloxone on spinal reflexes in normal subjects and chronic paraplegic patients.

There is still controversy over the effects of naloxone on spinal reflexes in view of the fact that both facilitatory and inhibitory activities have been observed. Dosage, supraspinal influences and interactions with different opiate receptors may account for the different findings. We investigated the effect of placebo (saline) and high doses of naloxone (1.66 mg/kg) on the monosynaptic (H reflex) and nociceptive polysynaptic reflex (RIII reflex) in five normal subjects and three chronic paraplegic subjects. Following the administration of naloxone, there were no changes in the RIII reflex threshold in either group. By contrast, there was a marked facilitation of the H reflex amplitude in the normal subjects, but not in the spinal cord-injured subjects after treatment with naloxone. Saline induced no changes in the RIII reflex threshold or the H reflex amplitude in either of the two groups. Our data suggest that under normal conditions the opiatergic modulation of the nociceptive reflex is not functionally active whereas the tonic inhibitory modulation of the monosynaptic reflex is mediated by descending pathways.

Adult↗

The effects of morphine on supraspinal and propriospinal somatocardiac reflexes in anesthetized rats.

In anesthetized rats, the effects of i.v. injection of morphine on supraspinally- and spinally-mediated tachycardiac reflex responses of heart rate (HR) and cardiac sympathetic nerve reflex activity were examined following electrical stimulation of either a non-segmental hindlimb (tibial) or a segmental (3rd or 4th intercostal, IC3-4) afferent nerve. In central nervous system (CNS)-intact rats, the supraspinally-mediated reflex increase in HR in response to tibial afferent nerve stimulation was augmented by morphine, whereas the increase in response to IC3-4 afferent nerve stimulation was variable. Both the supraspinally-mediated myelinated (A) and unmyelinated (C) reflex discharges in the cardiac sympathetic nerve elicited by tibial afferent nerve stimulation were augmented by morphine. The effects of morphine on A- and C-sympathetic reflex discharges elicited by IC3-4 afferent nerve stimulation varied depending upon whether the discharge was of supraspinal or spinal origin. In spinal rats (spinalized at the cervical level), tibial afferent nerve stimulation did not produce any HR response, whereas IC3-4 afferent nerve stimulation produced a reflex increase in both HR and sympathetic reflex discharges of spinal origin. Furthermore, these spinal HR and sympathetic nerve reflex responses were inhibited by morphine. In conclusion, morphine depressed somatocardiac sympathetic reflexes at the spinal level, but enhanced these reflexes at the supraspinal level, leading to different effects of morphine on somatically-induced HR responses of supraspinal and spinal origins depending upon the segmental levels of afferent nerves stimulated.

Afferent Pathways↗

Habituation of the blink reflex in first-episode schizophrenia, psychotic depression and non-psychotic depression.

OBJECTIVE: Electrophysiological recording of the electrically elicited blink reflex is the most reliable method of investigating habituation of the startle reflex. The purpose of this study was to compare the habituation and the late R3-component of the blink reflex between control subjects (N=19) and first-episode patients with schizophrenia (N=17), psychotic depression (N=23), and severe non-psychotic depression (N=25). METHODS: The blink reflex was evoked by electrical stimulation of the supraorbital nerve, and the deficient habituation of the R2i-component was measured with a computer-assisted integral area measurement. Prefrontal executive function of the patients was assessed with the Wisconsin Card Sorting Test. Current psychiatric symptoms were assessed with the Brief Psychiatric Rating Scale, the Hamilton Depression Scale, the Positive and Negative Syndrome Scale, and the Calgary Depression Scale. RESULTS: Deficient habituation of the blink reflex and occurrence of the late R3 component were associated both with a previous diagnosis of psychotic disorder and with the presence of current psychosis. The sensitivity and specificity of the abnormal habituation of the blink reflex in detecting psychotic disorder were 0.50 and 0.80, respectively. The abnormalities of the blink reflex were not associated with psychotropic medication. In schizophrenic patients, defective habituation of the blink reflex was associated with negative and cognitive symptoms, and in depressive patients with the presence of delusions. CONCLUSIONS: The deficient habituation of the blink reflex and occurrence of the late R3 component seem to be both trait and state markers of a psychotic disorder. The results suggest that schizophrenia and psychotic depression share some common neurobiological mechanisms involved in the modulation of the startle reflex.

Adult↗

Comparison of soleus H-reflex gain from prone to standing in dancers and controls.

To examine the differences in soleus H-reflex gain between trained dancers and control subjects, the soleus H-reflex amplitude and background muscle activity of 9 trained dancers (means of 20.3 +/- 2.1 years of age, and 14.3 +/- 3.8 years of training) and 9 control subjects (mean 23.3 +/- 3.2 years of age) were compared at rest and at 10, 20, and 30% of a maximal voluntary soleus contraction during two conditions: prone and standing. The ratio of the maximal H-reflex (H-max) to the maximal motor response (M-max) was also measured during both conditions. Correlation was performed between background EMG and the resultant H-reflex to determine reflex gain. The results demonstrated that the control subjects and the dancers displayed a similar reflex gain during the prone condition (slope = 3.30 vs. 3.64, respectively). However, during the standing condition, dancers demonstrated a significantly lower reflex gain (slope = 1.78) than did control subjects (slop = 3.68). Furthermore, although both groups significantly decreased the H-max/M-max ratio from prone to standing, no differences were found between groups at either condition. This suggests that the differences in standing reflex gain between the dancers and control subjects were a product of differential control of reflex modulation involved in postural control. An initial hypothesis explaining the differences between the standing reflex gain of the groups relates to plasticity of central inhibitory control mechanisms, primarily presynaptic and/or reciprocal inhibition.

Adult↗

Effects of a selective 5-HT(1B/1D) receptor agonist on spinal and trigeminal reflexes in the anaesthetized rabbit.

The effects of the 5-HT(1B/1D) receptor agonist L-741,604 on a trigeminally-mediated (jaw depressor) reflex and a spinally-mediated (flexion withdrawal) reflex have been compared between spinalized and intact, anaesthetized rabbits. L-741,604 depressed the jaw depressor reflex dose-dependently in all animals, to a median of 5% (inter-quartile range, IQR, 3 - 28%, n=18) of pre-drug levels after a cumulative dose of 3.1 micromol kg(-1) i.v. This effect was reversed by the 5-HT(1B/1D) antagonist GR 127,935 (1 - 2 micromol kg(-1) i.v.). The flexion withdrawal reflex was depressed by L-741, 604 in non-spinalized animals, to a median of 22% (IQR 10 - 36%, n=10) of pre-drug levels after the highest dose, an action that was reversed by GR 127,935. In spinalized rabbits, L-741,604 up to 0.3 micromol kg(-1) i.v. cumulative increased the flexion reflex to a median of 189% (IQR 169 - 198%, n=8) of pre-drug controls. With higher doses the reflex decreased, so that after 3.1 micromol kg(-1) it was 75% (IQR 55 - 96%) of pre-drug levels. Subsequent GR 127,935 increased reflexes to a median of 180% (IQR 136 - 219%) of controls. L-741,604 increased arterial blood pressure and decreased heart rate in both preparations, effects that were reversed by GR 127,935. Thus, when the spinal cord was intact L-741,604 inhibited spinal and trigeminal reflexes in the same way. Although spinalization enabled a non-5-HT(1B/1D)-mediated excitatory effect of L-741,604 on spinal reflexes, there was a clear inhibitory effect of the drug at high doses. These data suggest that L-741,604 inhibits spinal reflexes by increasing descending inhibition and by a direct action in the cord. The same processes could apply to inhibition of trigeminally-mediated events.

Animals↗

Effects of electrically induced muscle contraction on flexion reflex in human spinal cord injury.

STUDY DESIGN: Flexion reflex study in motor complete human spinal cord injury (SCI). OBJECTIVES: To examine changes in the magnitude of the flexion reflex following functional electrical stimulation (FES) of the rectus femoris (RF) muscle. SETTING: Bioengineering Unit, University of Strathclyde, Glasgow, Scotland, UK. METHODS: The flexion reflex was evoked by electrical stimulation of the sural nerve, and was recorded in the tibialis anterior (TA) muscle. RF muscle conditioning stimulation was performed at 0.7, 1, and 2 times motor threshold ( x MT) over a range of conditioning test intervals. RESULTS: The incidence of the early component of the flexion reflex (<100 ms) was low, suggesting that this reflex component might be suppressed in SCI. The long latency flexion reflex component (>120 ms) was observed in all subjects during control conditions and following sensorimotor conditioning. FES applied to the RF muscle (above and below MT) in the main induced a significant early and long lasting depression of the long latency flexion reflex. CONCLUSION: The depression of the flexion reflex was a result of multisensory actions on flexion reflex pathways resulting from the direct and indirect (mechanical) consequences of electrically induced muscle contraction on cutaneous and muscle afferents. Our findings emphasize the importance of sensory feedback mechanisms in modulating flexion reflex excitability, and highlight the need for rehabilitation professionals to consider the central actions of FES-induced afferent feedback when incorporating FES into a rehabilitation program. SPONSORSHIP: State Scholarships Foundation (IKY) of Hellas.

Adult↗

Contralateral acoustic reflex thresholds for tonal activators using wideband energy reflectance and admittance.

The purpose of this study was to evaluate a new method for estimating the acoustic reflex threshold incorporating wideband (250-8000 Hz) measures of energy reflectance and admittance (M. P. Feeney & D. H. Keefe, 2001). The wideband technique incorporates both a correlation method to assess the pattern of the reflex-induced shifts in reflectance and admittance across frequency and a magnitude method to determine if the amplitude of the shifts exceeds baseline variability. Contralateral reflex thresholds for 1000- and 2000-Hz activators were obtained for 34 young adults with both the wideband method and a clinical method using a 226 Hz probe tone. Average reflex thresholds obtained with the new method were 12 to 13.7 dB lower than than obtained with the clinical method. When the bandwidth of analysis of admittance and reflectance responses was limited to 250 to 2000 Hz, the reduction in reflex thresholds was accompanied by the rejection of 96% of nonactivator-baseline responses as reflexes. The method holds promise for extending reflex threshold testing to patients with reflexes elevated beyond current equipment limits, for reducing the sound levels used in reflex testing, and for obtaining sensitive measures of reflex threshold in infants.

Acoustic Impedance Tests↗

Acoustic-reflex response to sustain signals.

Acoustic-reflex activity was observed for 10 normal-hearing young adults using three sustained activating signals: 500-Hz tone, 4000-Hz tone, and broad-band noise. Reflex activity was observed over a period of three to five minutes at activator levels of 5, 10, and 15 dB above individual acoustic-reflex thresholds. General findings were that (1) acoustic-reflex adaptation was present to some degree for all three activating signals, (2) the amount of reflex adaptation varied with the spectrum of activating signals (reflex adaptation was greatest for the 4000-Hz activator, less for the noise activator, and least for the 500-Hz activating signal), (3) the rate of reflex adaptation differed with activator spectrum (reflex-adaptation rate was relatively rapid for the 4000-Hz activator, slower for noise, and much slower for the 500-Hz activating signal), and (4) reflex adaptation did not appear to vary systematically with activating-signal level except for the 500-Hz activator, in which case reflex adaptation appeared to begin earlier in time and to be of greater magnitude as the activating-signal level was increased.

Acoustic Stimulation↗

Factors influencing the acoustic-immittance characteristics of the acoustic reflex.

Measurements of the aural acoustic-immittance (admittance and impedance) characteristics of the middle-ear transmission system in humans during the quiescent (static) and reflexive states were made (N = 36) utilizing a signal-averaging technique. Three pure tones (750, 1000, and 2000 Hz) and broadband noise stimuli elicited the acoustic reflex in 2-dB steps at sound-pressure levels from 84-116 dB (tones) and 66-116 dB (noise) during ascending- and descending-intensity level runs. The contralateral middle-ear activity was monitored with a 220-Hz probe by digitizing the conductance and susceptance outputs of an admittance meter. A computer corrected for the ear-canal volume utilizing measurements made at ear-canal pressures of 0 and --350 daPa and then converted the conductance and susceptance values into admittance and impedance units. The results were reported in absolute and relative immittance units, including components, as a function of both stimulus sound-pressure level and intensity level above the acoustic-reflex threshold. The static immittance of the middle ear changed nonlinearly over time to lower admittance or higher impedance values. The influence of this static-immittance shift on the reflex magnitude was discussed. The largest mean reflex magnitude and the slowest rate of growth were observed with broadband noise, although eight of the 36 subjects demonstrated the largest reflex magnitude in response to one or more of the tonal stimuli. Although static-immittance values and acoustic-reflex thresholds were poorly correlated, the reflex magnitudes were proportional to static immittance. The variability of the reflex measures was similar to the variability of the static-immittance values. Finally, bi-directional changes in resistance during the reflexive state were observed and discussed.

Acoustic Impedance Tests↗

The effects of aging on the magnitude of the acoustic reflex.

Aural acoustic-immittance (admittance and impedance) measurements during the quiescent and reflexive states were made using a computer sampling technique on 18 subjects with normal hearing in each of two age groups (less than 30 years and greater than 50 years). Seven pure-tones (250-6000 Hz) and broadband-noise stimuli served to elicit the acoustic reflex at sound-pressure levels from 84-116 dB (tones) and 66-116 dB (noise) in 2-dB steps during ascending and descending runs. The contralateral middle-ear activity was monitored with a 220-Hz probe by digitizing the conductance and susceptance outputs of an acoustic-admittance meter. The computer corrected for the immittance characteristics of the ear-canal volume by utilizing measurements made at an ear-canal pressure of -350 daPa and then by converting the conductance and susceptance values into admittance and impedance units. The results are reported as the immittance change between the quiescent and reflexive states as a function of both the activator sound-pressure level and the activator-pressure level above the reflex threshold. There were no significant differences between the static-immittance values for the two groups. Although acoustic-reflex thresholds for the two groups were the same in the low- to mid-frequency region (250-2000 Hz), the reflex thresholds for the greater than 50-years group were elevated significantly (approximately 8 dB) for 4000 Hz, 6000 Hz, and noise activators. In all conditions, the magnitude of the acoustic reflex was substantially smaller for the greater than 50-years group as compared with the less than 30-years group. The variability of the reflex magnitude was large for both groups of subjects. Saturation of the individual growth functions, which was frequency dependent, occurred twice as often with the greater than 50-years group as with the less than 30-years group. The relationship between the magnitude changes in conductance and susceptance from the quiescent to the reflexive state was the same for the two groups. Finally, the magnitude differences among the reflex-growth data were not related to differences in static immittance.

Acoustic Impedance Tests↗

Brainstem reflex circuits revisited.

Our current understanding of brainstem reflex physiology comes chiefly from the classic anatomical-functional correlation studies that traced the central circuits underlying brainstem reflexes and establishing reflex abnormalities as markers for specific areas of lesion. These studies nevertheless had the disadvantage of deriving from post-mortem findings in only a few patients. We developed a voxel-based model of the human brainstem designed to import and normalize MRIs, select groups of patients with or without a given dysfunction, compare their MRIs statistically, and construct three-plane maps showing the statistical probability of lesion. Using this method, we studied 180 patients with focal brainstem infarction. All subjects underwent a dedicated MRI study of the brainstem and the whole series of brainstem tests currently used in clinical neurophysiology: early (R1) and late (R2) blink reflex, early (SP1) and late (SP2) masseter inhibitory reflex, and the jaw jerk to chin tapping. Significance levels were highest for R1, SP1 and R2 afferent abnormalities. Patients with abnormalities in all three reflexes had lesions involving the primary sensory neurons in the ventral pons, before the afferents directed to the respective reflex circuits diverge. Patients with an isolated abnormality of R1 and SP1 responses had lesions that involved the ipsilateral dorsal pons, near the fourth ventricle floor, and lay close to each other. The area with the highest probabilities of lesion for the R2-afferent abnormality was in the ipsilateral dorsal-lateral medulla at the inferior olive level. SP2 abnormalities reached a low level of significance, in the same region as R2. Only few patients had a crossed-type abnormality of SP1, SP2 or R2; that of SP1 reached significance in the median pontine tegmentum rostral to the main trigeminal nucleus. Although abnormal in 38 patients, the jaw jerk appeared to have no cluster location. Because our voxel-based model quantitatively compares lesions in patients with or without a given reflex abnormality, it minimizes the risk that the significant areas depict vascular territories rather than common spots within the territory housing the reflex circuit. By analysing statistical data for a large cohort of patients, it also identifies the most frequent lesion location for each response. The finding of multireflex abnormalities reflects damage of the primary afferent neurons; hence it provides no evidence of an intra-axial lesion. The jaw jerk, perhaps the brainstem reflex most widely used in clinical neurophysiology, had no apparent topodiagnostic value, probably because it depends strongly on peripheral variables, including dental occlusion.

Adult↗

The acoustic reflex in children without an hermetic seal.

In clinical practice with children, the hermetic seal is either often not obtainable or is lost before acoustic reflex measures are obtained. In a recent study, Surr and Schuchman (Archives of Otolaryngology 102, 160--161, 1976.) found that in the majority of cases reflex thresholds could be measured in adults with normal middle ears in the absence of an hermetic seal. This study was designed to find out whether the conclusions of Surr and Schuchman could be extended to children. Sealed and unsealed reflexes were compared in 30 children, ages 3 to 7, with normal middle ears. Results indicated that: (1) approximately two-thirds of the children demonstrated reflexes in the unsealed condition; (2) differences between sealed and unsealed reflex thresholds were not clinically significant; (3) in most cases, unsealed reflexes were measurable at all frequencies or at none; (4) neither size of ear canal volume nor amplitude of the sealed reflex at 10 dB SL seemed to be related to the presence or absence of the unsealed reflex. It was concluded that reflex thresholds obtained in the absence of an hermetic seal may be considered valid but the absence of an unsealed reflex should not be considered diagnostically significant.

Acoustic Impedance Tests↗

Adaptation of the acoustic reflex.

Acoustic reflex adaptation is reviewed in normal and abnormal auditory systems. The measurement variables affecting the acoustic reflex threshold are discussed with reference to the intensity level above reflex threshold at which the adaptation is measured. The effects of the activator frequency and activator intensity level on the time course of normal reflex adaptation are reviewed. The diagnostic application of acoustic reflex adaptation is discussed with reference to the different definitions of abnormality found in the literature. The acoustic reflex patterns, including absence, threshold, and adaptation of the reflex, are reported in patients with different degrees of hearing loss, in order to identify the false-positive rates associated with cochlear hearing losses. Finally, the diagnostic accuracy of acoustic reflexes is discussed in subjects having lesions of the CNVIII, brain stem, CNVII, and neuromuscular systems. In summary, a method is advocated for measuring acoustic reflex adaptation over 10 seconds, which allows analysis at both 5 and 10 seconds. Further research is needed on procedural variables including activator intensity level and ipsilateral recording methods, which may increase the diagnostic accuracy of acoustic reflex adaptation.

Adaptation, Physiological↗

Pharyngo-UES contractile reflex in patients with posterior laryngitis.

BACKGROUND: Earlier studies have shown that stimulation of the human pharynx by injection of minute amounts of water stimulates the pharyngo-UES contractile reflex. It has been suggested that this reflex may be activated during pharyngeal reflux of gastric and/or esophageal content, thus increasing the UES pressure and possibly preventing further entry of the refluxate into the pharynx. However, the integrity of this reflex in patients with posterior laryngitis has not been studied. AIM: Evaluate the pharyngo-UES contractile reflex in a group of patients with objective findings of posterior laryngitis. METHODS: Fourteen consecutive patients with posterior laryngitis (mean age, 48+/-6 y) and 13 healthy volunteers (mean age, 53+/-6 y) were studied by concurrent pharyngeal water stimulation and UES manometry. RESULTS: The threshold volume required to evoke the pharyngo-UES contractile reflex in the laryngitis group (0.4+/-0.05 mL) was significantly higher than that of the control (0.2+/-0.04 mL) (P < .05). Following stimulation of the pharyngo-UES contractile reflex, the maximum postinjection pressure in patients (75+/-6 mm Hg) was similar to that of the controls (78+/-6 mm Hg). The percent increase in UES pressure following stimulation of the reflex in the laryngitis group (99%+/-15%) was significantly higher than that of controls (55%+/-11%) (P < .05). CONCLUSIONS: Compared with normal controls, a significantly larger volume of liquid is required to trigger this reflex in patients with posterior laryngitis. When triggered, the maximum UES pressure induced by the pharyngo-UES contractile reflex is similar between the two groups. These findings suggest an altered afferent sensory limb of this reflex in patients with posterior laryngitis.

Adolescent↗

Intraoperative lower extremity reflex muscle activity as an adjunct to conventional somatosensory-evoked potentials and descending neurogenic monitoring in idiopathic scoliosis.

STUDY DESIGN: Lower extremity polysynaptic reflexes and descending neurogenic motor and ascending somatosensory activity were recorded. OBJECTIVE: Two cases are presented to illustrate the intraoperative use of lower extremity reflex recordings for detecting compromise of spinal cord function. SUMMARY OF BACKGROUND DATA: Lower extremity reflex processing can be used to measure integrated spinal cord activity, whereas descending neurogenic and ascending somatosensory potentials measure only long tract function. METHODS: Eight channels of lower extremity polysynaptic reflex activity were recorded simultaneously after unilateral lower extremity mixed nerve stimulation. Sequential descending neurogenic and ascending somatosensory activity was recorded simultaneously with reflex recordings. RESULTS: In these two patients with idiopathic scoliosis, intraoperative reflexes changed before descending neurogenic and before ascending somatosensory activity changed. High-amplitude synchronous persistent reflex activity correlated with a postoperative neurologic deficit. Low-amplitude asynchronous transient reflex activity was not associated with a postoperative neurologic deficit. CONCLUSION: Intraoperative lower extremity reflex changes are more sensitive to spinal cord compromise than are changes in long tract function. Lower extremity polysynaptic reflexes monitor the integrated activity of the spinal cord that is responsible for the control of complex motor behavior.

Adolescent↗

Inhibition of the bladder cooling reflex in the awake state: an experimental study in the cat.

PURPOSE: We assessed the bladder cooling reflex in the awake cat. The bladder cooling reflex is consistently observed in anesthetized adult cats but not in awake, neurologically normal humans. This discrepancy could indicate a state dependant control of the reflex or a species difference. This study was designed to differentiate between these alternatives, MATERIALS AND METHODS: Under ketamine-xylazine 5 animals had an indwelling catheter inserted into the bladder. The cooling reflex was tested by injections of cold saline into the bladder (4C to 8C), lowering its wall temperature to about 30C to 32C. The volume used (5 ml) was subthreshold for the Adelta micturition reflex, as confirmed by control injections of body warm saline. The procedure was repeated with the animals fully awake and it was well tolerated by all of them. Reflex responses were assessed by induced bladder pressures. RESULTS: Typical bladder cooling reflexes with peak pressures greater than 3 kPa were evoked in all cats when in narcotic sleep (group mean +/- CI 7.4 +/- 3.1 kPa). No such reflexes were elicited when the animals were awake (2.0 +/- 1.0 kPa). The difference was significant at the level of individual animals. CONCLUSIONS: The bladder cooling reflex is suppressed in adult cats during wakefulness, as in humans. This state dependent control of the bladder cooling reflex adds to its resemblance to the extensor plantar response (Babinski's sign).

Animals↗

Cutaneous reflexes of the human leg during passive movement.

1. Four experiments tested the hypothesis that movement-induced discharge of somatosensory receptors attenuates cutaneous reflexes in the human lower limb. In the first experiment, cutaneous reflexes were evoked in the isometrically contracting tibialis anterior muscle (TA) by a train of stimuli to the tibial nerve at the ankle. The constancy of stimulus amplitudes was indirectly verified by monitoring M waves elicited in the abductor hallucis muscle. There was a small increase in the reflex excitation (early latency, EL) during passive cycling movement of the leg compared with when the leg was stationary, a result opposite to that hypothesized. There was no significant effect on the magnitude of the subsequent inhibitory reflex component (middle latency, ML), even with increased rate of movement, or on the latency of any of the reflex components. 2. In the second experiment, the two reflex components (EL and ML) elicited in TA at four positions in the movement cycle were compared with corresponding reflexes elicited with the limb stationary at those positions. Despite the markedly different degree of stretch of the leg muscles, movement phase exerted no statistically significant effect on EL or ML reflex magnitudes. 3. In the third experiment, taps to the quadriceps tendon, to elicit muscle spindle discharge, had no effect on the magnitude of ML in TA muscle. The conditioning attenuated EL magnitude for the first 110 ms. Tendon tap to the skin over the tibia revealed similar attenuation of EL. 4. The sural nerve was stimulated at the ankle in the fourth experiment. TA EMG reflex excitatory and inhibitory responses still showed no significant attenuation with passive movement. Initial somatosensory evoked potentials (SEPs), measured from scalp electrodes, were attenuated by movement. 5. The results indicate that there is separate control of transmission in Ia and cutaneous pathways during leg movement. This suggests that modulation of the cutaneous reflex during locomotion is not the result of inhibition arising from motion-related sensory receptor discharge.

Adult↗